ADOPTED LEVELS, GAMMAS for 169Yb
Author: M. Shamsuzzoha Basunia | Citation: Nucl. Data Sheets 209, 1 (2026) | Cutoff date: 1-Oct-2025
Full ENSDF file | Adopted Levels (PDF version)
| Q(β-)=-2293 keV 3 | S(n)= 6866.98 keV 15 | S(p)= 6352.1 keV 17 | Q(α)= 1720.9 keV 9 | ||
| Reference: 2021WA16 |
| References: | |||
| A | 169Yb IT decay (46 S) | B | 169Lu ε decay (34.06 H) |
| C | 124Sn(48Ca,3nγ) | D | 167Er(α,2nγ) |
| E | 168Yb(n,γ) E=THERMAL | F | 168Yb(d,p),170Yb(d,t) |
| G | 171Yb(p,t) | H | 168Yb(n,γ) E=resonance |
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 0.0 | ABCDEF | 7/2+ | 32.016 d 8 % ε = 100 | |||||
| 24.2003 16 | ABCDEFG | 1/2- | 46 s 2 % IT = 100 | 24.20 2 | 100 | E3 | 0.0 | 7/2+ |
| 70.8816 8 | BCDEFG | 9/2+ | 70.8814 9 | 100 | M1+E2 | 0.0 | 7/2+ | |
| 86.9191 16 | B DEFG | 3/2- | 62.7190 6 | 100 | M1+E2 | 24.2003 | 1/2- | |
| 99.2409 15 | BCDEFG | 5/2- | 12.31 2 75.0404 8 | 6.0 13 100.0 23 | M1+E2 E2 | 86.9191 24.2003 | 3/2- 1/2- | |
| 161.6505 10 | BCDEF | 11/2+ | 90.7692 10 161.6513 15 | 100.0 21 29.7 22 | M1+E2 E2 | 70.8816 0.0 | 9/2+ 7/2+ | |
| 191.2141 12 | B DEFG | 5/2- | 3.35 ns 15 | 91.9737 12 104.2955 17 167.0141 25 191.2137 15 | 2.91 6 2.34 14 0.103 13 100.0 23 | M1(+E2) M1(+E2) [E2] E1+M2 | 99.2409 86.9191 24.2003 0.0 | 5/2- 3/2- 1/2- 7/2+ |
| 243.8170 16 | B DEFG | 7/2- | 144.5758 9 156.8977 10 | 40.1 10 100.0 18 | M1+E2 E2 | 99.2409 86.9191 | 5/2- 3/2- | |
| 264.2544 21 | BCDEFG | 9/2- | 20.44 2 165.0134 15 | 0.42 7 100.0 19 | M1 E2 | 243.8170 99.2409 | 7/2- 5/2- | |
| 269.6554 24 | BCDEF | 13/2+ | 108.0053 25 198.771 5 | 100 5 52 8 | M1+E2 [E2] | 161.6505 70.8816 | 11/2+ 9/2+ | |
| 278.5978 13 | B DEF | 7/2- | 14.22 4 34.79 4 87.3836 10 179.356 4 207.713 3 278.595 5 | <1.57 100.0 18 1.39 18 17.5 6 5.3 4 | M1+E2 M1+E2 E1(+M2) (E1) | 264.2544 243.8170 191.2141 99.2409 70.8816 0.0 | 9/2- 7/2- 5/2- 5/2- 9/2+ 7/2+ | |
| 389.5273 14 | B DEF | 9/2- | 110.9291 10 198.3136 17 227.878 3 318.646 15 389.53 3 | 100.0 24 43.9 15 11.0 12 5.13 24 8.4 4 | M1+E2 E2 [E1] (E1) (E1) | 278.5978 191.2141 161.6505 70.8816 0.0 | 7/2- 5/2- 11/2+ 9/2+ 7/2+ | |
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 405.05 22 | CD | 15/2+ | 135.3 5 243.4 3 | 50 5 100 10 | (M1+E2) (E2) | 269.6554 161.6505 | 13/2+ 11/2+ | |
| 486.9449 31 | B DEFG | (11/2-) | 208.336 15 222.694 6 243.127 3 | 7.4 12 18.3 20 100 10 | (E2) | 278.5978 264.2544 243.8170 | 7/2- 9/2- 7/2- | |
| 512.028 15 | BCDE G | (13/2)- | 247.766 15 | 100 | E2 | 264.2544 | 9/2- | |
| 523.0746 32 | B DEF | 11/2- | 133.542 4 244.474 5 | 100.0 26 82 8 | M1+E2 (E2) | 389.5273 278.5978 | 9/2- 7/2- | |
| 547.12 25 | CD | 17/2+ | 141.9 5 277.5 3 | 28.8 29 100 10 | (M1+E2) (E2) | 405.05 269.6554 | 15/2+ 13/2+ | |
| 569.8316 27 | B EFG | 5/2- | 291.233 3 325.987 12 378.625 5 470.557 17 482.890 15 569.80 3 | 21.1 8 0.70 8 100.0 26 5.2 5 7.1 4 7.0 3 | M1+E2 M1+E2 M1 [E1] | 278.5978 243.8170 191.2141 99.2409 86.9191 0.0 | 7/2- 7/2- 5/2- 5/2- 3/2- 7/2+ | |
| 590.692 6 | B EF | (5/2)+ | 312.082 15 503.88 10 519.788 15 590.695 14 | <0.13 0.42 11 2.65 34 100 5 | [E2] M1+E2 | 278.5978 86.9191 70.8816 0.0 | 7/2- 3/2- 9/2+ 7/2+ | |
| 647.288 9 | B E | 7/2+ | 485.69 4 576.398 12 647.272 17 | 2.2 4 100 8 43 5 | M1+E2 M1+E2 | 161.6505 70.8816 0.0 | 11/2+ 9/2+ 7/2+ | |
| 647.8373 28 | B EF | 7/2- | 258.311 3 369.234 6 383.595 15 403.957 25 456.636 9 548.546 25 560.73 7 | 40.3 16 100.0 25 9.5 10 14.8 11 85 4 42 4 11.7 9 | M1+E2 M1(+E2) (M1) M1+E2 M1+E2 (E2) | 389.5273 278.5978 264.2544 243.8170 191.2141 99.2409 86.9191 | 9/2- 7/2- 9/2- 7/2- 5/2- 5/2- 3/2- | |
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 659.628 5 | B EFG | 3/2- | 89.809 15 ? 468.434 12 560.369 15 572.731 12 635.410 15 | 0.16 4 4.1 6 25 3 100 13 <235 | (M1) M1+E2 M1 | 569.8316 191.2141 99.2409 86.9191 24.2003 | 5/2- 5/2- 5/2- 3/2- 1/2- | |
| 677.107 6 | DE | 13/2- | 154.020 10 287.585 7 | 47 10 100 15 | (M1+E2) [E2] | 523.0746 389.5273 | 11/2- 9/2- | |
| 707.024 8 | B EF | 9/2+ | 183.920 12 436.98 10 545.54 2 636.11 7 | 0.9 4 7.8 19 75 5 100 26 | M1+E2 E2(+M1) | 523.0746 269.6554 161.6505 70.8816 | 11/2- 13/2+ 11/2+ 9/2+ | |
| 719.944 6 | B E | 3/2+ | 129.221 10 528.672 25 695.53 10 719.979 25 | 0.035 6 1.20 16 0.85 14 100 | E2 | 590.692 191.2141 24.2003 0.0 | (5/2)+ 5/2- 1/2- 7/2+ | |
| 722.276 5 | B EF | 5/2- | 443.659 25 478.449 10 531.04 3 623.026 15 635.410 15 | 1.51 24 13.6 20 2.03 32 100 9 <183 | M1 M1(+E2) M1 | 278.5978 243.8170 191.2141 99.2409 86.9191 | 7/2- 7/2- 5/2- 5/2- 3/2- | |
| 736.23 30 | CD | 19/2+ | 189.1 5 331.2 3 | 32 3 100 10 | M1+E2 E2 | 547.12 405.05 | 17/2+ 15/2+ | |
| 748.978 6 | B EFG | (9/2)- | 179.116 12 225.901 6 262.164 8 359.489 27 470.557 17 484.65 4 505.10 17 587.29 20 649.72 12 | 2.9 12 16 8 8 3 38.0 22 100 14 37.4 16 32 5 43 19 12.8 16 | (M1+E2) M1 (M1) M1 | 569.8316 523.0746 486.9449 389.5273 278.5978 264.2544 243.8170 161.6505 99.2409 | 5/2- 11/2- (11/2-) 9/2- 7/2- 9/2- 7/2- 11/2+ 5/2- | |
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 757.872 18 | E | (11/2+) | 488.22 2 596.15 6 | 63 8 100 22 | 269.6554 161.6505 | 13/2+ 11/2+ | ||
| 761.846 7 | B E | (5/2)+ | 171.156 7 518.07 7 690.921 34 761.864 25 | 0.13 3 <1.8 93 5 100 13 | (E2) M1+E2 | 590.692 243.8170 70.8816 0.0 | (5/2)+ 7/2- 9/2+ 7/2+ | |
| 807.066 11 | B EFG | (7/2)- | 417.50 11 542.82 2 563.243 15 616.14 12 707.86 8 | <4.1 18.1 24 100 6 8.1 17 87 5 | (M1) (E2) M1+E2 | 389.5273 264.2544 243.8170 191.2141 99.2409 | 9/2- 9/2- 7/2- 5/2- 5/2- | |
| 807.7 5 | D | (15/2-) | 320.7 5 | 100 | [E2] | 486.9449 | (11/2-) | |
| 813.333 9 | E | (1/2)- | 153.732 12 622.092 15 726.417 25 | 0.09 6 82 11 100 13 | M1(+E2) | 659.628 191.2141 86.9191 | 3/2- 5/2- 3/2- | |
| 831.899 10 | B E | (7/2)+ | 111.961 9 640.51 10 670.32 7 760.95 4 831.87 15 | 0.42 7 4.7 13 46 6 100 14 27 5 | E2 M1+E2 (M1) | 719.944 191.2141 161.6505 70.8816 0.0 | 3/2+ 5/2- 11/2+ 9/2+ 7/2+ | |
| 833.83 30 | CD | (17/2-) | 321.8 3 | 100 | (E2) | 512.028 | (13/2)- | |
| 851.392 10 | B EF | 3/2- | 607.67 5 660.193 17 752.19 5 764.46 4 827.15 3 | 5.0 7 <78 15.3 19 32 4 100 14 | M1+E2 M1 | 243.8170 191.2141 99.2409 86.9191 24.2003 | 7/2- 5/2- 5/2- 3/2- 1/2- | |
| 851.48 31 | D | 15/2- | 174.5 5 328.4 5 | 33 7 100 21 | (M1+E2) (E2) | 677.107 523.0746 | 13/2- 11/2- | |
| 865.155 14 | EF | (11/2-) | 217.321 15 342.32 5 353.04 5 | 43 12 100 26 71 16 | 647.8373 523.0746 512.028 | 7/2- 11/2- (13/2)- | ||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 877 3 | F | (13/2+) | ||||||
| 886.806 35 | B | 9/2+ | 725.07 7 815.95 4 | 100 5 65 3 | M1+E2 M1+E2 | 161.6505 70.8816 | 11/2+ 9/2+ | |
| 903.14 33 | CD | 21/2+ | 166.8 5 356.0 3 | 16 3 100 11 | (M1+E2) (E2) | 736.23 547.12 | 19/2+ 17/2+ | |
| 911.638 10 | B EF | (5/2)- | 149.790 20 522.112 17 633.071 20 667.73 14 812.41 8 824.68 6 | 0.72 18 26 3 100 12 92 10 35 6 58 8 | M1 (M1) | 761.846 389.5273 278.5978 243.8170 99.2409 86.9191 | (5/2)+ 9/2- 7/2- 7/2- 5/2- 3/2- | |
| 919.784 10 | B EF | (9/2)- | 170.731 20 197.508 30 212.783 10 272.66 16 432.75 3 530.32 10 655.45 8 675.90 11 920.2 10 | 2.5 6 5.2 6 <8.4 17 6 26 3 38 10 100 12 46 6 | (M1) (M1) M1 | 748.978 722.276 707.024 647.288 486.9449 389.5273 264.2544 243.8170 0.0 | (9/2)- 5/2- 9/2+ 7/2+ (11/2-) 9/2- 9/2- 7/2- 7/2+ | |
| 929.113 30 | B F | 11/2- | 406.03 7 539.37 15 657.9 3 ? 664.69 8 767.55 4 | <13.5 27 4 <39 100 8 | (E1) [E2(+M1)] E1+M2 | 523.0746 389.5273 269.6554 264.2544 161.6505 | 11/2- 9/2- 13/2+ 9/2- 11/2+ | |
| 946.470 11 ? | E | 239.464 15 423.376 17 784.88 15 | 6.9 11 66 8 100 20 | 707.024 523.0746 161.6505 | 9/2+ 11/2- 11/2+ | |||
| 960.602 13 | B EF | 7/2- | 682.12 28 889.753 21 960.622 20 | 0.09 4 22.9 6 100 2 | E1 E1 | 278.5978 70.8816 0.0 | 7/2- 9/2+ 7/2+ | |
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 996.64 4 | EF | (7/2)- | 348.77 5 ? 805.47 25 ? 897.45 6 | 0.92 26 <8.3 100 14 | M1 | 647.8373 191.2141 99.2409 | 7/2- 5/2- 5/2- | |
| 1033.892 5 | EFG | (1/2+,3/2) | 272.053 10 311.619 5 313.940 5 374.266 7 934.87 20 947.37 15 1009.64 6 | 1.22 22 4.2 5 6.8 9 10.0 12 13.0 22 23 3 100 14 | 761.846 722.276 719.944 659.628 99.2409 86.9191 24.2003 | (5/2)+ 5/2- 3/2+ 3/2- 5/2- 3/2- 1/2- | ||
| 1042.7 4 | D | (17/2-) | 191.0 5 ? 365.5 5 | 100 21 | (E2) | 851.48 677.107 | 15/2- 13/2- | |
| 1061.063 15 | B E | (11/2-) | 254.01 4 312.082 15 574.10 8 781.77 25 796.36 25 | 6.0 11 <11 56 21 63 13 100 20 | 807.066 748.978 486.9449 278.5978 264.2544 | (7/2)- (9/2)- (11/2-) 7/2- 9/2- | ||
| 1064.719 12 | EF | (5/2+,7/2,9/2+) | 357.686 9 417.50 11 474.28 6 1064.7 4 | 100 19 <100 81 15 <846 | 707.024 647.288 590.692 0.0 | 9/2+ 7/2+ (5/2)+ 7/2+ | ||
| 1070.693 16 | B EF | 7/2+ | 423.376 17 480.06 4 908.64 7 999.96 7 1070.81 7 | <7.5 38 5 29 4 100 6 95 5 | M1 (M1) M1+E2 E0+M1+E2 | 647.288 590.692 161.6505 70.8816 0.0 | 7/2+ (5/2)+ 11/2+ 9/2+ 7/2+ | |
| 1078.343 18 | B EF | 9/2- | 814.02 20 ? 916.710 29 1007.465 32 1078.28 4 | 48.1 14 100.0 25 59.4 23 | E1(+M2) E1+M2 E1(+M2) | 264.2544 161.6505 70.8816 0.0 | 9/2- 11/2+ 9/2+ 7/2+ | |
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1110.700 8 | EFG | 3/2-,5/2- | 297.40 4 390.748 8 451.15 11 ? 1023.72 7 1086.35 10 | 0.64 12 10.4 13 1.5 5 100 15 90 13 | 813.333 719.944 659.628 86.9191 24.2003 | (1/2)- 3/2+ 3/2- 3/2- 1/2- | ||
| 1134 3 | F | |||||||
| 1141.26 10 | B E | (9/2)+ | 871.51 25 979.74 12 1140.78 25 | 38 13 100 15 78 45 | E2(+M1) | 269.6554 161.6505 0.0 | 13/2+ 11/2+ 7/2+ | |
| 1157.2 4 | CD | 23/2+ | 253.3 5 421.0 3 | 24 5 100 10 | (M1+E2) (E2) | 903.14 736.23 | 21/2+ 19/2+ | |
| 1159.88 4 | E | (5/2+) | 512.03 5 590.04 6 968.77 17 1088.9 4 ? | 59 12 62 11 57 9 100 24 | 647.8373 569.8316 191.2141 70.8816 | 7/2- 5/2- 5/2- 9/2+ | ||
| 1166.89 6 | B FG | (7/2,9/2)- | 247.2 3 519.02 6 903.42 23 1068.54 8 | 18 6 15.4 22 13 5 100 6 | M1+E2 (E2) | 919.784 647.8373 264.2544 99.2409 | (9/2)- 7/2- 9/2- 5/2- | |
| 1176.658 13 | B EFG | (7/2,9/2)+ | 230.193 25 418.76 5 469.50 2 585.983 25 1015.4 4 1106.11 6 1177.1 4 | 1.5 3 <9 26 4 77 10 <127 100 18 | M1(+E2) | 946.470 757.872 707.024 590.692 161.6505 70.8816 0.0 | (11/2+) 9/2+ (5/2)+ 11/2+ 9/2+ 7/2+ | |
| 1198 3 | F | |||||||
| 1198.8 7 | D | (19/2-) | 391.1 5 | 100 | (E2) | 807.7 | (15/2-) | |
| 1202.209 13 | E | (5/2+) | 137.487 8 350.99 10 554.44 17 611.626 17 632.38 7 1115.1 4 1131.29 17 | 1.9 3 5.3 9 6.9 28 <180 <44 59 14 100 45 | 1064.719 851.392 647.8373 590.692 569.8316 86.9191 70.8816 | (5/2+,7/2,9/2+) 3/2- 7/2- (5/2)+ 5/2- 3/2- 9/2+ | ||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1204.55 17 | B | 613.9 3 1117.61 20 | 100 53 87 27 | 590.692 86.9191 | (5/2)+ 3/2- | |||
| 1218.0 4 | CD | (21/2-) | 384.2 2 | 100 | [E2] | 833.83 | (17/2-) | |
| 1225.42 8 | EF | 1/2,3/2,5/2+ | 634.73 8 | 100 | 590.692 | (5/2)+ | ||
| 1232.243 25 | E | (3/2-) | 271.70 3 418.76 5 509.88 6 | 7.0 10 <32 100 26 | 960.602 813.333 722.276 | 7/2- (1/2)- 5/2- | ||
| 1250.5 5 ? | D | (19/2-) | 207.4 5 ? 399.4 5 ? | 63 14 100 20 | 1042.7 851.48 | (17/2-) 15/2- | ||
| 1261.713 29 | E | (5/2,7/2-) | 454.65 3 539.10 25 602.08 7 614.5 4 1018.0 3 | 78 11 96 32 100 17 52 13 <234 | 807.066 722.276 659.628 647.288 243.8170 | (7/2)- 5/2- 3/2- 7/2+ 7/2- | ||
| 1270.736 8 | E | (1/2)- | 160.035 4 419.39 3 457.43 2 1183.63 25 1246.5 3 | 1.0 3 35 5 8.5 12 100 21 72 13 | M1 M1 | 1110.700 851.392 813.333 86.9191 24.2003 | 3/2-,5/2- 3/2- (1/2)- 3/2- 1/2- | |
| 1283.295 19 | B F | (7/2,9/2)- | 476.38 15 1212.52 8 1283.28 4 | 1.4 3 22.7 18 100 5 | E1(+M2) E1+M2 | 807.066 70.8816 0.0 | (7/2)- 9/2+ 7/2+ | |
| 1285.120 8 | E | (3/2+,5/2,7/2+) | 174.420 2 453.34 6 565.13 9 1284.7 8 | 1.47 19 1.5 5 2.3 12 100 36 | 1110.700 831.899 719.944 0.0 | 3/2-,5/2- (7/2)+ 3/2+ 7/2+ | ||
| 1296.655 11 | E | (3/2-,5/2,7/2-) | 185.941 25 262.753 17 445.17 7 1018.0 3 1105.5 3 1197.8 7 1209.8 3 | 0.41 6 0.73 14 1.2 4 <24 33 6 100 29 55 11 | 1110.700 1033.892 851.392 278.5978 191.2141 99.2409 86.9191 | 3/2-,5/2- (1/2+,3/2) 3/2- 7/2- 5/2- 5/2- 3/2- | ||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1311.787 13 | E | (5/2+,7/2) | 135.130 15 504.64 7 549.90 10 591.78 6 1033.72 25 1067.64 20 | 0.60 13 9.5 25 5.0 10 22 7 50 10 100 18 | 1176.658 807.066 761.846 719.944 278.5978 243.8170 | (7/2,9/2)+ (7/2)- (5/2)+ 3/2+ 7/2- 7/2- | ||
| 1319.824 12 | EF | (1/2)- | 468.434 12 660.193 17 1232.64 17 1295.6 4 | <13.0 <102 100 13 99 16 | M1+E2 M1 (M1) | 851.392 659.628 86.9191 24.2003 | 3/2- 3/2- 3/2- 1/2- | |
| 1335.6 5 | CD | (25/2)+ | 177.9 5 ? 433.0 5 | <14.2 100 10 | (E2) | 1157.2 903.14 | 23/2+ 21/2+ | |
| 1343.65 4 | B | (7/2)- | 272.66 16 432.27 7 1065.09 5 1099.89 11 1244.24 12 1272.46 6 1343.56 13 | 8.6 28 4.1 5 69 6 9.3 10 11.0 14 100 5 21.6 17 | M1+E2 M1 M1 | 1070.693 911.638 278.5978 243.8170 99.2409 70.8816 0.0 | 7/2+ (5/2)- 7/2- 7/2- 5/2- 9/2+ 7/2+ | |
| 1350.153 12 | EFG | (3/2-) | 239.464 15 498.77 4 627.852 25 630.23 3 1263.08 20 1325.5 6 | <0.31 2.1 3 19.5 24 10.3 14 100 16 44 10 | (M1) (M1) | 1110.700 851.392 722.276 719.944 86.9191 24.2003 | 3/2-,5/2- 3/2- 5/2- 3/2+ 3/2- 1/2- | |
| 1354.815 13 | EFG | (3/2-) | 443.182 9 632.38 7 634.73 8 1163.14 20 | 27 4 <19 <29 100 20 | (M1) (M1) | 911.638 722.276 719.944 191.2141 | (5/2)- 5/2- 3/2+ 5/2- | |
| 1395.392 11 | EF | (5/2-) | 284.691 8 588.46 4 1131.29 17 1151.36 20 | 2.0 3 20 3 66 30 100 16 | 1110.700 807.066 264.2544 243.8170 | 3/2-,5/2- (7/2)- 9/2- 7/2- | ||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1398.711 13 | E | (3/2)- | 113.569 15 547.45 20 ? 678.67 10 739.02 10 ? 1207.5 3 1373.6 5 | 4.6 6 2.5 6 2.7 27 7.3 12 86 17 100 15 | M1 (M1) | 1285.120 851.392 719.944 659.628 191.2141 24.2003 | (3/2+,5/2,7/2+) 3/2- 3/2+ 3/2- 5/2- 1/2- | |
| 1406.341 29 | B | 9/2- | 657.86 30 1141.96 10 1162.49 7 1215.28 11 1307.20 5 1406.23 5 | <95 18.3 24 <85 47 4 50 8 100 4 | M1 M1 E2 E1+M2 | 748.978 264.2544 243.8170 191.2141 99.2409 0.0 | (9/2)- 9/2- 7/2- 5/2- 5/2- 7/2+ | |
| 1420.48 10 | B FG | (5/2-,7/2,9/2-) | 1156.03 16 1176.48 22 1321.53 16 | 100 18 <340 <164 | 264.2544 243.8170 99.2409 | 9/2- 7/2- 5/2- | ||
| 1426.80 6 | B FG | (7/2,9/2)- | 466.93 21 664.69 8 857.15 24 939.7 5 1037.49 13 1148.0 6 1162.49 7 | 87 22 <248 65 35 <326 87 43 100 52 <366 | (E2) M1 | 960.602 761.846 569.8316 486.9449 389.5273 278.5978 264.2544 | 7/2- (5/2)+ 5/2- (11/2-) 9/2- 7/2- 9/2- | |
| 1444.74 5 | B | 7/2-,9/2- | 796.93 7 1180.45 6 1201.0 9 | 42 9 100 11 | E2 M1(+E2) | 647.8373 264.2544 243.8170 | 7/2- 9/2- 7/2- | |
| 1449.796 14 | B E | 7/2- | 166.509 19 187.817 17 489.25 6 617.682 25 642.65 8 687.93 4 701.04 24 802.34 4 879.93 4 926.49 12 1060.28 4 1171.20 4 1206.00 4 1258.59 6 1350.65 9 1379.04 4 1449.74 4 | 1.29 6 0.17 3 1.42 17 2.38 19 0.57 10 2.71 14 0.59 12 2.67 21 3.44 19 0.24 12 19.3 7 8.1 3 5.1 3 3.59 10 1.95 5 21 100.0 21 | M1+E2 M1 E1 (M1) (E1(+M2)) M1+E2 M1+E2 M1+E2 M1+E2 M1 M1+E2 E1 E1(+M2) | 1283.295 1261.713 960.602 831.899 807.066 761.846 748.978 647.8373 569.8316 523.0746 389.5273 278.5978 243.8170 191.2141 99.2409 70.8816 0.0 | (7/2,9/2)- (5/2,7/2-) 7/2- (7/2)+ (7/2)- (5/2)+ (9/2)- 7/2- 5/2- 11/2- 9/2- 7/2- 7/2- 5/2- 5/2- 9/2+ 7/2+ | |
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1463.019 17 | E | (7/2-) | 177.94 4 401.87 7 597.83 7 611.626 17 1218.7 7 | 2.4 14 3.8 11 40 7 <260 100 30 | 1285.120 1061.063 865.155 851.392 243.8170 | (3/2+,5/2,7/2+) (11/2-) (11/2-) 3/2- 7/2- | ||
| 1463.384 18 | B FG | 7/2- | 502.8 3 939.7 5 1073.79 3 1184.875 24 1199.10 6 1219.61 4 1463.39 4 | 6.2 10 <8 51 3 100 4 10.1 8 13.5 18 67.9 16 | M1+E2 M1+E2 M1+E2 M1+E2 E1(+M2) | 960.602 523.0746 389.5273 278.5978 264.2544 243.8170 0.0 | 7/2- 11/2- 9/2- 7/2- 9/2- 7/2- 7/2+ | |
| 1464.97 4 | EFG | (7/2)- | 518.56 8 553.31 5 1200.9 10 1221.1 2 | 3.5 7 4.4 8 20 6 100 15 | M1(+E2) | 946.470 911.638 264.2544 243.8170 | (5/2)- 9/2- 7/2- | |
| 1478.510 15 | E G | (3/2-,5/2+) | 79.793 9 444.69 11 ? 518.07 7 756.30 9 758.89 20 ? 908.8 4 1391.8 17 | 12.9 24 31 6 <60 100 15 66 18 <81 <588 | 1398.711 1033.892 960.602 722.276 719.944 569.8316 86.9191 | (3/2)- (1/2+,3/2) 7/2- 5/2- 3/2+ 5/2- 3/2- | ||
| 1509.7 9 | E G | 1/2- | ||||||
| 1524.158 27 | EFG | 1/2,3/2,5/2+ | 174.017 25 459.25 5 | 22 7 100 27 | 1350.153 1064.719 | (3/2-) (5/2+,7/2,9/2+) | ||
| 1531.562 13 | EFG | (3/2-,5/2+) | 181.27 45 234.904 7 497.68 7 571.36 20 1432.5 7 1445.2 17 | 8 3 0.64 8 1.6 3 4.1 9 100 20 <34 | 1350.153 1296.655 1033.892 960.602 99.2409 86.9191 | (3/2-) (3/2-,5/2,7/2-) (1/2+,3/2) 7/2- 5/2- 3/2- | ||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1540.692 34 | B | 9/2- | 1017.58 5 1151.70 7 1276.62 23 1296.90 5 1540.63 15 | 100 7 79 10 <74 64 4 15 4 | M1 M1+E2 M1 M1+E2 | 523.0746 389.5273 264.2544 243.8170 0.0 | 11/2- 9/2- 9/2- 7/2- 7/2+ | |
| 1554.862 23 | EF | (1/2-) | 204.705 25 703.38 9 741.54 12 792.97 12 834.94 8 1467.3 12 1530.5 10 | 1.2 3 75 11 54 11 29 5 85 13 100 48 <490 | 1350.153 851.392 813.333 761.846 719.944 86.9191 24.2003 | (3/2-) 3/2- (1/2)- (5/2)+ 3/2+ 3/2- 1/2- | ||
| 1554.881 22 | B F | 9/2- | 1031.91 6 1165.21 11 1276.62 23 1290.59 3 1311.13 7 1363.83 9 1483.97 9 ? 1554.4 5 | 11.5 6 14.9 10 <16.7 100 5 5.7 10 6.1 8 17.6 12 <11.7 | M1+E2 M1 M1 M1+E2 M1 E2 [E1] | 523.0746 389.5273 278.5978 264.2544 243.8170 191.2141 70.8816 0.0 | 11/2- 9/2- 7/2- 9/2- 7/2- 5/2- 9/2+ 7/2+ | |
| 1565.62 4 | B F | (7/2-) | 1301.33 5 1321.53 16 1374.53 8 | 73 4 <40 100 5 | (M1) (M1) | 264.2544 243.8170 191.2141 | 9/2- 7/2- 5/2- | |
| 1585.873 14 | E G | (1/2-) | 187.159 9 315.151 20 674.29 15 | 3.9 6 13.9 21 100 17 | 1398.711 1270.736 911.638 | (3/2)- (1/2)- (5/2)- | ||
| 1607 6 | F | |||||||
| 1616.669 12 | B E | (1/2+,3/2,5/2+) | 304.880 7 320.013 7 506.06 3 705.07 10 1518.5 8 1529.87 4 | 46 6 44 6 100 13 83 32 <1070 <1451 | 1311.787 1296.655 1110.700 911.638 99.2409 86.9191 | (5/2+,7/2) (3/2-,5/2,7/2-) 3/2-,5/2- (5/2)- 5/2- 3/2- | ||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1618.738 17 | E G | 1/2,3/2 | 416.528 10 767.29 20 805.47 25 ? 1594.5 11 | 6.8 9 6.7 17 <6.0 100 29 | 1202.209 851.392 813.333 24.2003 | (5/2+) 3/2- (1/2)- 1/2- | ||
| 1640 6 | F | |||||||
| 1650.6 9 | D | (23/2-) | 451.8 5 | 100 | (E2) | 1198.8 | (19/2-) | |
| 1655.5 5 | CD | (25/2-) | 437.5 4 | 100 | (E2) | 1218.0 | (21/2-) | |
| 1656.51 4 | B | 5/2-,7/2-,9/2- | 934.5 5 1266.68 25 1392.27 4 1412.39 10 1556.7 4 | 53 26 100 18 79 86 9 42 7 | E2 E2 M1(+E2) | 722.276 389.5273 264.2544 243.8170 99.2409 | 5/2- 9/2- 9/2- 7/2- 5/2- | |
| 1658.10 4 | B | 5/2+ | 587.44 6 1088.23 8 1379.04 4 1466.84 4 1658.08 5 | 1.9 4 3.0 5 32 100 3 23.9 6 | M1 E1 E1(+M2) M1+E2 | 1070.693 569.8316 278.5978 191.2141 0.0 | 7/2+ 5/2- 7/2- 5/2- 7/2+ | |
| 1666.1 6 | CD | (27/2+) | 508.9 4 | 100 | 1157.2 | 23/2+ | ||
| 1689.30 5 | EF | (5/2,7/2)- | 624.00 25 777.31 15 1410.6 6 1497.6 20 1689.35 5 | 10 5 5.5 9 100 49 65 19 47 23 | M1+E2 | 1064.719 911.638 278.5978 191.2141 0.0 | (5/2+,7/2,9/2+) (5/2)- 7/2- 5/2- 7/2+ | |
| 1689.334 25 | B F | 7/2- | 406.03 7 728.73 6 1497.92 4 1618.48 4 1689.35 5 | <6.0 34.2 20 39.5 16 100.0 23 73 4 | (M1) M1+E2 E1(+M2) E1(+M2) | 1283.295 960.602 191.2141 70.8816 0.0 | (7/2,9/2)- 7/2- 5/2- 9/2+ 7/2+ | |
| 1694.44 6 | B F | 5/2+ | 1595.89 23 1607.51 6 1694.38 14 | 34 8 100 8 64 5 | E1(+M2) (M1) | 99.2409 86.9191 0.0 | 5/2- 3/2- 7/2+ | |
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1696.422 19 | E | 3/2- | 399.621 17 425.77 6 784.88 15 845.10 25 1417.7 5 1505.9 10 | 4.3 6 0.85 23 <6.0 4.7 11 54 25 100 20 | M1 | 1296.655 1270.736 911.638 851.392 278.5978 191.2141 | (3/2-,5/2,7/2-) (1/2)- (5/2)- 3/2- 7/2- 5/2- | |
| 1707.83 6 | B | (7/2,9/2)+ | 875.9 1636.82 8 1707.97 9 | <25 100 4 <98 | M1+E2 (M1+E2) | 831.899 70.8816 0.0 | (7/2)+ 9/2+ 7/2+ | |
| 1708.51 4 | B G | 7/2- | 1318.53 12 1429.87 9 1517.31 4 | <26 57 3 100 6 | (M1) M1(+E2) M1+E2 | 389.5273 278.5978 191.2141 | 9/2- 7/2- 5/2- | |
| 1716.020 29 | B G | 7/2+ | 1326.85 3 1437.43 4 1524.77 5 1554.4 5 1645.14 8 | 95 100 3 82 4 <21 12.7 8 | E1 E1(+M2) E1(+M2) M1+E2 | 389.5273 278.5978 191.2141 161.6505 70.8816 | 9/2- 7/2- 5/2- 11/2+ 9/2+ | |
| 1724.502 32 | E | (3/2-) | 439.42 4 453.69 7 522.58 6 917.4 4 1064.7 4 1076.56 8 1445.2 17 1480.1 20 1625.3 8 1637.2 12 | 2.2 6 1.1 4 <3.6 3.3 11 <12 71 11 <21 65 37 ≈100 53 16 | 1285.120 1270.736 1202.209 807.066 659.628 647.8373 278.5978 243.8170 99.2409 86.9191 | (3/2+,5/2,7/2+) (1/2)- (5/2+) (7/2)- 3/2- 7/2- 7/2- 7/2- 5/2- 3/2- | ||
| 1733 6 | F | |||||||
| 1742.877 18 | E | (3/2+,5/2,7/2-) | 264.365 10 510.70 5 671.94 15 1095.58 12 1551.5 15 1743.8 15 | 0.75 10 13.6 19 6.8 25 69 10 46 23 100 31 | 1478.510 1232.243 1070.693 647.288 191.2141 0.0 | (3/2-,5/2+) (3/2-) 7/2+ 7/2+ 5/2- 7/2+ | ||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1745.0 8 | E G | (1/2-) | ||||||
| 1757.3 9 | E | 1/2,3/2,5/2+ | ||||||
| 1767 6 | F | |||||||
| 1781.242 24 | E | (3/2-,5/2-) | 226.379 5 869.64 8 1061.60 17 1133.4 5 1391.8 17 | 2.8 4 52 8 100 18 59 15 <147 | 1554.862 911.638 719.944 647.8373 389.5273 | (1/2-) (5/2)- 3/2+ 7/2- 9/2- | ||
| 1781.756 21 | B G | 7/2- | 703.33 10 821.18 4 862.4 5 1392.27 4 1502.89 6 1590.35 5 1682.49 5 1781.75 5 | 10.2 12 26.4 10 <4.5 100 18.0 10 40.1 16 24.5 26 78.5 22 | M1 M1(+E2) E2 (M1) M1+E2 M1+E2 E1+M2 | 1078.343 960.602 919.784 389.5273 278.5978 191.2141 99.2409 0.0 | 9/2- 7/2- (9/2)- 9/2- 7/2- 5/2- 5/2- 7/2+ | |
| 1787.3 8 | E G | 1/2,3/2,5/2+ | ||||||
| 1796.670 21 | E | (3/2-,5/2+) | 511.55 2 989.34 25 1227.3 7 1518.5 8 1604.8 12 | 38 6 20 4 35 11 <140 100 39 | 1285.120 807.066 569.8316 278.5978 191.2141 | (3/2+,5/2,7/2+) (7/2)- 5/2- 7/2- 5/2- | ||
| 1828.110 18 | E | 1/2,3/2,5/2+ | 131.6883 20 296.53 2 477.98 3 717.34 12 1105.5 3 1563.0 10 ? 1583.6 10 1637.2 12 | 1.37 30 1.52 11 11.9 20 22 7 <52 144 44 100 39 <243 | 1696.422 1531.562 1350.153 1110.700 722.276 264.2544 243.8170 191.2141 | 3/2- (3/2-,5/2+) (3/2-) 3/2-,5/2- 5/2- 9/2- 7/2- 5/2- | ||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1837.5 7 | E | 1/2,3/2,5/2+ | ||||||
| 1844.2 6 | CD | (29/2+) | 508.6 4 | 100 | 1335.6 | (25/2)+ | ||
| 1857.4 9 | E | 1/2,3/2,5/2+ | ||||||
| 1867.59 4 | E | (3/2-,5/2+) | 143.087 25 1623.6 9 | 0.83 19 100 66 | 1724.502 243.8170 | (3/2-) 7/2- | ||
| 1888.00 6 | B | (7/2+,9/2+) | 817.6 4 1055.8 4 1127.1 6 1726.30 9 1817.12 7 | 100 5 39 13 29 3 16.1 11 | 1070.693 831.899 761.846 161.6505 70.8816 | 7/2+ (7/2)+ (5/2)+ 11/2+ 9/2+ | ||
| 1894.0 8 | E | 1/2,3/2,5/2+ | ||||||
| 1908.663 27 | B | 5/2+ | 1146.92 13 1260.86 6 1318.53 12 1338.82 4 1630.02 13 1717.41 6 1908.46 6 | 4.5 9 19.6 12 <8.7 100 3 4.0 7 6.9 6 5.1 3 | (M1) (M1) E1+M2 (M1,E2) | 761.846 647.8373 590.692 569.8316 278.5978 191.2141 0.0 | (5/2)+ 7/2- (5/2)+ 5/2- 7/2- 5/2- 7/2+ | |
| 1910.9 10 | E | 1/2,3/2,5/2+ | ||||||
| 1920.5 9 | E | 1/2,3/2,5/2+ | ||||||
| 1939.0 7 | E G | 1/2,3/2,5/2+ | ||||||
| 1954.53 4 | B | 5/2-,7/2- | 875.9 883.81 9 993.96 13 1122.21 7 1676.46 8 1763.35 5 1954.48 9 | <29 44 9 29 9 84 10 47.9 23 100 5 23.3 15 | (M1) M1 M1(+E2) | 1078.343 1070.693 960.602 831.899 278.5978 191.2141 0.0 | 9/2- 7/2+ 7/2- (7/2)+ 7/2- 5/2- 7/2+ | |
| 1972.21 5 | B G | 9/2- | 1043.20 8 1223.07 8 1707.97 9 1810.64 13 | 100 7 <92 <146 15.9 28 | M1+E2 (M1+E2) | 929.113 748.978 264.2544 161.6505 | 11/2- (9/2)- 9/2- 11/2+ | |
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 1974.132 26 | B G | 7/2- | 419.39 8 895.82 11 1013.08 10 1251.74 25 1326.85 3 1487.21 24 1710.17 10 1730.8 6 1903.04 5 1973.68 6 | 12.8 12 50 18 28 5 23 8 40 12.8 17 99 25 7 4 25.5 13 100 3 | (M1) (E2) E1 (E1(+M2)) (E1+M2) | 1554.881 1078.343 960.602 722.276 647.288 486.9449 264.2544 243.8170 70.8816 0.0 | 9/2- 9/2- 7/2- 5/2- 7/2+ (11/2-) 9/2- 7/2- 9/2+ 7/2+ | |
| 1998.4 7 | E G | 1/2,3/2,5/2+ | ||||||
| 2030.03 4 | B | 7/2- | 862.4 5 1109.99 7 1223.07 8 1751.2 4 1838.30 8 1959.24 9 2030.00 6 | <8 27.3 14 <21 2.0 5 5.2 3 40.8 14 100 3 | M1+E2 (E1(+M2)) (E1(+M2)) | 1166.89 919.784 807.066 278.5978 191.2141 70.8816 0.0 | (7/2,9/2)- (9/2)- (7/2)- 7/2- 5/2- 9/2+ 7/2+ | |
| 2037.7 8 | E | 1/2,3/2,5/2+ | ||||||
| 2048.2 11 | E G | 1/2,3/2,5/2+ | ||||||
| 2065.04 11 | B | 7/2+ | 2065.03 11 | 100 | M1+E2+E0 | 0.0 | 7/2+ | |
| 2101.03 6 | B | (5/2,7/2)- | 1822.42 11 2014.06 9 2101.09 13 | 100 7 90 11 35.3 27 | M1,E2 | 278.5978 86.9191 0.0 | 7/2- 3/2- 7/2+ | |
| 2103.6 7 | E | 1/2,3/2,5/2+ | ||||||
| 2123.2 12 | E G | 1/2,3/2,5/2+ | ||||||
| 2135.4 4 | B | 2135.4 4 | 100 | 0.0 | 7/2+ | |||
| 2140.2 6 | C | (29/2-) | 484.7 3 | 100 | (E2) | 1655.5 | (25/2-) | |
| 2192.9 10 | E | 1/2,3/2,5/2+ | ||||||
| 2217.5 10 | E | 1/2,3/2,5/2+ | ||||||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 2234.5 9 | E | 1/2,3/2,5/2+ | ||||||
| 2244.5 7 | E | 1/2,3/2,5/2+ | ||||||
| 2258.1 21 | C | (31/2+) | 592 2 | 100 | 1666.1 | (27/2+) | ||
| 2286.2 12 | E G | 1/2,3/2,5/2+ | ||||||
| 2287.22 5 | B | 7/2- | 1367.56 7 1897.60 10 2095.90 7 | 100 6 21.4 13 86 3 | M1 M1 | 919.784 389.5273 191.2141 | (9/2)- 9/2- 5/2- | |
| 2296.82 15 | B | 5/2-,7/2-,9/2- | 847.9 7 1547.69 18 2018.40 27 | 43 22 100 13 27 8 | M1 | 1449.796 748.978 278.5978 | 7/2- (9/2)- 7/2- | |
| 2299.1 9 | E | 1/2,3/2,5/2+ | ||||||
| 2313.6 7 | E | 1/2,3/2,5/2+ | ||||||
| 2342.4 9 | E | 1/2,3/2,5/2+ | ||||||
| 2350.1 8 | E | 1/2,3/2,5/2+ | ||||||
| 2355.6 8 | E | 1/2,3/2,5/2+ | ||||||
| 2375.9 10 | E | 1/2,3/2,5/2+ | ||||||
| 2381.4 10 | E | 1/2,3/2,5/2+ | ||||||
| 2388.0 9 | E | 1/2,3/2,5/2+ | ||||||
| 2401.0 9 | E | 1/2,3/2,5/2+ | ||||||
| 2407.4 9 | E | 1/2,3/2,5/2+ | ||||||
| 2415.4 9 | E | 1/2,3/2,5/2+ | ||||||
| 2425.7 9 | C | (33/2+) | 581.5 6 | 100 | 1844.2 | (29/2+) | ||
| 2427.5 9 | E | 1/2,3/2,5/2+ | ||||||
| 2441.1 10 | E | 1/2,3/2,5/2+ | ||||||
| 2449.8 8 | E | 1/2,3/2,5/2+ | ||||||
| 2477.9 10 | E | 1/2,3/2,5/2+ | ||||||
| 2498.7 8 | E | 1/2,3/2,5/2+ | ||||||
| 2504.4 9 | E | 1/2,3/2,5/2+ | ||||||
| 2517.1 10 | E | 1/2,3/2,5/2+ | ||||||
| 2522.8 8 | E | 1/2,3/2,5/2+ | ||||||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 2530.3 8 | E | 1/2,3/2,5/2+ | ||||||
| 2551.1 8 | E | 1/2,3/2,5/2+ | ||||||
| 2620.9 10 | E | 1/2,3/2,5/2+ | ||||||
| 2634.0 12 | E | 1/2,3/2,5/2+ | ||||||
| 2655.4 7 | E | 1/2,3/2,5/2+ | ||||||
| 2668.0 7 | C | (33/2-) | 527.8 3 | 100 | (E2) | 2140.2 | (29/2-) | |
| 2679.7 8 | E | 1/2,3/2,5/2+ | ||||||
| 2684.8 11 | E | 1/2,3/2,5/2+ | ||||||
| 2705.9 8 | E | 1/2,3/2,5/2+ | ||||||
| 2741.8 9 | E | 1/2,3/2,5/2+ | ||||||
| 2774.5 9 | E | 1/2,3/2,5/2+ | ||||||
| 2781.0 10 | E | 1/2,3/2,5/2+ | ||||||
| 2801.9 10 | E | 1/2,3/2,5/2+ | ||||||
| 2827.2 7 | E | 1/2,3/2,5/2+ | ||||||
| 2856.0 9 | E | 1/2,3/2,5/2+ | ||||||
| 2869.9 9 | E | 1/2,3/2,5/2+ | ||||||
| 2891.6 7 | E | 1/2,3/2,5/2+ | ||||||
| 2917.3 8 | E | 1/2,3/2,5/2+ | ||||||
| 2929.1 29 | C | (35/2+) | 671 2 | 100 | 2258.1 | (31/2+) | ||
| 2932.8 15 | E | 1/2,3/2,5/2+ | ||||||
| 2952.0 10 | E | 1/2,3/2,5/2+ | ||||||
| 2988.6 9 | E | 1/2,3/2,5/2+ | ||||||
| 2998.9 10 | E | 1/2,3/2,5/2+ | ||||||
| 3015.2 12 | E | 1/2,3/2,5/2+ | ||||||
| 3027.4 10 | E | 1/2,3/2,5/2+ | ||||||
| 3038.4 8 | E | 1/2,3/2,5/2+ | ||||||
| 3043.8 8 | E | 1/2,3/2,5/2+ | ||||||
| 3066.1 8 | E | 1/2,3/2,5/2+ | ||||||
| 3074.8 11 | C | (37/2+) | 649.1 6 | 100 | 2425.7 | (33/2+) | ||
| 3094.5 9 | E | 1/2,3/2,5/2+ | ||||||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 3105.6 7 | E | 1/2,3/2,5/2+ | ||||||
| 3118.9 11 | E | 1/2,3/2,5/2+ | ||||||
| 3130.3 9 | E | 1/2,3/2,5/2+ | ||||||
| 3142.6 8 | E | 1/2,3/2,5/2+ | ||||||
| 3173.8 8 | E | 1/2,3/2,5/2+ | ||||||
| 3238.6 8 | C | (37/2-) | 570.6 3 | 100 | (E2) | 2668.0 | (33/2-) | |
| 3246.5 9 | E | 1/2,3/2,5/2+ | ||||||
| 3274.0 15 | E | 1/2,3/2,5/2+ | ||||||
| 3344.4 8 | E | 1/2,3/2,5/2+ | ||||||
| 3375.4 8 | E | 1/2,3/2,5/2+ | ||||||
| 3450.0 9 | E | 1/2,3/2,5/2+ | ||||||
| 3526.7 8 | E | 1/2,3/2,5/2+ | ||||||
| 3559.9 9 | E | 1/2,3/2,5/2+ | ||||||
| 3588.1 31 | C | (39/2+) | 659 1 | 100 | 2929.1 | (35/2+) | ||
| 3657.0 10 | E | 1/2,3/2,5/2+ | ||||||
| 3781.8 12 | C | (41/2+) | 707.0 6 | 100 | 3074.8 | (37/2+) | ||
| 3856.1 8 | C | (41/2-) | 617.5 3 | 100 | 3238.6 | (37/2-) | ||
| 4330 4 | C | (43/2+) | 742 2 | 100 | 3588.1 | (39/2+) | ||
| 4524.0 14 | C | (45/2+) | 742.2 6 | 100 | 3781.8 | (41/2+) | ||
| 4526.9 10 | C | (45/2-) | 670.8 6 | 100 | 3856.1 | (41/2-) | ||
| 5116 4 | C | (47/2+) | 786 1 | 100 | 4330 | (43/2+) | ||
| 5256.5 11 | C | (49/2-) | 729.6 3 | 100 | 4526.9 | (45/2-) | ||
| 5272.1 15 | C | (49/2+) | 748.1 6 | 100 | 4524.0 | (45/2+) | ||
| 6045.8 15 | C | (53/2+) | 773.7 3 | 100 | 5272.1 | (49/2+) | ||
| 6048.3 11 | C | (53/2-) | 791.8 3 | 100 | (E2) | 5256.5 | (49/2-) | |
| 6874.8 25 | C | (57/2+) | 829 2 | 100 | 6045.8 | (53/2+) | ||
| 6903.6 11 | C | (57/2-) | 855.3 3 | 100 | 6048.3 | (53/2-) | ||
| 7770.8 32 | C | (61/2+) | 896 2 | 100 | 6874.8 | (57/2+) | ||
| 7823.3 12 | C | (61/2-) | 919.7 3 | 100 | 6903.6 | (57/2-) | ||
| 8806.7 12 | C | (65/2-) | 983.3 3 | 100 | 7823.3 | (61/2-) | ||
| E(level) (keV) | XREF | Jπ(level) | T1/2(level) | E(γ) (keV) | I(γ) | M(γ) | Final Levels | |
| 9854.2 14 | C | (69/2-) | 1047.5 6 | 100 | 8806.7 | (65/2-) | ||
| 10961.2 24 | C | (73/2-) | 1107 2 | 100 | 9854.2 | (69/2-) | ||
E(level): From least-squares fit to adopted Eγ, except where noted or where cross references clearly indicate other source. About 50 Eγ are fit poorly (deviation more than 3σ) and yield a χ2=5.1 c.f. χ2crit=1.2. Increasing the uncertainty by a factor of 2 or 3 for about 40 Eγs results a better fit, χ2=1.8. Those that did not fit well were omitted from the least-squares fit. All of these facts are marked by footnote and in comments.
I(γ): Relative photon branching from each level; values are from 169Lu ε decay (34.06 h), except where noted. Upper limits are shown for photon branching ratios affected by multiple placement.
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 1 - 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2 | |||||||
| 70.8816 8 | 9/2+ | ||||||
| 269.6554 24 | 13/2+ | 108.0053 25 198.771 5 | 100 5 52 8 | M1+E2 [E2] | 161.6505 70.8816 | 11/2+ 9/2+ | |
| 547.12 25 | 17/2+ | 141.9 5 277.5 3 | 28.8 29 100 10 | (M1+E2) (E2) | 405.05 269.6554 | 15/2+ 13/2+ | |
| 903.14 33 | 21/2+ | 166.8 5 356.0 3 | 16 3 100 11 | (M1+E2) (E2) | 736.23 547.12 | 19/2+ 17/2+ | |
| 1335.6 5 | (25/2)+ | 177.9 5 ? 433.0 5 | <14.2 100 10 | (E2) | 1157.2 903.14 | 23/2+ 21/2+ | |
| 1844.2 6 | (29/2+) | 508.6 4 | 100 | 1335.6 | (25/2)+ | ||
| 2425.7 9 | (33/2+) | 581.5 6 | 100 | 1844.2 | (29/2+) | ||
| 3074.8 11 | (37/2+) | 649.1 6 | 100 | 2425.7 | (33/2+) | ||
| 3781.8 12 | (41/2+) | 707.0 6 | 100 | 3074.8 | (37/2+) | ||
| 4524.0 14 | (45/2+) | 742.2 6 | 100 | 3781.8 | (41/2+) | ||
| 5272.1 15 | (49/2+) | 748.1 6 | 100 | 4524.0 | (45/2+) | ||
| 6045.8 15 | (53/2+) | 773.7 3 | 100 | 5272.1 | (49/2+) | ||
| 6874.8 25 | (57/2+) | 829 2 | 100 | 6045.8 | (53/2+) | ||
| 7770.8 32 | (61/2+) | 896 2 | 100 | 6874.8 | (57/2+) | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 2 - 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2 | |||||||
| 0.0 | 7/2+ | 32.016 d 8 % ε = 100 | |||||
| 161.6505 10 | 11/2+ | 90.7692 10 161.6513 15 | 100.0 21 29.7 22 | M1+E2 E2 | 70.8816 0.0 | 9/2+ 7/2+ | |
| 405.05 22 | 15/2+ | 135.3 5 243.4 3 | 50 5 100 10 | (M1+E2) (E2) | 269.6554 161.6505 | 13/2+ 11/2+ | |
| 736.23 30 | 19/2+ | 189.1 5 331.2 3 | 32 3 100 10 | M1+E2 E2 | 547.12 405.05 | 17/2+ 15/2+ | |
| 1157.2 4 | 23/2+ | 253.3 5 421.0 3 | 24 5 100 10 | (M1+E2) (E2) | 903.14 736.23 | 21/2+ 19/2+ | |
| 1666.1 6 | (27/2+) | 508.9 4 | 100 | 1157.2 | 23/2+ | ||
| 2258.1 21 | (31/2+) | 592 2 | 100 | 1666.1 | (27/2+) | ||
| 2929.1 29 | (35/2+) | 671 2 | 100 | 2258.1 | (31/2+) | ||
| 3588.1 31 | (39/2+) | 659 1 | 100 | 2929.1 | (35/2+) | ||
| 4330 4 | (43/2+) | 742 2 | 100 | 3588.1 | (39/2+) | ||
| 5116 4 | (47/2+) | 786 1 | 100 | 4330 | (43/2+) | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 3 - 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2, | |||||||
| 24.2003 16 | 1/2- | 46 s 2 % IT = 100 | |||||
| 99.2409 15 | 5/2- | 12.31 2 75.0404 8 | 6.0 13 100.0 23 | M1+E2 E2 | 86.9191 24.2003 | 3/2- 1/2- | |
| 264.2544 21 | 9/2- | 20.44 2 165.0134 15 | 0.42 7 100.0 19 | M1 E2 | 243.8170 99.2409 | 7/2- 5/2- | |
| 512.028 15 | (13/2)- | 247.766 15 | 100 | E2 | 264.2544 | 9/2- | |
| 833.83 30 | (17/2-) | 321.8 3 | 100 | (E2) | 512.028 | (13/2)- | |
| 1218.0 4 | (21/2-) | 384.2 2 | 100 | [E2] | 833.83 | (17/2-) | |
| 1655.5 5 | (25/2-) | 437.5 4 | 100 | (E2) | 1218.0 | (21/2-) | |
| 2140.2 6 | (29/2-) | 484.7 3 | 100 | (E2) | 1655.5 | (25/2-) | |
| 2668.0 7 | (33/2-) | 527.8 3 | 100 | (E2) | 2140.2 | (29/2-) | |
| 3238.6 8 | (37/2-) | 570.6 3 | 100 | (E2) | 2668.0 | (33/2-) | |
| 3856.1 8 | (41/2-) | 617.5 3 | 100 | 3238.6 | (37/2-) | ||
| 4526.9 10 | (45/2-) | 670.8 6 | 100 | 3856.1 | (41/2-) | ||
| 5256.5 11 | (49/2-) | 729.6 3 | 100 | 4526.9 | (45/2-) | ||
| 6048.3 11 | (53/2-) | 791.8 3 | 100 | (E2) | 5256.5 | (49/2-) | |
| 6903.6 11 | (57/2-) | 855.3 3 | 100 | 6048.3 | (53/2-) | ||
| 7823.3 12 | (61/2-) | 919.7 3 | 100 | 6903.6 | (57/2-) | ||
| 8806.7 12 | (65/2-) | 983.3 3 | 100 | 7823.3 | (61/2-) | ||
| 9854.2 14 | (69/2-) | 1047.5 6 | 100 | 8806.7 | (65/2-) | ||
| 10961.2 24 | (73/2-) | 1107 2 | 100 | 9854.2 | (69/2-) | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 4 - 1/2[521], α=-1/2 band. | |||||||
| 86.9191 16 | 3/2- | ||||||
| 243.8170 16 | 7/2- | 144.5758 9 156.8977 10 | 40.1 10 100.0 18 | M1+E2 E2 | 99.2409 86.9191 | 5/2- 3/2- | |
| 486.9449 31 | (11/2-) | 208.336 15 222.694 6 243.127 3 | 7.4 12 18.3 20 100 10 | (E2) | 278.5978 264.2544 243.8170 | 7/2- 9/2- 7/2- | |
| 807.7 5 | (15/2-) | 320.7 5 | 100 | [E2] | 486.9449 | (11/2-) | |
| 1198.8 7 | (19/2-) | 391.1 5 | 100 | (E2) | 807.7 | (15/2-) | |
| 1650.6 9 | (23/2-) | 451.8 5 | 100 | (E2) | 1198.8 | (19/2-) | |
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 5 - 5/2[512] band. α=12.7, B=-9.5 (5/2, 7/2, 9/2, 11/2 levels). | |||||||
| 191.2141 12 | 5/2- | 3.35 ns 15 | |||||
| 278.5978 13 | 7/2- | 14.22 4 34.79 4 87.3836 10 179.356 4 207.713 3 278.595 5 | <1.57 100.0 18 1.39 18 17.5 6 5.3 4 | M1+E2 M1+E2 E1(+M2) (E1) | 264.2544 243.8170 191.2141 99.2409 70.8816 0.0 | 9/2- 7/2- 5/2- 5/2- 9/2+ 7/2+ | |
| 389.5273 14 | 9/2- | 110.9291 10 198.3136 17 227.878 3 318.646 15 389.53 3 | 100.0 24 43.9 15 11.0 12 5.13 24 8.4 4 | M1+E2 E2 [E1] (E1) (E1) | 278.5978 191.2141 161.6505 70.8816 0.0 | 7/2- 5/2- 11/2+ 9/2+ 7/2+ | |
| 523.0746 32 | 11/2- | 133.542 4 244.474 5 | 100.0 26 82 8 | M1+E2 (E2) | 389.5273 278.5978 | 9/2- 7/2- | |
| 677.107 6 | 13/2- | 154.020 10 287.585 7 | 47 10 100 15 | (M1+E2) [E2] | 523.0746 389.5273 | 11/2- 9/2- | |
| 851.48 31 | 15/2- | 174.5 5 328.4 5 | 33 7 100 21 | (M1+E2) (E2) | 677.107 523.0746 | 13/2- 11/2- | |
| 1042.7 4 | (17/2-) | 191.0 5 ? 365.5 5 | 100 21 | (E2) | 851.48 677.107 | 15/2- 13/2- | |
| 1250.5 5 | (19/2-) | 207.4 5 ? 399.4 5 ? | 63 14 100 20 | 1042.7 851.48 | (17/2-) 15/2- | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 6 - 5/2[523] band. α=11.2 (5/2, 7/2, 9/2 levels). | |||||||
| 569.8316 27 | 5/2- | ||||||
| 647.8373 28 | 7/2- | 258.311 3 369.234 6 383.595 15 403.957 25 456.636 9 548.546 25 560.73 7 | 40.3 16 100.0 25 9.5 10 14.8 11 85 4 42 4 11.7 9 | M1+E2 M1(+E2) (M1) M1+E2 M1+E2 (E2) | 389.5273 278.5978 264.2544 243.8170 191.2141 99.2409 86.9191 | 9/2- 7/2- 9/2- 7/2- 5/2- 5/2- 3/2- | |
| 748.978 6 | (9/2)- | 179.116 12 225.901 6 262.164 8 359.489 27 470.557 17 484.65 4 505.10 17 587.29 20 649.72 12 | 2.9 12 16 8 8 3 38.0 22 100 14 37.4 16 32 5 43 19 12.8 16 | (M1+E2) M1 (M1) M1 | 569.8316 523.0746 486.9449 389.5273 278.5978 264.2544 243.8170 161.6505 99.2409 | 5/2- 11/2- (11/2-) 9/2- 7/2- 9/2- 7/2- 11/2+ 5/2- | |
| 865.155 14 | (11/2-) | 217.321 15 342.32 5 353.04 5 | 43 12 100 26 71 16 | 647.8373 523.0746 512.028 | 7/2- 11/2- (13/2)- | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 7 - 5/2[642] band. Small admixture from β vibration built on | |||||||
| 590.692 6 | (5/2)+ | ||||||
| 647.288 9 | 7/2+ | 485.69 4 576.398 12 647.272 17 | 2.2 4 100 8 43 5 | M1+E2 M1+E2 | 161.6505 70.8816 0.0 | 11/2+ 9/2+ 7/2+ | |
| 707.024 8 | 9/2+ | 183.920 12 436.98 10 545.54 2 636.11 7 | 0.9 4 7.8 19 75 5 100 26 | M1+E2 E2(+M1) | 523.0746 269.6554 161.6505 70.8816 | 11/2- 13/2+ 11/2+ 9/2+ | |
| 757.872 18 | (11/2+) | 488.22 2 596.15 6 | 63 8 100 22 | 269.6554 161.6505 | 13/2+ 11/2+ | ||
| 877 3 | (13/2+) | ||||||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 8 - Kπ=3/2[521] band. Includes large admixture of K-2 γ | |||||||
| 659.628 5 | 3/2- | ||||||
| 722.276 5 | 5/2- | 443.659 25 478.449 10 531.04 3 623.026 15 635.410 15 | 1.51 24 13.6 20 2.03 32 100 9 <183 | M1 M1(+E2) M1 | 278.5978 243.8170 191.2141 99.2409 86.9191 | 7/2- 7/2- 5/2- 5/2- 3/2- | |
| 807.066 11 | (7/2)- | 417.50 11 542.82 2 563.243 15 616.14 12 707.86 8 | <4.1 18.1 24 100 6 8.1 17 87 5 | (M1) (E2) M1+E2 | 389.5273 264.2544 243.8170 191.2141 99.2409 | 9/2- 9/2- 7/2- 5/2- 5/2- | |
| 919.784 10 | (9/2)- | 170.731 20 197.508 30 212.783 10 272.66 16 432.75 3 530.32 10 655.45 8 675.90 11 920.2 10 | 2.5 6 5.2 6 <8.4 17 6 26 3 38 10 100 12 46 6 | (M1) (M1) M1 | 748.978 722.276 707.024 647.288 486.9449 389.5273 264.2544 243.8170 0.0 | (9/2)- 5/2- 9/2+ 7/2+ (11/2-) 9/2- 9/2- 7/2- 7/2+ | |
| 1061.063 15 | (11/2-) | 254.01 4 312.082 15 574.10 8 781.77 25 796.36 25 | 6.0 11 <11 56 21 63 13 100 20 | 807.066 748.978 486.9449 278.5978 264.2544 | (7/2)- (9/2)- (11/2-) 7/2- 9/2- | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 9 - Kπ=3/2+ band. 7/2[633] γ vibration with some 3/2[651] | |||||||
| 719.944 6 | 3/2+ | ||||||
| 761.846 7 | (5/2)+ | 171.156 7 518.07 7 690.921 34 761.864 25 | 0.13 3 <1.8 93 5 100 13 | (E2) M1+E2 | 590.692 243.8170 70.8816 0.0 | (5/2)+ 7/2- 9/2+ 7/2+ | |
| 831.899 10 | (7/2)+ | 111.961 9 640.51 10 670.32 7 760.95 4 831.87 15 | 0.42 7 4.7 13 46 6 100 14 27 5 | E2 M1+E2 (M1) | 719.944 191.2141 161.6505 70.8816 0.0 | 3/2+ 5/2- 11/2+ 9/2+ 7/2+ | |
| 886.806 35 | 9/2+ | 725.07 7 815.95 4 | 100 5 65 3 | M1+E2 M1+E2 | 161.6505 70.8816 | 11/2+ 9/2+ | |
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 10 - Kπ=1/2- band. K-2 γ vibration built on 5/2[512], with | |||||||
| 813.333 9 | (1/2)- | ||||||
| 851.392 10 | 3/2- | 607.67 5 660.193 17 752.19 5 764.46 4 827.15 3 | 5.0 7 <78 15.3 19 32 4 100 14 | M1+E2 M1 | 243.8170 191.2141 99.2409 86.9191 24.2003 | 7/2- 5/2- 5/2- 3/2- 1/2- | |
| 911.638 10 | (5/2)- | 149.790 20 522.112 17 633.071 20 667.73 14 812.41 8 824.68 6 | 0.72 18 26 3 100 12 92 10 35 6 58 8 | M1 (M1) | 761.846 389.5273 278.5978 243.8170 99.2409 86.9191 | (5/2)+ 9/2- 7/2- 7/2- 5/2- 3/2- | |
| 996.64 4 | (7/2)- | 348.77 5 ? 805.47 25 ? 897.45 6 | 0.92 26 <8.3 100 14 | M1 | 647.8373 191.2141 99.2409 | 7/2- 5/2- 5/2- | |
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 11 - 1/2[510] band. Admixed with γ vibration, possibly the K-2 | |||||||
| 1319.824 12 | (1/2)- | ||||||
| 1350.153 12 | (3/2-) | 239.464 15 498.77 4 627.852 25 630.23 3 1263.08 20 1325.5 6 | <0.31 2.1 3 19.5 24 10.3 14 100 16 44 10 | (M1) (M1) | 1110.700 851.392 722.276 719.944 86.9191 24.2003 | 3/2-,5/2- 3/2- 5/2- 3/2+ 3/2- 1/2- | |
| 1395.392 11 | (5/2-) | 284.691 8 588.46 4 1131.29 17 1151.36 20 | 2.0 3 20 3 66 30 100 16 | 1110.700 807.066 264.2544 243.8170 | 3/2-,5/2- (7/2)- 9/2- 7/2- | ||
| 1464.97 4 | (7/2)- | 518.56 8 553.31 5 1200.9 10 1221.1 2 | 3.5 7 4.4 8 20 6 100 15 | M1(+E2) | 946.470 911.638 264.2544 243.8170 | (5/2)- 9/2- 7/2- | |
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 12 - 7/2[514] band. | |||||||
| 960.602 13 | 7/2- | ||||||
| 1078.343 18 | 9/2- | 814.02 20 ? 916.710 29 1007.465 32 1078.28 4 | 48.1 14 100.0 25 59.4 23 | E1(+M2) E1+M2 E1(+M2) | 264.2544 161.6505 70.8816 0.0 | 9/2- 11/2+ 9/2+ 7/2+ | |
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 13 - 7/2[503]? band. Tentative band assignment from 1980Ba07. | |||||||
| 1449.796 14 | 7/2- | ||||||
| 1554.881 22 | 9/2- | 1031.91 6 1165.21 11 1276.62 23 1290.59 3 1311.13 7 1363.83 9 1483.97 9 ? 1554.4 5 | 11.5 6 14.9 10 <16.7 100 5 5.7 10 6.1 8 17.6 12 <11.7 | M1+E2 M1 M1 M1+E2 M1 E2 [E1] | 523.0746 389.5273 278.5978 264.2544 243.8170 191.2141 70.8816 0.0 | 11/2- 9/2- 7/2- 9/2- 7/2- 5/2- 9/2+ 7/2+ | |
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) | I(γ) | M(γ) | Final Levels | |
| Band 14 - β vibration band. Built on 7/2[633] g.s.; band assignment | |||||||
| 1070.693 16 | 7/2+ | ||||||
| 1141.26 10 | (9/2)+ | 871.51 25 979.74 12 1140.78 25 | 38 13 100 15 78 45 | E2(+M1) | 269.6554 161.6505 0.0 | 13/2+ 11/2+ 7/2+ | |
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) (keV) | Multipolarity | Mixing Ratio | Conversion Coefficient | Additional Data |
| 24.2003 | 1/2- | 46 s 2 % IT = 100 | 24.20 2 | E3 | 2.58×105 | B(E3)(W.u.)=0.0124 6, α=2.58E5 4, α(L)=1.847E5 27, α(M)=5.80E4 9, α(N)=1.355E4 20, α(O)=1394 21, α(P)=0.681 10 | |
| 70.8816 | 9/2+ | 70.8814 9 | M1+E2 | -0.31 +15-26 | 9.4 | α=9.4 6, α(K)=7.1 9, α(L)=1.8 11, α(M)=0.42 29, α(N)=0.10 7, α(O)=0.013 7, α(P)=0.00043 6 | |
| 86.9191 | 3/2- | 62.7190 6 | M1+E2 | 0.58 3 | 14.97 | α=14.97 27, α(K)=8.34 21, α(L)=5.08 27, α(M)=1.23 7, α(N)=0.281 15, α(O)=0.0338 17, α(P)=0.000530 13 | |
| 99.2409 | 5/2- | 12.31 2 | M1+E2 | 0.028 +11-9 | 3.1×102 | α=3.1×102 5, α(L)=243 35, α(M)=56 9, α(N)=13.0 19, α(O)=1.79 22, α(P)=0.0825 12 | |
| 5/2- | 75.0404 8 | E2 | 10.05 | α=10.05 14, α(K)=1.620 23, α(L)=6.44 9, α(M)=1.591 22, α(N)=0.362 5, α(O)=0.0412 6, α(P)=8.18×10-5 11 | |||
| 161.6505 | 11/2+ | 90.7692 10 | M1+E2 | -0.28 2 | 4.48 | α=4.48 6, α(K)=3.55 6, α(L)=0.721 32, α(M)=0.166 8, α(N)=0.0386 18, α(O)=0.00521 20, α(P)=0.000216 4 | |
| 11/2+ | 161.6513 15 | E2 | 0.555 | α=0.555 8, α(K)=0.300 4, α(L)=0.1948 27, α(M)=0.0475 7, α(N)=0.01087 15, α(O)=0.001287 18, α(P)=1.337×10-5 19 | |||
| 191.2141 | 5/2- | 3.35 ns 15 | 91.9737 12 | M1(+E2) | -0.19 5 | 4.30 | B(E2)(W.u.)=0.36 +20-16, B(M1)(W.u.)=1.81E-4 10, α=4.30 6, α(K)=3.50 7, α(L)=0.62 4, α(M)=0.140 10, α(N)=0.0328 22, α(O)=0.00454 24, α(P)=0.000214 4 |
| 5/2- | 3.35 ns 15 | 104.2955 17 | M1(+E2) | -0.55 +65-20 | 2.93 | B(M1)(W.u.)=7.9×10-5 +38-21, α=2.93 7, α(K)=2.14 35, α(L)=0.61 22, α(M)=0.14 6, α(N)=0.033 13, α(O)=0.0043 13, α(P)=0.000127 25 | |
| 5/2- | 3.35 ns 15 | 167.0141 25 | [E2] | 0.495 | B(E2)(W.u.)=0.0184 25, α=0.495 7, α(K)=0.274 4, α(L)=0.1694 24, α(M)=0.0412 6, α(N)=0.00945 13, α(O)=0.001121 16, α(P)=1.230E-5 17 | ||
| 5/2- | 3.35 ns 15 | 191.2137 15 | E1+M2 | -0.017 16 | 0.0631 | B(E1)(W.u.)=7.21E-6 +35-32, B(M2)(W.u.)=0.3 +8-2, α=0.0631 25, α(K)=0.0527 19, α(L)=0.0081 4, α(M)=0.00181 10, α(N)=0.000419 23, α(O)=5.71E-5 33, α(P)=2.57E-6 16 | |
| 243.8170 | 7/2- | 144.5758 9 | M1+E2 | +0.52 +12-9 | 1.104 | α=1.104 32, α(K)=0.86 5, α(L)=0.186 13, α(M)=0.0430 35, α(N)=0.0100 8, α(O)=0.00133 8, α(P)=5.12×10-5 34 | |
| 7/2- | 156.8977 10 | E2 | 0.616 | α=0.616 9, α(K)=0.326 5, α(L)=0.2216 31, α(M)=0.0541 8, α(N)=0.01238 17, α(O)=0.001461 20, α(P)=1.443×10-5 20 | |||
| 264.2544 | 9/2- | 20.44 2 | M1 | 59.0 | α=59.0 8, α(L)=45.9 7, α(M)=10.30 15, α(N)=2.417 35, α(O)=0.345 5, α(P)=0.01826 26 | ||
| 9/2- | 165.0134 15 | E2 | 0.517 | α=0.517 7, α(K)=0.284 4, α(L)=0.1783 25, α(M)=0.0434 6, α(N)=0.00995 14, α(O)=0.001179 17, α(P)=1.268×10-5 18 | |||
| 269.6554 | 13/2+ | 108.0053 25 | M1+E2 | -0.29 4 | 2.68 | α=2.68 4, α(K)=2.15 4, α(L)=0.410 18, α(M)=0.094 5, α(N)=0.0219 10, α(O)=0.00299 11, α(P)=0.0001304 28 | |
| 13/2+ | 198.771 5 | [E2] | 0.274 | α=0.274 4, α(K)=0.1679 24, α(L)=0.0815 11, α(M)=0.01971 28, α(N)=0.00452 6, α(O)=0.000545 8, α(P)=7.84×10-6 11 | |||
| 278.5978 | 7/2- | 34.79 4 | M1+E2 | 0.022 AP | 12.36 | α12.36 AP, α(L)≈9.62, α(M)≈2.158, α(N)≈0.506, α(O)≈0.0720, α(P)≈0.00378 | |
| 7/2- | 87.3836 10 | M1+E2 | -0.23 2 | 5.00 | α=5.00 7, α(K)=4.01 6, α(L)=0.763 24, α(M)=0.175 6, α(N)=0.0407 14, α(O)=0.00556 15, α(P)=0.000245 4 | ||
| 7/2- | 207.713 3 | E1(+M2) | -0.09 +14-16 | 0.07 | α=0.07 11, α(K)=0.06 9, α(L)=0.009 19, α(M)=0.002 4, α(N)=5.E-4 11, α(O)=7.E-5 15, α(P)=3.E-6 7 | ||
| 7/2- | 278.595 5 | (E1) | 0.02391 | α=0.02391 33, α(K)=0.02009 28, α(L)=0.00298 4, α(M)=0.000663 9, α(N)=0.0001542 22, α(O)=2.130×10-5 30, α(P)=1.011E-6 14 | |||
| 389.5273 | 9/2- | 110.9291 10 | M1+E2 | -0.17 +4-3 | 2.499 | α=2.499 35, α(K)=2.061 32, α(L)=0.341 10, α(M)=0.0769 24, α(N)=0.0180 5, α(O)=0.00253 6, α(P)=0.0001255 21 | |
| 9/2- | 198.3136 17 | E2 | 0.276 | α=0.276 4, α(K)=0.1690 24, α(L)=0.0823 12, α(M)=0.01990 28, α(N)=0.00457 6, α(O)=0.000550 8, α(P)=7.88×10-6 11 | |||
| 9/2- | 227.878 3 | [E1] | 0.0396 | α=0.0396 6, α(K)=0.0332 5, α(L)=0.00500 7, α(M)=0.001114 16, α(N)=0.000259 4, α(O)=3.55×10-5 5, α(P)=1.637E-6 23 | |||
| 9/2- | 318.646 15 | (E1) | 0.01720 | α=0.01720 24, α(K)=0.01447 20, α(L)=0.002124 30, α(M)=0.000473 7, α(N)=0.0001101 15, α(O)=1.528×10-5 21, α(P)=7.37E-7 10 | |||
| 9/2- | 389.53 3 | (E1) | 0.01067 | α=0.01067 15, α(K)=0.00900 13, α(L)=0.001303 18, α(M)=0.000290 4, α(N)=6.75×10-5 9, α(O)=9.43E-6 13, α(P)=4.66E-7 7 | |||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) (keV) | Multipolarity | Mixing Ratio | Conversion Coefficient | Additional Data |
| 405.05 | 15/2+ | 135.3 5 | (M1+E2) | -0.32 8 | 1.389 | α=1.389 30, α(K)=1.13 4, α(L)=0.204 12, α(M)=0.0465 30, α(N)=0.0109 7, α(O)=0.00150 7, α(P)=6.79×10-5 26 | |
| 15/2+ | 243.4 3 | (E2) | 0.1415 | α=0.1415 21, α(K)=0.0945 14, α(L)=0.0361 5, α(M)=0.00865 13, α(N)=0.001990 30, α(O)=0.000244 4, α(P)=4.62×10-6 7 | |||
| 486.9449 | (11/2-) | 243.127 3 | (E2) | 0.1420 | α=0.1420 20, α(K)=0.0948 13, α(L)=0.0362 5, α(M)=0.00869 12, α(N)=0.001999 28, α(O)=0.0002455 34, α(P)=4.64×10-6 6 | ||
| 512.028 | (13/2)- | 247.766 15 | E2 | 0.1337 | α=0.1337 19, α(K)=0.0899 13, α(L)=0.0337 5, α(M)=0.00806 11, α(N)=0.001855 26, α(O)=0.0002283 32, α(P)=4.42×10-6 6 | ||
| 523.0746 | 11/2- | 133.542 4 | M1+E2 | -0.16 4 | 1.469 | α=1.469 21, α(K)=1.218 20, α(L)=0.195 4, α(M)=0.0439 11, α(N)=0.01029 25, α(O)=0.001454 29, α(P)=7.41×10-5 13 | |
| 11/2- | 244.474 5 | (E2) | 0.1395 | α=0.1395 20, α(K)=0.0934 13, α(L)=0.0355 5, α(M)=0.00850 12, α(N)=0.001955 27, α(O)=0.0002404 34, α(P)=4.57×10-6 6 | |||
| 547.12 | 17/2+ | 141.9 5 | (M1+E2) | -0.23 9 | 1.227 | α=1.227 26, α(K)=1.011 31, α(L)=0.168 8, α(M)=0.0379 22, α(N)=0.0089 5, α(O)=0.00125 5, α(P)=6.12×10-5 22 | |
| 17/2+ | 277.5 3 | (E2) | 0.0938 | α=0.0938 13, α(K)=0.0654 9, α(L)=0.02179 32, α(M)=0.00519 8, α(N)=0.001196 17, α(O)=0.0001491 22, α(P)=3.29×10-6 5 | |||
| 569.8316 | 5/2- | 291.233 3 | M1+E2 | -0.10 9 | 0.1696 | α=0.1696 33, α(K)=0.1421 29, α(L)=0.02141 31, α(M)=0.00479 7, α(N)=0.001125 16, α(O)=0.0001608 24, α(P)=8.58×10-6 19 | |
| 5/2- | 378.625 5 | M1+E2 | -0.41 +19-25 | 0.078 | α=0.078 8, α(K)=0.065 7, α(L)=0.0101 6, α(M)=0.00227 11, α(N)=0.000531 28, α(O)=7.5×10-5 5, α(P)=3.9E-6 4 | ||
| 5/2- | 482.890 15 | M1 | 0.0448 | α=0.0448 6, α(K)=0.0377 5, α(L)=0.00556 8, α(M)=0.001242 17, α(N)=0.000292 4, α(O)=4.18×10-5 6, α(P)=2.256E-6 32 | |||
| 5/2- | 569.80 3 | [E1] | 0.00457 | α=0.00457 6, α(K)=0.00387 5, α(L)=0.000547 8, α(M)=0.0001213 17, α(N)=2.83×10-5 4, α(O)=4.00E-6 6, α(P)=2.048E-7 29 | |||
| 590.692 | (5/2)+ | 519.788 15 | [E2] | 0.01617 | α=0.01617 23, α(K)=0.01278 18, α(L)=0.00263 4, α(M)=0.000606 8, α(N)=0.0001408 20, α(O)=1.875×10-5 26, α(P)=7.03E-7 10 | ||
| (5/2)+ | 590.695 14 | M1+E2 | +0.34 +8-7 | 0.0252 | α=0.0252 8, α(K)=0.0211 7, α(L)=0.00314 8, α(M)=0.000702 18, α(N)=0.000165 4, α(O)=2.36×10-5 6, α(P)=1.26E-6 4 | ||
| 647.288 | 7/2+ | 576.398 12 | M1+E2 | +0.09 4 | 0.0283 | α=0.0283 4, α(K)=0.02381 35, α(L)=0.00350 5, α(M)=0.000780 11, α(N)=0.0001833 27, α(O)=2.63×10-5 4, α(P)=1.420E-6 21 | |
| 7/2+ | 647.272 17 | M1+E2 | +0.5 +6-4 | 0.019 | α=0.019 4, α(K)=0.0158 35, α(L)=0.0024 4, α(M)=0.00053 9, α(N)=0.000124 21, α(O)=1.77×10-5 33, α(P)=9.3E-7 22 | ||
| 647.8373 | 7/2- | 258.311 3 | M1+E2 | +1.4 +19-6 | 0.157 | α=0.157 32, α(K)=0.120 32, α(L)=0.0290 5, α(M)=0.00678 11, α(N)=0.001572 22, α(O)=0.000205 8, α(P)=6.7×10-6 22 | |
| 7/2- | 369.234 6 | M1(+E2) | -0.02 5 | 0.0904 | α=0.0904 13, α(K)=0.0759 11, α(L)=0.01131 16, α(M)=0.00253 4, α(N)=0.000593 8, α(O)=8.50×10-5 12, α(P)=4.57E-6 7 | ||
| 7/2- | 403.957 25 | (M1) | 0.07137 | α=0.07137 99, α(K)=0.0599 8, α(L)=0.00891 12, α(M)=0.001989 28, α(N)=0.000467 7, α(O)=6.69×10-5 9, α(P)=3.60E-6 5 | |||
| 7/2- | 456.636 9 | M1+E2 | -0.24 +10-9 | 0.0502 | α=0.0502 15, α(K)=0.0421 13, α(L)=0.00630 14, α(M)=0.001409 31, α(N)=0.000331 7, α(O)=4.73×10-5 11, α(P)=2.52E-6 8 | ||
| 7/2- | 548.546 25 | M1+E2 | +0.53 +13-10 | 0.0283 | α=0.0283 16, α(K)=0.0237 14, α(L)=0.00361 16, α(M)=0.000808 33, α(N)=0.000190 8, α(O)=2.69×10-5 12, α(P)=1.40E-6 9 | ||
| 7/2- | 560.73 7 | (E2) | 0.01340 | α=0.01340 19, α(K)=0.01069 15, α(L)=0.002105 29, α(M)=0.000484 7, α(N)=0.0001126 16, α(O)=1.511×10-5 21, α(P)=5.91E-7 8 | |||
| 659.628 | 3/2- | 560.369 15 | (M1) | 0.0306 | α=0.0306 4, α(K)=0.0257 4, α(L)=0.00378 5, α(M)=0.000843 12, α(N)=0.0001979 28, α(O)=2.84×10-5 4, α(P)=1.535E-6 21 | ||
| 3/2- | 572.731 12 | M1+E2 | -0.7 +4-6 | 0.024 | α=0.024 5, α(K)=0.020 4, α(L)=0.0030 5, α(M)=0.00068 10, α(N)=0.000160 24, α(O)=2.3×10-5 4, α(P)=1.16E-6 27 | ||
| 3/2- | 635.410 15 | M1 | 0.02218 | α=0.02218 31, α(K)=0.01868 26, α(L)=0.00273 4, α(M)=0.000609 9, α(N)=0.0001431 20, α(O)=2.053×10-5 29, α(P)=1.112E-6 16 | |||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) (keV) | Multipolarity | Mixing Ratio | Conversion Coefficient | Additional Data |
| 677.107 | 13/2- | 154.020 10 | (M1+E2) | -0.29 +9-7 | 0.962 | α=0.962 19, α(K)=0.789 22, α(L)=0.135 5, α(M)=0.0305 13, α(N)=0.00714 28, α(O)=0.000994 29, α(P)=4.76×10-5 15 | |
| 13/2- | 287.585 7 | [E2] | 0.0840 | α=0.0840 12, α(K)=0.0593 8, α(L)=0.01906 27, α(M)=0.00454 6, α(N)=0.001045 15, α(O)=0.0001307 18, α(P)=3.00×10-6 4 | |||
| 707.024 | 9/2+ | 545.54 2 | M1+E2 | -0.12 7 | 0.0325 | α=0.0325 6, α(K)=0.0273 5, α(L)=0.00402 7, α(M)=0.000898 15, α(N)=0.0002108 35, α(O)=3.02×10-5 5, α(P)=1.630E-6 31 | |
| 9/2+ | 636.11 7 | E2(+M1) | 0.016 | α=0.016 6, α(K)=0.013 5, α(L)=0.0021 6, α(M)=4.7×10-4 13, α(N)=1.11E-4 32, α(O)=1.6E-5 5, α(P)=7.8E-7 33 | |||
| 719.944 | 3/2+ | 719.979 25 | E2 | 0.00747 | α=0.00747 10, α(K)=0.00610 9, α(L)=0.001070 15, α(M)=0.0002433 34, α(N)=5.67×10-5 8, α(O)=7.77E-6 11, α(P)=3.41E-7 5 | ||
| 722.276 | 5/2- | 478.449 10 | M1 | 0.0459 | α=0.0459 6, α(K)=0.0386 5, α(L)=0.00570 8, α(M)=0.001272 18, α(N)=0.000299 4, α(O)=4.28×10-5 6, α(P)=2.311E-6 32 | ||
| 5/2- | 623.026 15 | M1(+E2) | 0.017 | α=0.017 6, α(K)=0.014 6, α(L)=0.0022 7, α(M)=5.0×10-4 14, α(N)=1.17E-4 34, α(O)=1.6E-5 5, α(P)=8.2E-7 35 | |||
| 5/2- | 635.410 15 | M1 | 0.02218 | α=0.02218 31, α(K)=0.01868 26, α(L)=0.00273 4, α(M)=0.000609 9, α(N)=0.0001431 20, α(O)=2.053×10-5 29, α(P)=1.112E-6 16 | |||
| 736.23 | 19/2+ | 189.1 5 | M1+E2 | -0.32 8 | 0.535 | α=0.535 13, α(K)=0.440 14, α(L)=0.0733 18, α(M)=0.0166 5, α(N)=0.00388 10, α(O)=0.000543 11, α(P)=2.65×10-5 10 | |
| 19/2+ | 331.2 3 | E2 | 0.0551 | α=0.0551 8, α(K)=0.0403 6, α(L)=0.01140 16, α(M)=0.00269 4, α(N)=0.000622 9, α(O)=7.90×10-5 11, α(P)=2.095E-6 30 | |||
| 748.978 | (9/2)- | 359.489 27 | (M1+E2) | 1.5 +15-6 | 0.060 | α=0.060 13, α(K)=0.047 12, α(L)=0.0097 9, α(M)=0.00223 17, α(N)=0.00052 4, α(O)=6.9×10-5 8, α(P)=2.7E-6 8 | |
| (9/2)- | 470.557 17 | M1 | 0.0479 | α=0.0479 7, α(K)=0.0403 6, α(L)=0.00595 8, α(M)=0.001329 19, α(N)=0.000312 4, α(O)=4.47×10-5 6, α(P)=2.413E-6 34 | |||
| (9/2)- | 484.65 4 | (M1) | 0.0444 | α=0.0444 6, α(K)=0.0373 5, α(L)=0.00551 8, α(M)=0.001230 17, α(N)=0.000289 4, α(O)=4.14×10-5 6, α(P)=2.235E-6 31 | |||
| (9/2)- | 505.10 17 | M1 | 0.0399 | α=0.0399 6, α(K)=0.0335 5, α(L)=0.00495 7, α(M)=0.001104 15, α(N)=0.000259 4, α(O)=3.72×10-5 5, α(P)=2.007E-6 28 | |||
| 761.846 | (5/2)+ | 690.921 34 | (E2) | 0.00820 | α=0.00820 11, α(K)=0.00667 9, α(L)=0.001190 17, α(M)=0.000271 4, α(N)=6.32×10-5 9, α(O)=8.63E-6 12, α(P)=3.73E-7 5 | ||
| (5/2)+ | 761.864 25 | M1+E2 | 0.76 +28-25 | 0.0113 | α=0.0113 12, α(K)=0.0094 10, α(L)=0.00142 13, α(M)=0.000317 28, α(N)=7.4×10-5 7, α(O)=1.06E-5 10, α(P)=5.5E-7 6 | ||
| 807.066 | (7/2)- | 542.82 2 | (M1) | 0.0331 | α=0.0331 5, α(K)=0.0279 4, α(L)=0.00410 6, α(M)=0.000915 13, α(N)=0.0002149 30, α(O)=3.08×10-5 4, α(P)=1.666E-6 23 | ||
| (7/2)- | 563.243 15 | (E2) | 0.01326 | α=0.01326 19, α(K)=0.01058 15, α(L)=0.002079 29, α(M)=0.000478 7, α(N)=0.0001111 16, α(O)=1.492×10-5 21, α(P)=5.85E-7 8 | |||
| (7/2)- | 707.86 8 | M1+E2 | +0.30 13 | 0.0161 | α=0.0161 7, α(K)=0.0136 6, α(L)=0.00200 8, α(M)=0.000445 16, α(N)=0.000104 4, α(O)=1.50×10-5 6, α(P)=8.1E-7 4 | ||
| 807.7 | (15/2-) | 320.7 5 | [E2] | 0.0606 | α=0.0606 9, α(K)=0.0440 6, α(L)=0.01279 19, α(M)=0.00303 5, α(N)=0.000699 11, α(O)=8.84×10-5 13, α(P)=2.273E-6 33 | ||
| 813.333 | (1/2)- | 726.417 25 | M1(+E2) | 0.7 9 | 0.0130 | α=0.0130 33, α(K)=0.0109 29, α(L)=0.00165 35, α(M)=0.00037 8, α(N)=8.6×10-5 18, α(O)=1.23E-5 27, α(P)=6.4E-7 18 | |
| 831.899 | (7/2)+ | 670.32 7 | E2 | 0.00879 | α=0.00879 12, α(K)=0.00713 10, α(L)=0.001288 18, α(M)=0.000294 4, α(N)=6.85×10-5 10, α(O)=9.33E-6 13, α(P)=3.98E-7 6 | ||
| (7/2)+ | 760.95 4 | M1+E2 | 0.76 +29-25 | 0.0114 | α=0.0114 12, α(K)=0.0095 10, α(L)=0.00144 13, α(M)=0.000321 28, α(N)=7.5×10-5 7, α(O)=1.07E-5 10, α(P)=5.6E-7 6 | ||
| (7/2)+ | 831.87 15 | (M1) | 0.01128 | α=0.01128 16, α(K)=0.00951 13, α(L)=0.001379 19, α(M)=0.000307 4, α(N)=7.21×10-5 10, α(O)=1.036E-5 15, α(P)=5.64E-7 8 | |||
| 833.83 | (17/2-) | 321.8 3 | (E2) | 0.0600 | α=0.0600 9, α(K)=0.0436 6, α(L)=0.01263 18, α(M)=0.00299 4, α(N)=0.000690 10, α(O)=8.73×10-5 13, α(P)=2.254E-6 32 | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) (keV) | Multipolarity | Mixing Ratio | Conversion Coefficient | Additional Data |
| 851.392 | 3/2- | 660.193 17 | M1+E2 | 1.3 7 | 0.013 | α=0.013 4, α(K)=0.0109 35, α(L)=0.0018 4, α(M)=0.00040 9, α(N)=9.3×10-5 21, α(O)=1.30E-5 32, α(P)=6.3E-7 22 | |
| 3/2- | 827.15 3 | M1 | 0.01144 | α=0.01144 16, α(K)=0.00965 14, α(L)=0.001399 20, α(M)=0.000312 4, α(N)=7.32×10-5 10, α(O)=1.051E-5 15, α(P)=5.72E-7 8 | |||
| 851.48 | 15/2- | 174.5 5 | (M1+E2) | -0.6 +5-3 | 0.62 | α=0.62 7, α(K)=0.49 9, α(L)=0.102 13, α(M)=0.024 4, α(N)=0.0055 8, α(O)=0.00074 7, α(P)=2.9×10-5 6 | |
| 15/2- | 328.4 5 | (E2) | 0.0565 | α=0.0565 8, α(K)=0.0412 6, α(L)=0.01175 18, α(M)=0.00278 4, α(N)=0.000641 10, α(O)=8.13×10-5 12, α(P)=2.141E-6 31 | |||
| 886.806 | 9/2+ | 725.07 7 | M1+E2 | 1.06 +27-21 | 0.0114 | α=0.0114 10, α(K)=0.0095 8, α(L)=0.00147 10, α(M)=0.000331 22, α(N)=7.8×10-5 5, α(O)=1.09E-5 8, α(P)=5.5E-7 5 | |
| 9/2+ | 815.95 4 | M1+E2 | -0.80 +17-24 | 0.0094 | α=0.0094 8, α(K)=0.0079 7, α(L)=0.00119 9, α(M)=0.000266 19, α(N)=6.2×10-5 5, α(O)=8.9E-6 7, α(P)=4.6E-7 4 | ||
| 903.14 | 21/2+ | 166.8 5 | (M1+E2) | -0.14 8 | 0.784 | α=0.784 15, α(K)=0.653 15, α(L)=0.1017 25, α(M)=0.0228 6, α(N)=0.00536 14, α(O)=0.000761 16, α(P)=3.97×10-5 10 | |
| 21/2+ | 356.0 3 | (E2) | 0.0447 | α=0.0447 6, α(K)=0.0332 5, α(L)=0.00885 13, α(M)=0.002082 30, α(N)=0.000481 7, α(O)=6.16×10-5 9, α(P)=1.748E-6 25 | |||
| 911.638 | (5/2)- | 667.73 14 | M1 | 0.01957 | α=0.01957 27, α(K)=0.01648 23, α(L)=0.002407 34, α(M)=0.000536 8, α(N)=0.0001260 18, α(O)=1.809×10-5 25, α(P)=9.81E-7 14 | ||
| (5/2)- | 824.68 6 | (M1) | 0.01153 | α=0.01153 16, α(K)=0.00972 14, α(L)=0.001410 20, α(M)=0.000314 4, α(N)=7.37×10-5 10, α(O)=1.059E-5 15, α(P)=5.76E-7 8 | |||
| 919.784 | (9/2)- | 530.32 10 | (M1) | 0.0352 | α=0.0352 5, α(K)=0.0296 4, α(L)=0.00436 6, α(M)=0.000972 14, α(N)=0.0002283 32, α(O)=3.27×10-5 5, α(P)=1.769E-6 25 | ||
| (9/2)- | 655.45 8 | (M1) | 0.02051 | α=0.02051 29, α(K)=0.01727 24, α(L)=0.002524 35, α(M)=0.000563 8, α(N)=0.0001321 19, α(O)=1.896×10-5 27, α(P)=1.028E-6 14 | |||
| (9/2)- | 675.90 11 | M1 | 0.01898 | α=0.01898 27, α(K)=0.01598 22, α(L)=0.002334 33, α(M)=0.000520 7, α(N)=0.0001221 17, α(O)=1.753×10-5 25, α(P)=9.51E-7 13 | |||
| 929.113 | 11/2- | 657.9 3 | (E1) | 0.00338 | α=0.00338 5, α(K)=0.00287 4, α(L)=0.000402 6, α(M)=8.91×10-5 13, α(N)=2.083E-5 29, α(O)=2.95E-6 4, α(P)=1.528E-7 21 | ||
| 11/2- | 664.69 8 | [E2(+M1)] | 0.014 | α=0.014 5, α(K)=0.012 5, α(L)=0.0019 6, α(M)=4.2×10-4 12, α(N)=9.9E-5 29, α(O)=1.4E-5 4, α(P)=7.0E-7 29 | |||
| 11/2- | 767.55 4 | E1+M2 | -0.17 +12-10 | 0.0034 | α=0.0034 14, α(K)=0.0029 11, α(L)=4.2×10-4 19, α(M)=9.E-5 4, α(N)=2.2E-5 10, α(O)=3.1E-6 14, α(P)=1.7E-7 7 | ||
| 960.602 | 7/2- | 889.753 21 | E1 | 1.86×10-3 | α=1.86×10-3 3, α(K)=0.001584 22, α(L)=0.0002185 31, α(M)=4.83E-5 7, α(N)=1.130E-5 16, α(O)=1.608E-6 23, α(P)=8.52E-8 12 | ||
| 7/2- | 960.622 20 | E1 | 1.61×10-3 | α=1.61×10-3 2, α(K)=0.001372 19, α(L)=0.0001885 26, α(M)=4.17E-5 6, α(N)=9.75E-6 14, α(O)=1.389E-6 19, α(P)=7.39E-8 10 | |||
| 996.64 | (7/2)- | 897.45 6 | M1 | 0.00935 | α=0.00935 13, α(K)=0.00789 11, α(L)=0.001140 16, α(M)=0.000254 4, α(N)=5.96×10-5 8, α(O)=8.57E-6 12, α(P)=4.67E-7 7 | ||
| 1042.7 | (17/2-) | 365.5 5 | (E2) | 0.0415 | α=0.0415 6, α(K)=0.0310 4, α(L)=0.00808 12, α(M)=0.001899 28, α(N)=0.000439 6, α(O)=5.64×10-5 8, α(P)=1.637E-6 24 | ||
| 1070.693 | 7/2+ | 423.376 17 | M1 | 0.0631 | α=0.0631 9, α(K)=0.0530 7, α(L)=0.00786 11, α(M)=0.001756 25, α(N)=0.000412 6, α(O)=5.91×10-5 8, α(P)=3.18E-6 4 | ||
| 7/2+ | 480.06 4 | (M1) | 0.0455 | α=0.0455 6, α(K)=0.0382 5, α(L)=0.00565 8, α(M)=0.001261 18, α(N)=0.000296 4, α(O)=4.25×10-5 6, α(P)=2.291E-6 32 | |||
| 7/2+ | 999.96 7 | M1+E2 | +1.9 5 | 0.0045 | α=0.0045 4, α(K)=0.0037 4, α(L)=0.00057 5, α(M)=0.000128 10, α(N)=2.99×10-5 24, α(O)=4.2E-6 4, α(P)=2.13E-7 22 | ||
| 7/2+ | 1070.81 7 | E0+M1+E2 | 0.042 | α=0.042 3 | |||
| 1078.343 | 9/2- | 916.710 29 | E1(+M2) | -0.010 27 | 0.00176 | α=0.00176 4, α(K)=0.001499 30, α(L)=0.000207 5, α(M)=4.57×10-5 10, α(N)=1.068E-5 24, α(O)=1.520E-6 34, α(P)=8.07E-8 18 | |
| 9/2- | 1007.465 32 | E1+M2 | -0.08 5 | 0.00158 | α=0.00158 17, α(K)=0.00134 14, α(L)=0.000186 22, α(M)=4.1×10-5 5, α(N)=9.6E-6 12, α(O)=1.37E-6 17, α(P)=7.3E-8 9 | ||
| 9/2- | 1078.28 4 | E1(+M2) | -0.16 +6-8 | 0.0016 | α=0.0016 4, α(K)=0.00139 33, α(L)=2.0×10-4 5, α(M)=4.3E-5 12, α(N)=1.01E-5 27, α(O)=1.4E-6 4, α(P)=7.7E-8 21 | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) (keV) | Multipolarity | Mixing Ratio | Conversion Coefficient | Additional Data |
| 1141.26 | (9/2)+ | 979.74 12 | E2(+M1) | 0.0057 | α=0.0057 18, α(K)=0.0048 16, α(L)=7.1×10-4 20, α(M)=1.6E-4 4, α(N)=3.7E-5 11, α(O)=5.3E-6 16, α(P)=2.8E-7 10 | ||
| 1157.2 | 23/2+ | 253.3 5 | (M1+E2) | -0.33 9 | 0.237 | α=0.237 7, α(K)=0.196 7, α(L)=0.0313 5, α(M)=0.00706 11, α(N)=0.001654 25, α(O)=0.000233 4, α(P)=1.18×10-5 5 | |
| 23/2+ | 421.0 3 | (E2) | 0.0280 | α=0.0280 4, α(K)=0.02148 30, α(L)=0.00504 7, α(M)=0.001177 17, α(N)=0.000273 4, α(O)=3.56×10-5 5, α(P)=1.157E-6 16 | |||
| 1166.89 | (7/2,9/2)- | 247.2 3 | M1+E2 | 1.0 +26-8 | 0.20 | α=0.20 6, α(K)=0.16 6, α(L)=0.0338 5, α(M)=0.00782 31, α(N)=0.00182 6, α(O)=0.000241 11, α(P)=9.E-6 4 | |
| (7/2,9/2)- | 519.02 6 | (E2) | 0.01623 | α=0.01623 23, α(K)=0.01282 18, α(L)=0.00264 4, α(M)=0.000609 9, α(N)=0.0001414 20, α(O)=1.883×10-5 26, α(P)=7.06E-7 10 | |||
| 1176.658 | (7/2,9/2)+ | 1106.11 6 | M1(+E2) | 0.0043 | α=0.0043 13, α(K)=0.0036 11, α(L)=5.3×10-4 15, α(M)=1.19E-4 32, α(N)=2.8E-5 8, α(O)=4.0E-6 11, α(P)=2.1E-7 7 | ||
| 1198.8 | (19/2-) | 391.1 5 | (E2) | 0.0343 | α=0.0343 5, α(K)=0.0260 4, α(L)=0.00643 9, α(M)=0.001505 22, α(N)=0.000348 5, α(O)=4.51×10-5 7, α(P)=1.385E-6 20 | ||
| 1218.0 | (21/2-) | 384.2 2 | [E2] | 0.0360 | α=0.0360 5, α(K)=0.0272 4, α(L)=0.00682 10, α(M)=0.001599 23, α(N)=0.000370 5, α(O)=4.78×10-5 7, α(P)=1.447E-6 20 | ||
| 1270.736 | (1/2)- | 419.39 3 | M1 | 0.0647 | α=0.0647 9, α(K)=0.0543 8, α(L)=0.00806 11, α(M)=0.001801 25, α(N)=0.000423 6, α(O)=6.06×10-5 8, α(P)=3.26E-6 5 | ||
| (1/2)- | 1183.63 25 | M1 | 0.00475 | α=0.00475 7, α(K)=0.00401 6, α(L)=0.000574 8, α(M)=0.0001277 18, α(N)=3.00×10-5 4, α(O)=4.31E-6 6, α(P)=2.361E-7 33 | |||
| 1283.295 | (7/2,9/2)- | 1212.52 8 | E1(+M2) | -0.02 7 | 0.00109 | α=0.00109 8, α(K)=0.00090 6, α(L)=0.000123 10, α(M)=2.71×10-5 22, α(N)=6.3E-6 5, α(O)=9.1E-7 7, α(P)=4.9E-8 4 | |
| (7/2,9/2)- | 1283.28 4 | E1+M2 | -0.01 +6-5 | 1.01×10-3 | α=1.01×10-3 3, α(K)=0.000815 27, α(L)=0.000111 4, α(M)=2.44E-5 9, α(N)=5.71E-6 21, α(O)=8.17E-7 31, α(P)=4.41E-8 16 | ||
| 1319.824 | (1/2)- | 660.193 17 | M1+E2 | 0.015 | α=0.015 6, α(K)=0.012 5, α(L)=0.0019 6, α(M)=4.3×10-4 12, α(N)=1.01E-4 29, α(O)=1.4E-5 4, α(P)=7.1E-7 30 | ||
| (1/2)- | 1232.64 17 | M1 | 0.00431 | α=0.00431 6, α(K)=0.00363 5, α(L)=0.000520 7, α(M)=0.0001156 16, α(N)=2.72×10-5 4, α(O)=3.91E-6 5, α(P)=2.139E-7 30 | |||
| (1/2)- | 1295.6 4 | (M1) | 0.00384 | α=0.00384 5, α(K)=0.00322 5, α(L)=0.000460 6, α(M)=0.0001023 14, α(N)=2.404×10-5 34, α(O)=3.46E-6 5, α(P)=1.895E-7 27 | |||
| 1335.6 | (25/2)+ | 433.0 5 | (E2) | 0.0260 | α=0.0260 4, α(K)=0.02001 29, α(L)=0.00461 7, α(M)=0.001073 16, α(N)=0.000249 4, α(O)=3.25×10-5 5, α(P)=1.081E-6 15 | ||
| 1343.65 | (7/2)- | 432.27 7 | M1+E2 | 1.2 +45-7 | 0.040 | α=0.040 13, α(K)=0.032 12, α(L)=0.0058 11, α(M)=0.00132 23, α(N)=0.00031 5, α(O)=4.2×10-5 9, α(P)=1.9E-6 8 | |
| (7/2)- | 1065.09 5 | M1 | 0.00614 | α=0.00614 9, α(K)=0.00518 7, α(L)=0.000745 10, α(M)=0.0001657 23, α(N)=3.89×10-5 5, α(O)=5.60E-6 8, α(P)=3.06E-7 4 | |||
| (7/2)- | 1244.24 12 | M1 | 0.00422 | α=0.00422 6, α(K)=0.00355 5, α(L)=0.000508 7, α(M)=0.0001130 16, α(N)=2.65×10-5 4, α(O)=3.82E-6 5, α(P)=2.090E-7 29 | |||
| 1350.153 | (3/2-) | 1263.08 20 | (M1) | 0.00407 | α=0.00407 6, α(K)=0.00343 5, α(L)=0.000490 7, α(M)=0.0001089 15, α(N)=2.56×10-5 4, α(O)=3.68E-6 5, α(P)=2.015E-7 28 | ||
| (3/2-) | 1325.5 6 | (M1) | 0.00364 | α=0.00364 5, α(K)=0.00305 4, α(L)=0.000436 6, α(M)=9.68×10-5 14, α(N)=2.273E-5 32, α(O)=3.27E-6 5, α(P)=1.793E-7 25 | |||
| 1354.815 | (3/2-) | 443.182 9 | (M1) | 0.0560 | α=0.0560 8, α(K)=0.0471 7, α(L)=0.00697 10, α(M)=0.001556 22, α(N)=0.000365 5, α(O)=5.24×10-5 7, α(P)=2.82E-6 4 | ||
| (3/2-) | 1163.14 20 | (M1) | 0.00495 | α=0.00495 7, α(K)=0.00418 6, α(L)=0.000600 8, α(M)=0.0001333 19, α(N)=3.13×10-5 4, α(O)=4.50E-6 6, α(P)=2.464E-7 35 | |||
| 1398.711 | (3/2)- | 1207.5 3 | M1 | 0.00453 | α=0.00453 6, α(K)=0.00382 5, α(L)=0.000547 8, α(M)=0.0001216 17, α(N)=2.86×10-5 4, α(O)=4.11E-6 6, α(P)=2.249E-7 32 | ||
| (3/2)- | 1373.6 5 | (M1) | 0.00336 | α=0.00336 5, α(K)=0.00280 4, α(L)=0.000399 6, α(M)=8.87×10-5 12, α(N)=2.084E-5 29, α(O)=3.00E-6 4, α(P)=1.645E-7 23 | |||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) (keV) | Multipolarity | Mixing Ratio | Conversion Coefficient | Additional Data |
| 1406.341 | 9/2- | 1141.96 10 | M1 | 0.00518 | α=0.00518 7, α(K)=0.00437 6, α(L)=0.000627 9, α(M)=0.0001395 20, α(N)=3.28×10-5 5, α(O)=4.71E-6 7, α(P)=2.58E-7 4 | ||
| 9/2- | 1162.49 7 | M1 | 0.00496 | α=0.00496 7, α(K)=0.00419 6, α(L)=0.000600 8, α(M)=0.0001335 19, α(N)=3.14×10-5 4, α(O)=4.51E-6 6, α(P)=2.467E-7 35 | |||
| 9/2- | 1307.20 5 | E2 | 2.20×10-3 | α=2.20×10-3 3, α(K)=0.001830 26, α(L)=0.000272 4, α(M)=6.08E-5 9, α(N)=1.424E-5 20, α(O)=2.014E-6 28, α(P)=1.030E-7 14 | |||
| 9/2- | 1406.23 5 | E1+M2 | +0.38 +21-35 | 0.0018 | α=0.0018 8, α(K)=0.0014 7, α(L)=2.0×10-4 11, α(M)=4.4E-5 25, α(N)=1.0E-5 6, α(O)=1.5E-6 8, α(P)=8.E-8 4 | ||
| 1426.80 | (7/2,9/2)- | 466.93 21 | (E2) | 0.02128 | α=0.02128 30, α(K)=0.01658 23, α(L)=0.00363 5, α(M)=0.000843 12, α(N)=0.0001956 28, α(O)=2.58×10-5 4, α(P)=9.03E-7 13 | ||
| (7/2,9/2)- | 1162.49 7 | M1 | 0.00496 | α=0.00496 7, α(K)=0.00419 6, α(L)=0.000600 8, α(M)=0.0001335 19, α(N)=3.14×10-5 4, α(O)=4.51E-6 6, α(P)=2.467E-7 35 | |||
| 1444.74 | 7/2-,9/2- | 796.93 7 | E2 | 0.00597 | α=0.00597 8, α(K)=0.00491 7, α(L)=0.000829 12, α(M)=0.0001878 26, α(N)=4.38×10-5 6, α(O)=6.05E-6 8, α(P)=2.75E-7 4 | ||
| 7/2-,9/2- | 1180.45 6 | M1(+E2) | 0.0037 | α=0.0037 11, α(K)=0.0031 9, α(L)=4.6×10-4 12, α(M)=1.02E-4 27, α(N)=2.4E-5 6, α(O)=3.4E-6 9, α(P)=1.8E-7 6 | |||
| 1449.796 | 7/2- | 166.509 19 | M1+E2 | +0.5 3 | 0.73 | α=0.73 6, α(K)=0.59 7, α(L)=0.115 14, α(M)=0.026 4, α(N)=0.0062 8, α(O)=0.00083 7, α(P)=3.5×10-5 5 | |
| 7/2- | 489.25 6 | M1 | 0.0433 | α=0.0433 6, α(K)=0.0364 5, α(L)=0.00538 8, α(M)=0.001200 17, α(N)=0.000282 4, α(O)=4.04×10-5 6, α(P)=2.181E-6 31 | |||
| 7/2- | 617.682 25 | E1 | 0.00386 | α=0.00386 5, α(K)=0.00327 5, α(L)=0.000460 6, α(M)=0.0001019 14, α(N)=2.381×10-5 33, α(O)=3.36E-6 5, α(P)=1.735E-7 24 | |||
| 7/2- | 642.65 8 | (M1) | 0.02156 | α=0.02156 30, α(K)=0.01815 25, α(L)=0.00265 4, α(M)=0.000592 8, α(N)=0.0001390 19, α(O)=1.995×10-5 28, α(P)=1.081E-6 15 | |||
| 7/2- | 687.93 4 | (E1(+M2)) | +0.01 8 | 0.0031 | α=0.0031 4, α(K)=0.00262 31, α(L)=0.00037 5, α(M)=8.1×10-5 12, α(N)=1.90E-5 28, α(O)=2.7E-6 4, α(P)=1.40E-7 21 | ||
| 7/2- | 879.93 4 | M1+E2 | -0.9 4 | 0.0076 | α=0.0076 12, α(K)=0.0064 11, α(L)=0.00095 14, α(M)=0.000213 30, α(N)=5.0×10-5 7, α(O)=7.1E-6 10, α(P)=3.7E-7 7 | ||
| 7/2- | 1060.28 4 | M1+E2 | +0.036 22 | 0.00620 | α=0.00620 9, α(K)=0.00524 7, α(L)=0.000753 11, α(M)=0.0001675 23, α(N)=3.93×10-5 6, α(O)=5.66E-6 8, α(P)=3.09E-7 4 | ||
| 7/2- | 1171.20 4 | M1+E2 | +0.22 +74-15 | 0.0048 | α=0.0048 9, α(K)=0.0040 8, α(L)=0.00058 11, α(M)=0.000129 24, α(N)=3.0×10-5 6, α(O)=4.3E-6 8, α(P)=2.4E-7 5 | ||
| 7/2- | 1206.00 4 | M1+E2 | 0.83 GE | 0.0031 | α=0.0031 6, α(K)=0.0026 5, α(L)=0.00039 7, α(M)=8.7×10-5 15, α(N)=2.04E-5 35, α(O)=2.9E-6 5, α(P)=1.51E-7 31 | ||
| 7/2- | 1258.59 6 | M1 | 0.00411 | α=0.00411 6, α(K)=0.00346 5, α(L)=0.000494 7, α(M)=0.0001099 15, α(N)=2.58×10-5 4, α(O)=3.71E-6 5, α(P)=2.033E-7 28 | |||
| 7/2- | 1350.65 9 | M1+E2 | -0.19 +15-21 | 0.00344 | α=0.00344 15, α(K)=0.00287 13, α(L)=0.000410 18, α(M)=9.1×10-5 4, α(N)=2.14E-5 9, α(O)=3.08E-6 13, α(P)=1.69E-7 8 | ||
| 7/2- | 1379.04 4 | E1 | 9.54×10-4 | α=9.54×10-4 13, α(K)=0.000719 10, α(L)=9.72E-5 14, α(M)=2.144E-5 30, α(N)=5.02E-6 7, α(O)=7.18E-7 10, α(P)=3.89E-8 5 | |||
| 7/2- | 1449.74 4 | E1(+M2) | 0.00 4 | 9.32×10-4 | α=9.32×10-4 16, α(K)=0.000660 12, α(L)=8.91E-5 18, α(M)=1.96E-5 4, α(N)=4.60E-6 9, α(O)=6.59E-7 13, α(P)=3.58E-8 7 | ||
| 1463.384 | 7/2- | 1073.79 3 | M1+E2 | +0.18 7 | 0.00593 | α=0.00593 11, α(K)=0.00500 10, α(L)=0.000720 13, α(M)=0.0001602 29, α(N)=3.76×10-5 7, α(O)=5.41E-6 10, α(P)=2.95E-7 6 | |
| 7/2- | 1184.875 24 | M1+E2 | -0.15 7 | 0.00469 | α=0.00469 8, α(K)=0.00396 7, α(L)=0.000568 10, α(M)=0.0001263 22, α(N)=2.96×10-5 5, α(O)=4.26E-6 7, α(P)=2.33E-7 4 | ||
| 7/2- | 1199.10 6 | M1+E2 | +0.22 +25-19 | 0.00451 | α=0.00451 28, α(K)=0.00381 24, α(L)=0.000546 32, α(M)=0.000121 7, α(N)=2.85×10-5 17, α(O)=4.10E-6 25, α(P)=2.24E-7 15 | ||
| 7/2- | 1219.61 4 | M1+E2 | -1.0 +3-9 | 0.0035 | α=0.0035 5, α(K)=0.0029 5, α(L)=0.00042 6, α(M)=9.5×10-5 14, α(N)=2.22E-5 32, α(O)=3.2E-6 5, α(P)=1.69E-7 29 | ||
| 7/2- | 1463.39 4 | E1(+M2) | +0.02 +11-9 | 0.00093 | α=0.00093 9, α(K)=0.00065 8, α(L)=8.8×10-5 12, α(M)=1.94E-5 27, α(N)=4.5E-6 6, α(O)=6.5E-7 9, α(P)=3.5E-8 5 | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) (keV) | Multipolarity | Mixing Ratio | Conversion Coefficient | Additional Data |
| 1464.97 | (7/2)- | 1221.1 2 | M1(+E2) | 0.9 10 | 0.0036 | α=0.0036 9, α(K)=0.0030 7, α(L)=0.00043 10, α(M)=9.7×10-5 22, α(N)=2.3E-5 5, α(O)=3.2E-6 8, α(P)=1.7E-7 5 | |
| 1540.692 | 9/2- | 1017.58 5 | M1 | 0.00686 | α=0.00686 10, α(K)=0.00579 8, α(L)=0.000834 12, α(M)=0.0001856 26, α(N)=4.36×10-5 6, α(O)=6.26E-6 9, α(P)=3.42E-7 5 | ||
| 9/2- | 1151.70 7 | M1+E2 | 0.36 GE | 0.0038 | α=0.0038 10, α(K)=0.0032 9, α(L)=0.00047 11, α(M)=0.000105 25, α(N)=2.5×10-5 6, α(O)=3.5E-6 9, α(P)=1.8E-7 5 | ||
| 9/2- | 1276.62 23 | M1 | 0.00397 | α=0.00397 6, α(K)=0.00334 5, α(L)=0.000477 7, α(M)=0.0001061 15, α(N)=2.492×10-5 35, α(O)=3.59E-6 5, α(P)=1.964E-7 28 | |||
| 9/2- | 1296.90 5 | M1+E2 | 0.9 +8-5 | 0.0031 | α=0.0031 5, α(K)=0.0026 4, α(L)=0.00038 6, α(M)=8.4×10-5 13, α(N)=1.97E-5 30, α(O)=2.8E-6 4, α(P)=1.51E-7 26 | ||
| 1554.881 | 9/2- | 1031.91 6 | M1+E2 | -0.28 +19-29 | 0.0064 | α=0.0064 6, α(K)=0.0054 5, α(L)=0.00078 6, α(M)=0.000174 14, α(N)=4.08×10-5 32, α(O)=5.9E-6 5, α(P)=3.18E-7 29 | |
| 9/2- | 1165.21 11 | M1 | 0.00493 | α=0.00493 7, α(K)=0.00416 6, α(L)=0.000597 8, α(M)=0.0001328 19, α(N)=3.12×10-5 4, α(O)=4.48E-6 6, α(P)=2.453E-7 34 | |||
| 9/2- | 1276.62 23 | M1 | 0.00397 | α=0.00397 6, α(K)=0.00334 5, α(L)=0.000477 7, α(M)=0.0001061 15, α(N)=2.492×10-5 35, α(O)=3.59E-6 5, α(P)=1.964E-7 28 | |||
| 9/2- | 1290.59 3 | M1+E2 | 0.8 +5-4 | 0.0032 | α=0.0032 4, α(K)=0.00272 35, α(L)=0.00039 5, α(M)=8.7×10-5 10, α(N)=2.05E-5 24, α(O)=2.9E-6 4, α(P)=1.58E-7 22 | ||
| 9/2- | 1311.13 7 | M1 | 0.00373 | α=0.00373 5, α(K)=0.00313 4, α(L)=0.000447 6, α(M)=9.94×10-5 14, α(N)=2.335E-5 33, α(O)=3.36E-6 5, α(P)=1.841E-7 26 | |||
| 9/2- | 1363.83 9 | E2 | 2.04×10-3 | α=2.04×10-3 3, α(K)=0.001689 24, α(L)=0.0002496 35, α(M)=5.57E-5 8, α(N)=1.304E-5 18, α(O)=1.847E-6 26, α(P)=9.51E-8 13 | |||
| 9/2- | 1483.97 9 | [E1] | 9.25×10-4 | α=9.25×10-4 13, α(K)=0.000634 9, α(L)=8.55E-5 12, α(M)=1.886E-5 26, α(N)=4.42E-6 6, α(O)=6.33E-7 9, α(P)=3.44E-8 5 | |||
| 1565.62 | (7/2-) | 1301.33 5 | (M1) | 0.00380 | α=0.00380 5, α(K)=0.00319 4, α(L)=0.000456 6, α(M)=0.0001012 14, α(N)=2.378×10-5 33, α(O)=3.42E-6 5, α(P)=1.875E-7 26 | ||
| (7/2-) | 1374.53 8 | (M1) | 0.00335 | α=0.00335 5, α(K)=0.00280 4, α(L)=0.000399 6, α(M)=8.86×10-5 12, α(N)=2.081E-5 29, α(O)=2.99E-6 4, α(P)=1.642E-7 23 | |||
| 1650.6 | (23/2-) | 451.8 5 | (E2) | 0.02320 | α=0.02320 33, α(K)=0.01799 26, α(L)=0.00403 6, α(M)=0.000936 14, α(N)=0.0002171 31, α(O)=2.85×10-5 4, α(P)=9.77E-7 14 | ||
| 1655.5 | (25/2-) | 437.5 4 | (E2) | 0.0253 | α=0.0253 4, α(K)=0.01949 28, α(L)=0.00446 6, α(M)=0.001038 15, α(N)=0.0002406 34, α(O)=3.15×10-5 5, α(P)=1.055E-6 15 | ||
| 1656.51 | 5/2-,7/2-,9/2- | 1266.68 25 | E2 | 2.33×10-3 | α=2.33×10-3 3, α(K)=0.001944 27, α(L)=0.000291 4, α(M)=6.50E-5 9, α(N)=1.522E-5 21, α(O)=2.150E-6 30, α(P)=1.094E-7 15 | ||
| 5/2-,7/2-,9/2- | 1392.27 4 | E2 | 1.97×10-3 | α=1.97×10-3 3, α(K)=0.001624 23, α(L)=0.0002392 33, α(M)=5.34E-5 7, α(N)=1.249E-5 17, α(O)=1.771E-6 25, α(P)=9.14E-8 13 | |||
| 5/2-,7/2-,9/2- | 1412.39 10 | M1(+E2) | -0.08 18 | 0.00315 | α=0.00315 8, α(K)=0.00261 7, α(L)=0.000372 10, α(M)=8.27×10-5 21, α(N)=1.94E-5 5, α(O)=2.80E-6 7, α(P)=1.53E-7 4 | ||
| 1658.10 | 5/2+ | 587.44 6 | M1 | 0.0271 | α=0.0271 4, α(K)=0.02279 32, α(L)=0.00334 5, α(M)=0.000746 10, α(N)=0.0001751 25, α(O)=2.513×10-5 35, α(P)=1.360E-6 19 | ||
| 5/2+ | 1379.04 4 | E1 | 9.54×10-4 | α=9.54×10-4 13, α(K)=0.000719 10, α(L)=9.72E-5 14, α(M)=2.144E-5 30, α(N)=5.02E-6 7, α(O)=7.18E-7 10, α(P)=3.89E-8 5 | |||
| 5/2+ | 1466.84 4 | E1(+M2) | -0.03 4 | 9.34×10-4 | α=9.34×10-4 26, α(K)=0.000651 22, α(L)=8.79E-5 32, α(M)=1.94E-5 7, α(N)=4.54E-6 17, α(O)=6.51E-7 24, α(P)=3.53E-8 13 | ||
| 5/2+ | 1658.08 5 | M1+E2 | +0.28 11 | 0.00222 | α=0.00222 5, α(K)=0.00174 4, α(L)=0.000248 6, α(M)=5.50×10-5 14, α(N)=1.291E-5 32, α(O)=1.86E-6 5, α(P)=1.020E-7 27 | ||
| 1689.30 | (5/2,7/2)- | 1497.6 20 | M1+E2 | 0.24 6 | 0.00273 | α=0.00273 5, α(K)=0.00223 4, α(L)=0.000318 6, α(M)=7.06×10-5 12, α(N)=1.657E-5 29, α(O)=2.38E-6 4, α(P)=1.307E-7 24 | |
| 1689.334 | 7/2- | 728.73 6 | (M1) | 0.01570 | α=0.01570 22, α(K)=0.01323 19, α(L)=0.001927 27, α(M)=0.000429 6, α(N)=0.0001008 14, α(O)=1.448×10-5 20, α(P)=7.86E-7 11 | ||
| 7/2- | 1497.92 4 | M1+E2 | +0.24 6 | 0.00273 | α=0.00273 5, α(K)=0.00223 4, α(L)=0.000317 6, α(M)=7.05×10-5 12, α(N)=1.656E-5 29, α(O)=2.38E-6 4, α(P)=1.306E-7 24 | ||
| 7/2- | 1618.48 4 | E1(+M2) | +0.04 6 | 0.00093 | α=0.00093 4, α(K)=0.000554 32, α(L)=7.5×10-5 5, α(M)=1.65E-5 11, α(N)=3.86E-6 26, α(O)=5.5E-7 4, α(P)=3.01E-8 20 | ||
| 7/2- | 1689.35 5 | E1(+M2) | -0.03 7 | 0.00093 | α=0.00093 4, α(K)=0.000514 31, α(L)=6.9×10-5 5, α(M)=1.52E-5 11, α(N)=3.56E-6 25, α(O)=5.1E-7 4, α(P)=2.79E-8 19 | ||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) (keV) | Multipolarity | Mixing Ratio | Conversion Coefficient | Additional Data |
| 1694.44 | 5/2+ | 1607.51 6 | E1(+M2) | +0.04 18 | 0.00093 | α=0.00093 20, α(K)=5.6×10-4 17, α(L)=7.6E-5 26, α(M)=1.7E-5 6, α(N)=3.9E-6 14, α(O)=5.6E-7 20, α(P)=3.0E-8 11 | |
| 5/2+ | 1694.38 14 | (M1) | 2.19×10-3 | α=2.19×10-3 3, α(K)=0.001700 24, α(L)=0.0002409 34, α(M)=5.35E-5 7, α(N)=1.256E-5 18, α(O)=1.809E-6 25, α(P)=9.95E-8 14 | |||
| 1696.422 | 3/2- | 1505.9 10 | M1 | 0.00275 | α=0.00275 4, α(K)=0.002249 32, α(L)=0.000320 5, α(M)=7.10×10-5 10, α(N)=1.668E-5 24, α(O)=2.401E-6 34, α(P)=1.319E-7 19 | ||
| 1707.83 | (7/2,9/2)+ | 1636.82 8 | M1+E2 | 0.0019 | α=0.0019 4, α(K)=0.00152 32, α(L)=0.00022 4, α(M)=4.8×10-5 10, α(N)=1.13E-5 23, α(O)=1.62E-6 34, α(P)=8.8E-8 20 | ||
| (7/2,9/2)+ | 1707.97 9 | (M1+E2) | 0.00181 | α=0.00181 35, α(K)=0.00139 28, α(L)=0.00020 4, α(M)=4.4×10-5 9, α(N)=1.03E-5 20, α(O)=1.48E-6 30, α(P)=8.0E-8 18 | |||
| 1708.51 | 7/2- | 1318.53 12 | (M1) | 0.00368 | α=0.00368 5, α(K)=0.00309 4, α(L)=0.000441 6, α(M)=9.81×10-5 14, α(N)=2.303E-5 32, α(O)=3.31E-6 5, α(P)=1.816E-7 25 | ||
| 7/2- | 1429.87 9 | M1(+E2) | +0.02 +18-13 | 0.00307 | α=0.00307 6, α(K)=0.00254 5, α(L)=0.000362 7, α(M)=8.05×10-5 16, α(N)=1.89E-5 4, α(O)=2.72E-6 6, α(P)=1.493E-7 32 | ||
| 7/2- | 1517.31 4 | M1+E2 | -5.9 +7-9 | 1.75×10-3 | α=1.75×10-3 3, α(K)=0.001406 21, α(L)=0.0002042 30, α(M)=4.55E-5 7, α(N)=1.065E-5 16, α(O)=1.515E-6 22, α(P)=7.93E-8 12 | ||
| 1716.020 | 7/2+ | 1326.85 3 | E1 | 9.81×10-4 | α=9.81×10-4 14, α(K)=0.000768 11, α(L)=0.0001040 15, α(M)=2.296E-5 32, α(N)=5.38E-6 8, α(O)=7.69E-7 11, α(P)=4.16E-8 6 | ||
| 7/2+ | 1437.43 4 | E1(+M2) | -0.07 +9-8 | 0.00096 | α=0.00096 10, α(K)=0.00069 9, α(L)=9.4×10-5 14, α(M)=2.08E-5 30, α(N)=4.9E-6 7, α(O)=7.0E-7 10, α(P)=3.8E-8 6 | ||
| 7/2+ | 1524.77 5 | E1(+M2) | +0.03 4 | 9.26×10-4 | α=9.26×10-4 24, α(K)=0.000610 20, α(L)=8.22E-5 29, α(M)=1.81E-5 7, α(N)=4.25E-6 15, α(O)=6.09E-7 22, α(P)=3.31E-8 12 | ||
| 7/2+ | 1645.14 8 | M1+E2 | +0.34 +21-15 | 0.00223 | α=0.00223 10, α(K)=0.00176 8, α(L)=0.000250 12, α(M)=5.54×10-5 26, α(N)=1.30E-5 6, α(O)=1.87E-6 9, α(P)=1.03E-7 5 | ||
| 1781.756 | 7/2- | 703.33 10 | M1 | 0.01717 | α=0.01717 24, α(K)=0.01446 20, α(L)=0.002109 30, α(M)=0.000470 7, α(N)=0.0001103 15, α(O)=1.584×10-5 22, α(P)=8.60E-7 12 | ||
| 7/2- | 821.18 4 | M1(+E2) | +0.13 +31-13 | 0.0116 | α=0.0116 9, α(K)=0.0097 8, α(L)=0.00141 10, α(M)=0.000315 21, α(N)=7.4×10-5 5, α(O)=1.06E-5 8, α(P)=5.8E-7 5 | ||
| 7/2- | 1392.27 4 | E2 | 1.97×10-3 | α=1.97×10-3 3, α(K)=0.001624 23, α(L)=0.0002392 33, α(M)=5.34E-5 7, α(N)=1.249E-5 17, α(O)=1.771E-6 25, α(P)=9.14E-8 13 | |||
| 7/2- | 1502.89 6 | (M1) | 0.00276 | α=0.00276 4, α(K)=0.002259 32, α(L)=0.000321 4, α(M)=7.138×10-5 99, α(N)=1.676E-5 23, α(O)=2.413E-6 34, α(P)=1.325E-7 19 | |||
| 7/2- | 1590.35 5 | M1+E2 | +0.117 23 | 2.45×10-3 | α=2.45×10-3 4, α(K)=0.001966 28, α(L)=0.000279 4, α(M)=6.20E-5 9, α(N)=1.456E-5 21, α(O)=2.096E-6 30, α(P)=1.151E-7 16 | ||
| 7/2- | 1682.49 5 | M1+E2 | +0.53 +8-6 | 0.00206 | α=0.00206 5, α(K)=0.00160 4, α(L)=0.000227 5, α(M)=5.05×10-5 12, α(N)=1.185E-5 28, α(O)=1.70E-6 4, α(P)=9.31E-8 23 | ||
| 7/2- | 1781.75 5 | E1+M2 | +0.08 +6-5 | 0.00097 | α=0.00097 4, α(K)=0.00049 4, α(L)=6.6×10-5 6, α(M)=1.44E-5 13, α(N)=3.38E-6 30, α(O)=4.9E-7 4, α(P)=2.66E-8 24 | ||
| 1908.663 | 5/2+ | 1146.92 13 | (M1) | 0.00513 | α=0.00513 7, α(K)=0.00433 6, α(L)=0.000621 9, α(M)=0.0001380 19, α(N)=3.24×10-5 5, α(O)=4.66E-6 7, α(P)=2.55E-7 4 | ||
| 5/2+ | 1318.53 12 | (M1) | 0.00368 | α=0.00368 5, α(K)=0.00309 4, α(L)=0.000441 6, α(M)=9.81×10-5 14, α(N)=2.303E-5 32, α(O)=3.31E-6 5, α(P)=1.816E-7 25 | |||
| 5/2+ | 1338.82 4 | E1+M2 | -0.04 3 | 9.85×10-4 | α=9.85×10-4 28, α(K)=0.000766 23, α(L)=0.0001039 35, α(M)=2.29E-5 8, α(N)=5.37E-6 18, α(O)=7.68E-7 26, α(P)=4.16E-8 14 | ||
| 5/2+ | 1908.46 6 | (M1,E2) | 0.00156 | α=0.00156 26, α(K)=0.00110 19, α(L)=0.000155 27, α(M)=3.4×10-5 6, α(N)=8.1E-6 14, α(O)=1.16E-6 20, α(P)=6.3E-8 12 | |||
| 1954.53 | 5/2-,7/2- | 993.96 13 | (M1) | 0.00727 | α=0.00727 10, α(K)=0.00613 9, α(L)=0.000884 12, α(M)=0.0001967 28, α(N)=4.62×10-5 6, α(O)=6.64E-6 9, α(P)=3.62E-7 5 | ||
| 5/2-,7/2- | 1676.46 8 | M1 | 2.23×10-3 | α=2.23×10-3 3, α(K)=0.001743 24, α(L)=0.0002471 35, α(M)=5.49E-5 8, α(N)=1.289E-5 18, α(O)=1.855E-6 26, α(P)=1.020E-7 14 | |||
| 5/2-,7/2- | 1763.35 5 | M1(+E2) | 0.00173 | α=0.00173 32, α(K)=0.00130 25, α(L)=0.000184 35, α(M)=4.1×10-5 8, α(N)=9.6E-6 18, α(O)=1.38E-6 27, α(P)=7.5E-8 16 | |||
| E(level) (keV) | Jπ(level) | T1/2(level) | E(γ) (keV) | Multipolarity | Mixing Ratio | Conversion Coefficient | Additional Data |
| 1972.21 | 9/2- | 1043.20 8 | M1+E2 | -1.1 7 | 0.0048 | α=0.0048 13, α(K)=0.0040 11, α(L)=0.00060 14, α(M)=0.000133 31, α(N)=3.1×10-5 7, α(O)=4.4E-6 11, α(P)=2.3E-7 7 | |
| 9/2- | 1707.97 9 | (M1+E2) | 0.00181 | α=0.00181 35, α(K)=0.00139 28, α(L)=0.00020 4, α(M)=4.4×10-5 9, α(N)=1.03E-5 20, α(O)=1.48E-6 30, α(P)=8.0E-8 18 | |||
| 1974.132 | 7/2- | 1013.08 10 | (M1) | 0.00694 | α=0.00694 10, α(K)=0.00586 8, α(L)=0.000843 12, α(M)=0.0001876 26, α(N)=4.41×10-5 6, α(O)=6.33E-6 9, α(P)=3.46E-7 5 | ||
| 7/2- | 1251.74 25 | (E2) | 2.38×10-3 | α=2.38×10-3 3, α(K)=0.001988 28, α(L)=0.000298 4, α(M)=6.67E-5 9, α(N)=1.561E-5 22, α(O)=2.204E-6 31, α(P)=1.119E-7 16 | |||
| 7/2- | 1326.85 3 | E1 | 9.81×10-4 | α=9.81×10-4 14, α(K)=0.000768 11, α(L)=0.0001040 15, α(M)=2.296E-5 32, α(N)=5.38E-6 8, α(O)=7.69E-7 11, α(P)=4.16E-8 6 | |||
| 7/2- | 1903.04 5 | (E1(+M2)) | +0.08 15 | 0.00100 | α=0.00100 12, α(K)=4.4×10-4 11, α(L)=5.9E-5 16, α(M)=1.3E-5 4, α(N)=3.0E-6 9, α(O)=4.3E-7 12, α(P)=2.4E-8 7 | ||
| 7/2- | 1973.68 6 | (E1+M2) | -0.13 +9-8 | 0.00104 | α=0.00104 6, α(K)=0.00043 6, α(L)=5.9×10-5 9, α(M)=1.29E-5 20, α(N)=3.0E-6 5, α(O)=4.3E-7 7, α(P)=2.4E-8 4 | ||
| 2030.03 | 7/2- | 1109.99 7 | M1+E2 | -0.19 +24-37 | 0.0055 | α=0.0055 5, α(K)=0.0046 4, α(L)=0.00066 6, α(M)=0.000147 13, α(N)=3.46×10-5 31, α(O)=5.0E-6 5, α(P)=2.72E-7 28 | |
| 7/2- | 1959.24 9 | (E1(+M2)) | +0.03 4 | 1.00×10-3 | α=1.00×10-3 2, α(K)=0.000403 11, α(L)=5.39E-5 16, α(M)=1.187E-5 35, α(N)=2.78E-6 8, α(O)=3.99E-7 12, α(P)=2.19E-8 6 | ||
| 7/2- | 2030.00 6 | (E1(+M2)) | +0.03 5 | 1.03×10-3 | α=1.03×10-3 2, α(K)=0.000380 13, α(L)=5.08E-5 19, α(M)=1.12E-5 4, α(N)=2.62E-6 10, α(O)=3.77E-7 14, α(P)=2.07E-8 8 | ||
| 2065.04 | 7/2+ | 2065.03 11 | M1+E2+E0 | 0.0073 | α=0.0073 | ||
| 2101.03 | (5/2,7/2)- | 2014.06 9 | M1,E2 | 0.00148 | α=0.00148 22, α(K)=0.00098 16, α(L)=0.000138 22, α(M)=3.1×10-5 5, α(N)=7.2E-6 12, α(O)=1.03E-6 17, α(P)=5.6E-8 10 | ||
| 2140.2 | (29/2-) | 484.7 3 | (E2) | 0.01931 | α=0.01931 27, α(K)=0.01513 21, α(L)=0.00324 5, α(M)=0.000750 11, α(N)=0.0001741 25, α(O)=2.304×10-5 33, α(P)=8.27E-7 12 | ||
| 2287.22 | 7/2- | 1897.60 10 | M1 | 1.83×10-3 | α=1.83×10-3 3, α(K)=0.001301 18, α(L)=0.0001838 26, α(M)=4.08E-5 6, α(N)=9.58E-6 13, α(O)=1.380E-6 19, α(P)=7.60E-8 11 | ||
| 7/2- | 2095.90 7 | M1 | 1.63×10-3 | α=1.63×10-3 2, α(K)=0.001031 14, α(L)=0.0001452 20, α(M)=3.22E-5 5, α(N)=7.57E-6 11, α(O)=1.090E-6 15, α(P)=6.02E-8 8 | |||
| 2296.82 | 5/2-,7/2-,9/2- | 847.9 7 | M1 | 0.01076 | α=0.01076 15, α(K)=0.00907 13, α(L)=0.001315 19, α(M)=0.000293 4, α(N)=6.87×10-5 10, α(O)=9.88E-6 14, α(P)=5.37E-7 8 | ||
| 2668.0 | (33/2-) | 527.8 3 | (E2) | 0.01556 | α=0.01556 22, α(K)=0.01232 17, α(L)=0.002509 35, α(M)=0.000579 8, α(N)=0.0001345 19, α(O)=1.794×10-5 25, α(P)=6.79E-7 10 | ||
| 3238.6 | (37/2-) | 570.6 3 | (E2) | 0.01285 | α=0.01285 18, α(K)=0.01026 14, α(L)=0.002003 28, α(M)=0.000460 6, α(N)=0.0001070 15, α(O)=1.439×10-5 20, α(P)=5.68E-7 8 | ||
| 6048.3 | (53/2-) | 791.8 3 | (E2) | 0.00606 | α=0.00606 8, α(K)=0.00497 7, α(L)=0.000842 12, α(M)=0.0001909 27, α(N)=4.45×10-5 6, α(O)=6.14E-6 9, α(P)=2.79E-7 4 |
Additional Level Data and Comments:
| E(level) | Jπ(level) | T1/2(level) | Comments |
| 0.0 | 7/2+ | 32.016 d 8 % ε = 100 | Q=+3.54 6, μ=-0.633 8 δ<r2>(169Yb,176Yb)=0.372 fm2 12 (1994Ma57). E(level): δ<r2>(169Yb,176Yb)=0.372 fm2 12 (1994Ma57). 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. |
| 24.2003 | 1/2- | 46 s 2 % IT = 100 | μ=+0.506 8 %IT: ε decay unlikely (for ε decay to 1/2+ 169Tm g.s., %ε+%β+<0.05% is implied by log ft>5.9). E(level): %IT: ε decay unlikely (for ε decay to 1/2+ 169Tm g.s., %ε+%β+<0.05% is implied by log ft>5.9). From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. |
| 70.8816 | 9/2+ | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 86.9191 | 3/2- | E(level): 1/2[521], α=-1/2 band. | |
| 99.2409 | 5/2- | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 161.6505 | 11/2+ | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 191.2141 | 5/2- | 3.35 ns 15 | E(level): Poor fit; uncertainty multiplied by a factor in the fitting. 5/2[512] band. α=12.7, B=-9.5 (5/2, 7/2, 9/2, 11/2 levels). |
| 243.8170 | 7/2- | E(level): 1/2[521], α=-1/2 band. | |
| 264.2544 | 9/2- | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 269.6554 | 13/2+ | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 278.5978 | 7/2- | E(level): Poor fit; uncertainty multiplied by a factor in the fitting. 5/2[512] band. α=12.7, B=-9.5 (5/2, 7/2, 9/2, 11/2 levels). | |
| 389.5273 | 9/2- | E(level): Poor fit; uncertainty multiplied by a factor in the fitting. 5/2[512] band. α=12.7, B=-9.5 (5/2, 7/2, 9/2, 11/2 levels). | |
| 405.05 | 15/2+ | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 486.9449 | (11/2-) | E(level): 1/2[521], α=-1/2 band. | |
| 512.028 | (13/2)- | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 523.0746 | 11/2- | E(level): From 167Er(α,2nγ). 5/2[512] band. α=12.7, B=-9.5 (5/2, 7/2, 9/2, 11/2 levels). | |
| 547.12 | 17/2+ | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 569.8316 | 5/2- | E(level): 5/2[523] band. α=11.2 (5/2, 7/2, 9/2 levels). | |
| 590.692 | (5/2)+ | E(level): 5/2[642] band. Small admixture from β vibration built on. | |
| 647.288 | 7/2+ | E(level): 5/2[642] band. Small admixture from β vibration built on. | |
| 647.8373 | 7/2- | E(level): 5/2[523] band. α=11.2 (5/2, 7/2, 9/2 levels). | |
| 659.628 | 3/2- | E(level): From 168Yb(n,γ) E=thermal. Complex peak (broader than normal). Kπ=3/2[521] band. Includes large admixture of K-2 γ. | |
| 677.107 | 13/2- | E(level): From 167Er(α,2nγ). 5/2[512] band. α=12.7, B=-9.5 (5/2, 7/2, 9/2, 11/2 levels). | |
| 707.024 | 9/2+ | E(level): 5/2[642] band. Small admixture from β vibration built on. | |
| 719.944 | 3/2+ | E(level): From 168Yb(n,γ) E=thermal. Kπ=3/2+ band. 7/2[633] γ vibration with some 3/2[651]. | |
| E(level) | Jπ(level) | T1/2(level) | Comments |
| 722.276 | 5/2- | E(level): From 168Yb(n,γ) E=thermal. Complex peak (broader than normal). Kπ=3/2[521] band. Includes large admixture of K-2 γ. | |
| 736.23 | 19/2+ | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 748.978 | (9/2)- | E(level): 5/2[523] band. α=11.2 (5/2, 7/2, 9/2 levels). | |
| 757.872 | (11/2+) | E(level): 5/2[642] band. Small admixture from β vibration built on. | |
| 761.846 | (5/2)+ | E(level): From 168Yb(n,γ) E=thermal. Kπ=3/2+ band. 7/2[633] γ vibration with some 3/2[651]. | |
| 807.066 | (7/2)- | E(level): From 168Yb(n,γ) E=thermal. Complex peak (broader than normal). Kπ=3/2[521] band. Includes large admixture of K-2 γ. | |
| 807.7 | (15/2-) | E(level): 1/2[521], α=-1/2 band. | |
| 813.333 | (1/2)- | E(level): From 167Er(α,2nγ). Kπ=1/2- band. K-2 γ vibration built on 5/2[512], with. | |
| 831.899 | (7/2)+ | E(level): From 168Yb(n,γ) E=thermal. Kπ=3/2+ band. 7/2[633] γ vibration with some 3/2[651]. | |
| 833.83 | (17/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 851.392 | 3/2- | E(level): From 167Er(α,2nγ). Kπ=1/2- band. K-2 γ vibration built on 5/2[512], with. | |
| 851.48 | 15/2- | E(level): From 167Er(α,2nγ). 5/2[512] band. α=12.7, B=-9.5 (5/2, 7/2, 9/2, 11/2 levels). | |
| 865.155 | (11/2-) | XREF: F(871). E(level): From 167Er(α,2nγ). 5/2[523] band. α=11.2 (5/2, 7/2, 9/2 levels). Jπ(level): Based on comparison of relative populations of levels within a band in 168Yb(d,p) and 170Yb(d,t) with population pattern expected for different J values for specific Nilsson orbitals. | |
| 877 | (13/2+) | E(level): From 167Er(α,2nγ). 5/2[642] band. Small admixture from β vibration built on. Jπ(level): Based on comparison of relative populations of levels within a band in 168Yb(d,p) and 170Yb(d,t) with population pattern expected for different J values for specific Nilsson orbitals. | |
| 886.806 | 9/2+ | E(level): From 168Yb(n,γ) E=thermal. Kπ=3/2+ band. 7/2[633] γ vibration with some 3/2[651]. | |
| 903.14 | 21/2+ | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 911.638 | (5/2)- | E(level): From 167Er(α,2nγ). Kπ=1/2- band. K-2 γ vibration built on 5/2[512], with. | |
| 919.784 | (9/2)- | E(level): From 168Yb(n,γ) E=thermal. Complex peak (broader than normal). Kπ=3/2[521] band. Includes large admixture of K-2 γ. | |
| 960.602 | 7/2- | E(level): 7/2[514] band. | |
| 996.64 | (7/2)- | E(level): From 167Er(α,2nγ). Kπ=1/2- band. K-2 γ vibration built on 5/2[512], with. | |
| 1042.7 | (17/2-) | E(level): From 167Er(α,2nγ). 5/2[512] band. α=12.7, B=-9.5 (5/2, 7/2, 9/2, 11/2 levels). | |
| 1061.063 | (11/2-) | E(level): From 168Yb(n,γ) E=thermal. Complex peak (broader than normal). Kπ=3/2[521] band. Includes large admixture of K-2 γ. | |
| 1070.693 | 7/2+ | E(level): β vibration band. Built on 7/2[633] g.s.; band assignment. | |
| 1078.343 | 9/2- | E(level): 7/2[514] band. | |
| 1141.26 | (9/2)+ | E(level): β vibration band. Built on 7/2[633] g.s.; band assignment. | |
| E(level) | Jπ(level) | T1/2(level) | Comments |
| 1157.2 | 23/2+ | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 1198.8 | (19/2-) | E(level): 1/2[521], α=-1/2 band. | |
| 1218.0 | (21/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 1225.42 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 1250.5 | (19/2-) | E(level): From 167Er(α,2nγ). 5/2[512] band. α=12.7, B=-9.5 (5/2, 7/2, 9/2, 11/2 levels). | |
| 1319.824 | (1/2)- | E(level): Very Poor fit and omitted in the fitting. 1/2[510] band. Admixed with γ vibration, possibly the K-2. | |
| 1335.6 | (25/2)+ | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 1350.153 | (3/2-) | E(level): Very Poor fit and omitted in the fitting. 1/2[510] band. Admixed with γ vibration, possibly the K-2. | |
| 1395.392 | (5/2-) | E(level): 1/2[510] band. Admixed with γ vibration, possibly the K-2. Jπ(level): Based on comparison of relative populations of levels within a band in 168Yb(d,p) and 170Yb(d,t) with population pattern expected for different J values for specific Nilsson orbitals. | |
| 1449.796 | 7/2- | E(level): 7/2[503]? band. Tentative band assignment from 1980Ba07. | |
| 1464.97 | (7/2)- | XREF: F(1473). E(level): Very Poor fit and omitted in the fitting. 1/2[510] band. Admixed with γ vibration, possibly the K-2. | |
| 1524.158 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 1554.881 | 9/2- | E(level): 7/2[503]? band. Tentative band assignment from 1980Ba07. | |
| 1650.6 | (23/2-) | E(level): 1/2[521], α=-1/2 band. | |
| 1655.5 | (25/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 1666.1 | (27/2+) | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 1745.0 | (1/2-) | XREF: γ(1740). | |
| 1757.3 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 1781.242 | (3/2-,5/2-) | Level proposed in 1988DzZW. Differs from 1781 level known from ε decay because decay pattern differs. E(level): Level proposed in 1988DzZW. Differs from 1781 level known from ε decay because decay pattern differs. | |
| 1787.3 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 1837.5 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 1844.2 | (29/2+) | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 1857.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 1894.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 1910.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| E(level) | Jπ(level) | T1/2(level) | Comments |
| 1920.5 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 1939.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 1998.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2037.7 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2048.2 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2103.6 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2123.2 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2140.2 | (29/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 2192.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2217.5 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2234.5 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2244.5 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2258.1 | (31/2+) | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 2286.2 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2299.1 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2313.6 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2342.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2350.1 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2355.6 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2375.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2381.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2388.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2401.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2407.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2415.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| E(level) | Jπ(level) | T1/2(level) | Comments |
| 2425.7 | (33/2+) | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 2427.5 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2441.1 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2449.8 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2477.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2498.7 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2504.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2517.1 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2522.8 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2530.3 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2551.1 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2620.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2634.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2655.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2668.0 | (33/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 2679.7 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2684.8 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2705.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2741.8 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2774.5 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2781.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2801.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2827.2 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2856.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2869.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| E(level) | Jπ(level) | T1/2(level) | Comments |
| 2891.6 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2917.3 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2929.1 | (35/2+) | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 2932.8 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2952.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2988.6 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 2998.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3015.2 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3027.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3038.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3043.8 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3066.1 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3074.8 | (37/2+) | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 3094.5 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3105.6 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3118.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3130.3 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3142.6 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3173.8 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3238.6 | (37/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 3246.5 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3274.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3344.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3375.4 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3450.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| E(level) | Jπ(level) | T1/2(level) | Comments |
| 3526.7 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3559.9 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3588.1 | (39/2+) | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 3657.0 | 1/2,3/2,5/2+ | E(level): From 168Yb(n,γ) E=thermal. Jπ(level): Primary transition from 1/2+ in 168Yb(n,γ) E=thermal. | |
| 3781.8 | (41/2+) | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 3856.1 | (41/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 4330 | (43/2+) | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 4524.0 | (45/2+) | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 4526.9 | (45/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 5116 | (47/2+) | E(level): 7/2[633], α=-1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 5256.5 | (49/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 5272.1 | (49/2+) | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 6045.8 | (53/2+) | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 6048.3 | (53/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 6874.8 | (57/2+) | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 6903.6 | (57/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 7770.8 | (61/2+) | E(level): From 167Er(α,2nγ). 7/2[633], α=+1/2 band. α=7.9, B=9.5 (7/2, 11/2, 15/2, 19/2. | |
| 7823.3 | (61/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 8806.7 | (65/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 9854.2 | (69/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. | |
| 10961.2 | (73/2-) | E(level): From 168Yb(n,γ) E=thermal. 1/2[521], α=+1/2 band. α=11.5, a=+0.80 (1/2, 3/2, 5/2, 7/2,. |
| E(level) | E(gamma) | Comments |
| 70.8816 | 70.8814 | E(γ): From 168Yb(n,γ) E=thermal. |
| 86.9191 | 62.7190 | E(γ): From 168Yb(n,γ) E=thermal. |
| 99.2409 | 75.0404 | E(γ): From 168Yb(n,γ) E=thermal. |
| 161.6505 | 90.7692 | E(γ): From 168Yb(n,γ) E=thermal. | 161.6513 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 31.1 17 from 169Lu ε decay, 34 7 from (α,2nγ), and 23.9 32 from (n,γ) E=thermal |
| 191.2141 | 91.9737 | E(γ): From 168Yb(n,γ) E=thermal. | 104.2955 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 2.32 8 from 169Lu ε decay and 3.2 5 from (n,γ) E=thermal | 167.0141 | E(γ): From 168Yb(n,γ) E=thermal. | 191.2137 | E(γ): From 168Yb(n,γ) E=thermal. |
| 243.8170 | 144.5758 | E(γ): From 168Yb(n,γ) E=thermal. | 156.8977 | E(γ): From 168Yb(n,γ) E=thermal. |
| 264.2544 | 165.0134 | E(γ): From 168Yb(n,γ) E=thermal. |
| 269.6554 | 108.0053 | E(γ): From 168Yb(n,γ) E=thermal. | 198.771 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): from (n,γ) E=thermal. Others: 51 11 (ε decay), 139 from (α,2nγ). |
| 278.5978 | 14.22 | I(γ): <0.1 from I(γ+ce) limit and α(theory)=173 for M1, 3.06×104 for E2. | 34.79 | I(γ): from I(γ+ce) and α in ε decay. | 87.3836 | E(γ): From 168Yb(n,γ) E=thermal. | 179.356 | E(γ): From 168Yb(n,γ) E=thermal. | 207.713 | E(γ): From 168Yb(n,γ) E=thermal. | 278.595 | E(γ): From 168Yb(n,γ) E=thermal. |
| 389.5273 | 110.9291 | E(γ): From 168Yb(n,γ) E=thermal. | 198.3136 | E(γ): From 168Yb(n,γ) E=thermal. | 227.878 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 12.3 23 from 169Lu ε decay and 10.5 14 from (n,γ) E=thermal | 318.646 | E(γ): From 168Yb(n,γ) E=thermal. | 389.53 | E(γ): From 168Yb(n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 405.05 | 135.3 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). M(γ): D+Q from (48Ca,3nγ), (M1+E2) from Δπ=no.. From 167Er(α,2nγ). | 243.4 | E(γ): weighted average of 243.4 3 from (48Ca,3nγ) and 243.0 5 from (α,2nγ) I(γ): From 167Er(α,2nγ). M(γ): Q from (48Ca,3nγ), (E2) from Δπ=no. |
| 486.9449 | 208.336 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 222.694 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 15 8 from 169Lu ε decay, 17.5 35 from (α,2nγ), and 19.0 26 from (n,γ) E=thermal | 243.127 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From 167Er(α,2nγ). |
| 512.028 | 247.766 | M(γ): From 167Er(α,2nγ). |
| 523.0746 | 133.542 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average from (α,2nγ), ε decay and (n,γ) E=thermal. | 244.474 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 97 18 from 169Lu ε decay, 78 16 from (α,2nγ), and 79 10 from (n,γ) E=thermal |
| 547.12 | 141.9 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). | 277.5 | E(γ): weighted average of 277.6 3 from (48Ca,3nγ) and 277.1 5 from (α,2nγ) I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). |
| 569.8316 | 291.233 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 21.1 8 from 169Lu ε decay and 20.3 26 from (n,γ) E=thermal | 325.987 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 378.625 | E(γ): weighted average of 378.632 11 from 169Lu ε decay and 378.624 5 from (n,γ) E=thermal | 470.557 | E(γ): Multiply placed with intensity suitably divided. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with intensity suitably divided | 482.890 | E(γ): weighted average of 482.84 4 from 169Lu ε decay and 482.894 12 from (n,γ) E=thermal I(γ): weighted average of 6.99 33 from 169Lu ε decay and 8.5 11 from (n,γ) E=thermal | 569.80 | E(γ): weighted average of 569.79 4 from 169Lu ε decay and 569.81 3 from (n,γ) E=thermal I(γ): weighted average of 6.88 33 from 169Lu ε decay and 8.9 13 from (n,γ) E=thermal |
| 590.692 | 312.082 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 503.88 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 519.788 | E(γ): Multiply placed with intensity suitably divided. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with intensity suitably divided. From (n,γ) E=thermal. | 590.695 | E(γ): weighted average of 590.664 28 from 169Lu ε decay and 590.701 12 from (n,γ) E=thermal |
| 647.288 | 485.69 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 576.398 | E(γ): weighted average of 576.42 4 from 169Lu ε decay and 576.396 12 from (n,γ) E=thermal | 647.272 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 40.9 30 from 169Lu ε decay and 54 7 from (n,γ) E=thermal |
| 647.8373 | 258.311 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 40.5 17 from 169Lu ε decay and 39 5 from (n,γ) E=thermal | 369.234 | E(γ): weighted average of 369.251 15 from 169Lu ε decay and 369.232 5 from (n,γ) E=thermal | 383.595 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 8.9 14 from 169Lu ε decay and 10.0 13 from (n,γ) E=thermal | 403.957 | E(γ): From 168Yb(n,γ) E=thermal. | 456.636 | E(γ): weighted average of 456.621 27 from 169Lu ε decay and 456.638 9 from (n,γ) E=thermal | 548.546 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 40.8 23 from 169Lu ε decay and 53 7 from (n,γ) E=thermal | 560.73 | E(γ): for doublet dominated by this transition. I(γ): divided intensity from ε decay (34.06 h). |
| E(level) | E(gamma) | Comments |
| 659.628 | 89.809 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 468.434 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 560.369 | E(γ): From 168Yb(n,γ) E=thermal.. From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): α(K)exp in (n,γ) E=thermal exceeds α(K)(M1).. From 168Yb(n,γ) E=thermal. | 572.731 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 635.410 | E(γ): Multiply placed. From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 677.107 | 154.020 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): weighted average of 53 11 from (α,2nγ) and 31 17 from (n,γ) E=thermal M(γ): From 167Er(α,2nγ). | 287.585 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 167Er(α,2nγ). |
| 707.024 | 183.920 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 436.98 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 545.54 | E(γ): From 168Yb(n,γ) E=thermal.. Complex peak (broader than normal). I(γ): Weighted average from ε decay and (n,γ) E=thermal. | 636.11 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 719.944 | 129.221 | E(γ): From 168Yb(n,γ) E=thermal. | 528.672 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 695.53 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 719.979 | E(γ): From 168Yb(n,γ) E=thermal. |
| 722.276 | 443.659 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 478.449 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 531.04 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 623.026 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 635.410 | E(γ): Multiply placed. From 168Yb(n,γ) E=thermal. |
| 736.23 | 189.1 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). | 331.2 | E(γ): weighted average of 331.3 3 from (48Ca,3nγ) and 330.9 5 from (α,2nγ) I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). |
| 748.978 | 179.116 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 225.901 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): from ε decay. I(471γ):I(225γ)=100 43:11.6 11 in (n,γ) E=thermal. | 262.164 | E(γ): very poor fit and omitted in the fitting; level-energy difference=262.033. From 168Yb(n,γ) E=thermal.. Very Poor fit and omitted in the fitting I(γ): From (n,γ) E=thermal. | 359.489 | E(γ): weighted average of 359.38 7 from 169Lu ε decay and 359.495 17 from (n,γ) E=thermal | 470.557 | E(γ): very poor fit and omitted in the fitting; level-energy difference=470.379. Multiply placed with intensity suitably divided. From 168Yb(n,γ) E=thermal.. Very Poor fit and omitted in the fitting I(γ): Multiply placed with intensity suitably divided | 484.65 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=484.722. Poor fit; uncertainty multiplied by a factor in the fitting | 587.29 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 649.72 | E(γ): not observed in (n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 757.872 | 488.22 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 596.15 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 761.846 | 171.156 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 518.07 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 690.921 | E(γ): weighted average of 690.87 3 from 169Lu ε decay and 690.943 20 from (n,γ) E=thermal. From 168Yb(n,γ) E=thermal. | 761.864 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 807.066 | 417.50 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 542.82 | E(γ): From 168Yb(n,γ) E=thermal. | 563.243 | E(γ): From 168Yb(n,γ) E=thermal. | 616.14 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 707.86 | E(γ): unweighted average of 707.94 6 from 169Lu ε decay and 707.78 3 from (n,γ) E=thermal I(γ): other: 168 21 from (n,γ) E=thermal. Source of discrepancy unknown. |
| 807.7 | 320.7 | E(γ): From 167Er(α,2nγ). |
| 813.333 | 153.732 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 622.092 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 726.417 | I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. |
| 831.899 | 111.961 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 640.51 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 670.32 | E(γ): unweighted average of 670.39 3 from 169Lu ε decay and 670.25 3 from (n,γ) E=thermal I(γ): From (n,γ) E=thermal. | 760.95 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 831.87 | E(γ): unweighted average of 832.01 9 from 169Lu ε decay and 831.72 7 from (n,γ) E=thermal I(γ): From (n,γ) E=thermal. |
| 833.83 | 321.8 | E(γ): From 124Sn(48Ca,3nγ). |
| 851.392 | 607.67 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 660.193 | E(γ): Multiply placed I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 752.19 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 764.46 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 827.15 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 851.48 | 174.5 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). | 328.4 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). |
| 865.155 | 217.321 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 342.32 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=342.080. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): From (n,γ) E=thermal. | 353.04 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 903.14 | 166.8 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). | 356.0 | E(γ): weighted average of 356.2 3 from (48Ca,3nγ) and 355.6 5 from (α,2nγ) I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). |
| 911.638 | 149.790 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 522.112 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 633.071 | E(γ): From 168Yb(n,γ) E=thermal. | 667.73 | E(γ): unweighted average of 667.59 7 from 169Lu ε decay and 667.872 25 from (n,γ) E=thermal I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 812.41 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 824.68 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 919.784 | 170.731 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 197.508 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 212.783 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 272.66 | E(γ): Multiply placed with intensity suitably divided I(γ): Multiply placed with intensity suitably divided | 432.75 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=432.838. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): From (n,γ) E=thermal. | 530.32 | E(γ): weighted average of 529.7 5 from 169Lu ε decay and 530.34 8 from (n,γ) E=thermal I(γ): weighted average of 29 15 from 169Lu ε decay and 44 13 from (n,γ) E=thermal | 655.45 | E(γ): weighted average of 655.61 13 from 169Lu ε decay and 655.41 6 from (n,γ) E=thermal | 920.2 | E(γ): From 168Yb(n,γ) E=thermal. |
| 929.113 | 406.03 | E(γ): Multiply placed | 657.9 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=659.456. Poor fit; uncertainty multiplied by a factor in the fitting | 664.69 | E(γ): Multiply placed with undivided intensity I(γ): Multiply placed with undivided intensity M(γ): E2(+M1) for doubly-placed γ in ε decay. |
| 946.470 | 239.464 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 423.376 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 784.88 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 996.64 | 348.77 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 805.47 | E(γ): Multiply placed. From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 897.45 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. |
| 1033.892 | 272.053 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 311.619 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 313.940 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 374.266 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 934.87 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 947.37 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=946.970. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): From (n,γ) E=thermal. | 1009.64 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1042.7 | 191.0 | E(γ): for multiply-placed γ.. From 167Er(α,2nγ). | 365.5 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). |
| 1061.063 | 254.01 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 312.082 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 574.10 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 781.77 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=782.463. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): From (n,γ) E=thermal. | 796.36 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1064.719 | 357.686 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 417.50 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 474.28 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=474.026. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): From (n,γ) E=thermal. | 1064.7 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| 1070.693 | 423.376 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity | 480.06 | E(γ): weighted average of 480.00 8 from 169Lu ε decay and 480.08 4 from (n,γ) E=thermal | 908.64 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=909.040. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1078.343 | 814.02 | E(γ): From 168Yb(n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 1110.700 | 297.40 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 390.748 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 451.15 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1023.72 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1086.35 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1141.26 | 871.51 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 979.74 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1140.78 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1157.2 | 253.3 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). | 421.0 | E(γ): weighted average of 421.3 3 from (48Ca,3nγ) and 420.2 5 from (α,2nγ) I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). |
| 1159.88 | 512.03 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 590.04 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 968.77 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1088.9 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1166.89 | 903.42 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=902.63. Poor fit; uncertainty multiplied by a factor in the fitting | 1068.54 | E(γ): very poor fit and omitted in the fitting; level-energy difference=1067.64. Very Poor fit and omitted in the fitting |
| 1176.658 | 230.193 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 418.76 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 469.50 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=469.634. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): From (n,γ) E=thermal. | 585.983 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1015.4 | E(γ): seen only in ce spectrum in ε decay. | 1106.11 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=1105.773. 1105.5 3 for doublet in (n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): From (n,γ) E=thermal. | 1177.1 | E(γ): 1177.7 4 for doublet in ε decay.. From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1198.8 | 391.1 | E(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). |
| 1202.209 | 137.487 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 350.99 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 554.44 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 611.626 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=611.516. Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 632.38 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1115.1 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1131.29 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 1218.0 | 384.2 | E(γ): weighted average of 384.7 6 from (48Ca,3nγ) and 383.9 5 from (α,2nγ) I(γ): From 167Er(α,2nγ). |
| 1225.42 | 634.73 | E(γ): Multiply placed with undivided intensity I(γ): Multiply placed with undivided intensity |
| 1232.243 | 418.76 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=418.910. Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 509.88 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1250.5 | 207.4 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). | 399.4 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). |
| 1261.713 | 454.65 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 539.10 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 602.08 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 614.5 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1018.0 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| 1270.736 | 160.035 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 419.39 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 457.43 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1183.63 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 1246.5 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1285.120 | 174.420 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 453.34 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 565.13 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1284.7 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1296.655 | 185.941 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 262.753 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 445.17 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1018.0 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1105.5 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1197.8 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1209.8 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 1311.787 | 135.130 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 504.64 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 549.90 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 591.78 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1033.72 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1067.64 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1319.824 | 468.434 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 660.193 | E(γ): Multiply placed. From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 1232.64 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 1295.6 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. |
| 1335.6 | 177.9 | E(γ): From 167Er(α,2nγ). I(γ): From 167Er(α,2nγ). | 433.0 | E(γ): weighted average of 433.3 3 from (48Ca,3nγ) and 432.3 5 from (α,2nγ) I(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). |
| 1343.65 | 432.27 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=432.01. Poor fit; uncertainty multiplied by a factor in the fitting | 1272.46 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=1272.76. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1350.153 | 239.464 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 498.77 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 627.852 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 630.23 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1263.08 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 1325.5 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. |
| 1354.815 | 443.182 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 632.38 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 634.73 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1163.14 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. |
| 1395.392 | 284.691 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 588.46 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=588.326. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): From (n,γ) E=thermal. | 1131.29 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1151.36 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 1398.711 | 113.569 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 547.45 | E(γ): From 168Yb(n,γ) E=thermal. | 678.67 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 739.02 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1207.5 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 1373.6 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. |
| 1406.341 | 1162.49 | E(γ): Multiply placed |
| 1420.48 | 1176.48 | I(γ): undivided Iγ for doublet. | 1321.53 | E(γ): Multiply placed |
| 1426.80 | 466.93 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=466.19. Poor fit; uncertainty multiplied by a factor in the fitting | 664.69 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=664.95. Multiply placed with undivided intensity. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): Multiply placed with undivided intensity M(γ): E2(+M1) for doubly-placed γ in ε decay. | 939.7 | E(γ): Multiply placed | 1162.49 | E(γ): Multiply placed |
| 1449.796 | 187.817 | E(γ): very poor fit and omitted in the fitting; level-energy difference=188.084. From 168Yb(n,γ) E=thermal.. Very Poor fit and omitted in the fitting I(γ): From (n,γ) E=thermal. | 617.682 | E(γ): very poor fit and omitted in the fitting; level-energy difference=617.896. Very Poor fit and omitted in the fitting | 802.34 | E(γ): very poor fit and omitted in the fitting; level-energy difference=801.957. Very Poor fit and omitted in the fitting | 926.49 | E(γ): From 168Yb(n,γ) E=thermal. | 1379.04 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=1378.909. Multiply placed. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1463.019 | 177.94 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 401.87 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 597.83 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 611.626 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1218.7 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1463.384 | 939.7 | E(γ): Multiply placed | 1184.875 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1184.782. Poor fit; uncertainty multiplied by a factor in the fitting |
| E(level) | E(gamma) | Comments |
| 1464.97 | 518.56 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 553.31 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1200.9 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1221.1 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. |
| 1478.510 | 79.793 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 444.69 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 518.07 | E(γ): Multiply placed with undivided intensity I(γ): Multiply placed with undivided intensity | 756.30 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 758.89 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 908.8 | E(γ): for doubly-placed γ.. From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1391.8 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| 1524.158 | 174.017 | E(γ): From 168Yb(n,γ) E=thermal. | 459.25 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=459.439. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1531.562 | 181.27 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 234.904 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 497.68 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 571.36 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1432.5 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1445.2 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| 1540.692 | 1151.70 | E(γ): very poor fit and omitted in the fitting; level-energy difference=1151.160. Very Poor fit and omitted in the fitting | 1276.62 | E(γ): Multiply placed |
| 1554.862 | 204.705 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 703.38 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 741.54 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 792.97 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 834.94 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1467.3 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1530.5 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 1554.881 | 1276.62 | E(γ): Multiply placed | 1554.4 | E(γ): Multiply placed |
| 1565.62 | 1321.53 | E(γ): Multiply placed |
| 1585.873 | 187.159 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 315.151 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 674.29 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1616.669 | 304.880 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 320.013 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 506.06 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=505.969. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): From (n,γ) E=thermal. | 705.07 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1518.5 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1529.87 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1529.743. Multiply placed with undivided intensity. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| 1618.738 | 416.528 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 767.29 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 805.47 | E(γ): Multiply placed. From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1594.5 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| 1650.6 | 451.8 | E(γ): From 167Er(α,2nγ). M(γ): From 167Er(α,2nγ). |
| 1655.5 | 437.5 | E(γ): weighted average of 437.9 6 from (48Ca,3nγ) and 437.2 5 from (α,2nγ) I(γ): From 167Er(α,2nγ). M(γ): Q from (α,2nγ) for intraband γ, (E2) from Δπ=no. |
| 1656.51 | 1392.27 | E(γ): Multiply placed | 1412.39 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1412.68. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1658.10 | 1379.04 | E(γ): very poor fit and omitted in the fitting; level-energy difference=1379.49. Multiply placed. Very Poor fit and omitted in the fitting | 1466.84 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1466.87. Poor fit; uncertainty multiplied by a factor in the fitting | 1658.08 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1658.09. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1666.1 | 508.9 | E(γ): weighted average of 509.1 6 from (48Ca,3nγ) and 508.7 5 from (α,2nγ) |
| 1689.30 | 624.00 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 777.31 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1410.6 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1497.6 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. | 1689.35 | I(γ): From (n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 1689.334 | 406.03 | E(γ): Multiply placed | 1497.92 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1498.113. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1694.44 | 1595.89 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1595.19. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1696.422 | 399.621 | E(γ): very poor fit and omitted in the fitting; level-energy difference=399.767. From 168Yb(n,γ) E=thermal.. Very Poor fit and omitted in the fitting I(γ): From (n,γ) E=thermal. | 425.77 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 784.88 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 845.10 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1417.7 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1505.9 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. M(γ): From 168Yb(n,γ) E=thermal. |
| 1707.83 | 875.9 | E(γ): Multiply placed | 1707.97 | E(γ): Multiply placed |
| 1708.51 | 1318.53 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1318.98. Multiply placed. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1716.020 | 1326.85 | E(γ): very poor fit and omitted in the fitting; level-energy difference=1326.487. Multiply placed. Very Poor fit and omitted in the fitting | 1554.4 | E(γ): Multiply placed |
| 1724.502 | 439.42 | E(γ): From 168Yb(n,γ) E=thermal. | 453.69 | E(γ): From 168Yb(n,γ) E=thermal. | 522.58 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=522.292. Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal.. Poor fit; uncertainty multiplied by a factor in the fitting I(γ): Multiply placed with undivided intensity | 917.4 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1064.7 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1076.56 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1445.2 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1480.1 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1625.3 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1637.2 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| 1742.877 | 264.365 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 510.70 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 671.94 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1095.58 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1551.5 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1743.8 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 1781.242 | 226.379 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 869.64 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1061.60 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1133.4 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1391.8 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| 1781.756 | 862.4 | E(γ): Multiply placed | 1392.27 | E(γ): Multiply placed | 1502.89 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1503.151. Poor fit; uncertainty multiplied by a factor in the fitting | 1590.35 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1590.534. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1796.670 | 511.55 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 989.34 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1227.3 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1518.5 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1604.8 | I(γ): From (n,γ) E=thermal. |
| 1828.110 | 131.6883 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 296.53 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 477.98 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 717.34 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1105.5 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. | 1563.0 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1583.6 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1637.2 | E(γ): Multiply placed with undivided intensity. From 168Yb(n,γ) E=thermal. I(γ): Multiply placed with undivided intensity. From (n,γ) E=thermal. |
| 1844.2 | 508.6 | E(γ): weighted average of 508.4 6 from (48Ca,3nγ) and 508.7 5 from (α,2nγ) |
| 1867.59 | 143.087 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. | 1623.6 | E(γ): From 168Yb(n,γ) E=thermal. I(γ): From (n,γ) E=thermal. |
| E(level) | E(gamma) | Comments |
| 1908.663 | 1318.53 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1317.965. Multiply placed. Poor fit; uncertainty multiplied by a factor in the fitting | 1908.46 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1908.651. Poor fit; uncertainty multiplied by a factor in the fitting |
| 1954.53 | 875.9 | E(γ): Multiply placed | 1122.21 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=1122.63. Poor fit; uncertainty multiplied by a factor in the fitting | 1676.46 | E(γ): very poor fit and omitted in the fitting; level-energy difference=1675.93. Very Poor fit and omitted in the fitting |
| 1972.21 | 1223.07 | E(γ): Multiply placed | 1707.97 | E(γ): Multiply placed |
| 1974.132 | 1013.08 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1013.527. Poor fit; uncertainty multiplied by a factor in the fitting | 1326.85 | E(γ): Multiply placed | 1710.17 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1709.869. Poor fit; uncertainty multiplied by a factor in the fitting | 1903.04 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1903.239. Poor fit; uncertainty multiplied by a factor in the fitting | 1973.68 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=1974.120. Poor fit; uncertainty multiplied by a factor in the fitting |
| 2030.03 | 862.4 | E(γ): Multiply placed | 1109.99 | E(γ): uncertainty multiplied by a factor of 2 in the fitting; level-energy difference=1110.24. Poor fit; uncertainty multiplied by a factor in the fitting | 1223.07 | E(γ): Multiply placed | 1838.30 | E(γ): uncertainty multiplied by a factor of 3 in the fitting; level-energy difference=1838.80. Poor fit; uncertainty multiplied by a factor in the fitting |
| 2101.03 | 1822.42 | M(γ): E1 or E2 from α(K)exp in ε decay. |
| 2140.2 | 484.7 | E(γ): From 124Sn(48Ca,3nγ). M(γ): Q from (48Ca,3nγ) for intraband γ, (E2) from Δπ=no. |
| 2258.1 | 592 | E(γ): From 124Sn(48Ca,3nγ). |
| 2425.7 | 581.5 | E(γ): From 124Sn(48Ca,3nγ). |
| 2668.0 | 527.8 | E(γ): From 124Sn(48Ca,3nγ). M(γ): Q from (48Ca,3nγ) for intraband γ, (E2) from Δπ=no. |
| 2929.1 | 671 | E(γ): From 124Sn(48Ca,3nγ). |
| 3074.8 | 649.1 | E(γ): From 124Sn(48Ca,3nγ). |
| 3238.6 | 570.6 | E(γ): From 124Sn(48Ca,3nγ). M(γ): Q from (48Ca,3nγ) for intraband γ, (E2) from Δπ=no. |
| 3588.1 | 659 | E(γ): From 124Sn(48Ca,3nγ). |
| E(level) | E(gamma) | Comments |
| 3781.8 | 707.0 | E(γ): From 124Sn(48Ca,3nγ). |
| 3856.1 | 617.5 | E(γ): From 124Sn(48Ca,3nγ). |
| 4330 | 742 | E(γ): From 124Sn(48Ca,3nγ). |
| 4524.0 | 742.2 | E(γ): From 124Sn(48Ca,3nγ). |
| 4526.9 | 670.8 | E(γ): From 124Sn(48Ca,3nγ). |
| 5116 | 786 | E(γ): From 124Sn(48Ca,3nγ). |
| 5256.5 | 729.6 | E(γ): From 124Sn(48Ca,3nγ). |
| 5272.1 | 748.1 | E(γ): From 124Sn(48Ca,3nγ). |
| 6045.8 | 773.7 | E(γ): From 124Sn(48Ca,3nγ). |
| 6048.3 | 791.8 | E(γ): From 124Sn(48Ca,3nγ). M(γ): Q from (48Ca,3nγ) for intraband γ, (E2) from Δπ=no. |
| 6874.8 | 829 | E(γ): From 124Sn(48Ca,3nγ). |
| 6903.6 | 855.3 | E(γ): From 124Sn(48Ca,3nγ). |
| 7770.8 | 896 | E(γ): From 124Sn(48Ca,3nγ). |
| 7823.3 | 919.7 | E(γ): From 124Sn(48Ca,3nγ). |
| 8806.7 | 983.3 | E(γ): From 124Sn(48Ca,3nγ). |
| 9854.2 | 1047.5 | E(γ): From 124Sn(48Ca,3nγ). |
| 10961.2 | 1107 | E(γ): From 124Sn(48Ca,3nγ). |
See, e.g., 1982Bu21 and 1983Ne13 for hfs and isotope-shift data.
Levels: J(JjKkM) From band assignment, established by γ-ray multipolarities, coincidence data, and rotational structure.
Q-value: S(2n)=15928 4, S(2p)=11664.2 3 (2021Wa16)