58FE 58MN B- DECAY (65.4 S) 1974TI01 10NDS 201004 58FE H TYP=FUL$AUT=CAROLINE D. NESARAJA, SCOTT D. GERAEDTS AND BALRAJ SINGH$ 58FE2 H CIT=NDS 111, 897 (2010)$CUT=12-Jan-2010$ 58FE C 1974Ti01: EN AP 14 MEV, 58FE(N,P). Measured EG, RI 58FE C 1971Dy01: EN AP 14 MEV, 58FE(N,P). Measured EB, IB, EG, RI 58FE C 1969Wa10: EN=14.8 MEV, 58FE(N,P). Measured EG, RI, B spectra, BG, GG, 58FE2C coincidences, T1/2 58FE C 1993ScZS (also 1992ScZS): E=11.6 MEV/nucleon, W(86KR,X), and mass 58FE2C separation. Measured EG, RI, conversion electron spectra, T1/2, 58FE3C GG and BG coincidences 58FE D 1969DYZZ IS SUPERSEDED BY 1971DY01 58FE C The level scheme is from 1974Ti01. The 65.4-S activity is assigned to 58FE2C the 71.78 level as determined by 1993ScZS. 58FE CB IB From RI balance at each level 58FE CG E From 1974Ti01 58FE CG M,MR From 'adopted gammas' 58FE CG RI$ Values are from 1974Ti01, divided by 100 by the evaluators. 58FE CG E(A),RI(A)$ G NOT OBSERVED IN 1974TI01, AN UPPER LIMIT OF INTENSITY 58FE2CG IS GIVEN 58FE CG E(B)$ EXISTENCE OF THIS G IS UNCERTAIN 58FE CL E From a least-squares fit to EG data 58FE CL J From 'adopted levels' 58MN P 71.78 5 4+ 65.4 S 5 6250 30 58FE N 0.88 4 1.0 1.0 58FE CN NR$ |S(TI OF G'S TO GS)=100; assuming that GS B- feeding is zero 58FE PN 3 58FE L 0.0 0+ 58FE L 810.770 212+ 58FE G 810.761 21 100 3 E2 58FE CG Calibration energy. See 1974Ti01. Note that from 58CO decay, 58FE2CG this energy is 810.7593 29 (2000He14 evaluation) 58FE L 1674.72 3 2+ 58FE G 863.94 3 16.8 5 M1+E2 -0.69 5 58FE G 1674.72 7 13.2 4 E2 58FE L 2076.52 4 4+ 58FE B 3.8 4 6.88 5 58FES B EAV=1890 15 58FE G 1265.74 5 10.3 3 E2 58FE L 2133.89 4 3+ 58FE B 76 4 5.56 3 58FES B EAV=1862 15 58FE CB E$ 3800 100 (1971Dy01), 3900 200 (1969Wa10). 58FE2CB 1974Ti01 suggest that 5100B observed by 1971Dy01 is in fact 58FE3CB CEK(810G)+CEK(1323G)+4000B line 58FE G 459.160 25 24.3 7 (M1) 58FE G 1323.09 5 67.3 20M1+E2 -0.40 5 58FE L 2600.39 4 4+ 58FE B 8.0 4 6.31 3 58FES B EAV=1636 15 58FE G 466.48 3 1.44 5 (M1) 58FE G 523.86 3 4.20 13M1+E2 -0.15 5 58FE G 925.68 5 1.91 7 E2 58FE G 1789.59 8 3.25 10E2 58FE L 2876.40 152+ 58FE B 0.158 19 7.86 6 58FES B EAV=1503 15 58FE G 2065.59 14 0.18 2 M1+E2 -0.33 +8-11 58FE G 2876.3 0.03 LE A ? 58FE L 3083.73 202+ 58FE G 2272.99 23 0.09 2 M1+E2 -0.05 1 58FE G 3083.6 0.03 LE A ? 58FE L 3233.26 6 2+ 58FE B 3.24 17 6.34 3 58FES B EAV=1331 15 58FE G 632.71 10 0.64 6 58FE G 1156.77 7 1.19 5 58FE G 1558.71 19 0.58 2 58FE G 2422.45 171.27 3 58FE G 3233.2 0.03 LE A ? 58FE L 3243.9 3 0+ 58FE G 2433.05 25 0.14 2 58FE L 3629.57 242+ 58FE B 0.92 6 6.63 4 58FES B EAV=1142 15 58FE G 2818.5 3 0.96 3 & 58FE G 3629.8 4 0.08 2 58FE L 3901.61 7 (3)+ 58FE B 4.25 25 5.77 4 58FES B EAV=1013 15 58FE G 1301.10 11 0.78 4 58FE G 1767.74 8 3.60 15 58FE G 1825.1 0.04 LE A ? 58FE CG E$ 1829.6 LISTED IN LEVEL-SCHEME FIGURE OF 1974TI01 SEEMS INCORRECT 58FE G 2226.88 18 0.34 8 58FE G 3090.7 4 0.11 2 58FE G 3901.5 0.02 LT A ? 58FE L 4088.47 174+ 58FE B 0.24 6 6.87 12 58FES B EAV=925 15 58FE G 458.5 B ? 58FE CG RI weak G 58FE G 1488.17 20 0.18 4 58FE G 2011.7 3 0.18 LT 58FE CG RI$ complex peak containing a small contribution from an impurity G 58FE L 4312.91 9 2+ 58FE B 2.24 12 5.71 4 58FES B EAV=820 14 58FE G 1436.5 0.04 LE A ? 58FE G 1712.2 3 0.08 3 58FE G 2179.08 14 0.54 4 58FE G 2236.33 15 0.39 2 58FE G 2638.15 20 1.51 4 58FE G 3501.9 8 0.02 2 58FE G 4312.7 0.02 LT A ? 58FE L 4493.1 3 58FE B 0.92 6 5.92 5 58FES B EAV=736 14 58FE G 2818.5 3 0.96 3 & 58FE G 3681.7 5 0.08 2 58FE L 4530.17 231,2 58FE B 0.19 3 6.57 8 58FES B EAV=719 14 58FE G 1446.5 3 0.11 2 58FE G 2855.2 3 0.07 1 58FE G 4531.0 15 0.04 2 58FE L 4590.0 4 (2+,3,4+) 58FE B 0.20 3 6.49 8 58FES B EAV=692 14 58FE G 2513.9 4 0.06 2 B ? 58FE G 3778.1 6 0.17 2 58FE L 4833.9 3 1+,2+ 58FE B 0.106 10 6.50 6 58FES B EAV=581 14 58FE G 2699.94 25 0.12 1