143BA    143CS B- DECAY                1989RO20                  12NDS    201203
143BA  H TYP=FUL$AUT=E. BROWNE, J. K. TULI$CIT=NDS 113, 715 (2012)$
143BA2 H CUT=31-May-2011$
143BA c  Measured: |g (1979Sc11,1979Bo26,1985Ra20,1984So18,1989Ro20), |g|g,
143BA2c  |g|g(|q) (1988WaZQ,1989Ro20), ce (1979Sc11,1985Ra20), |b{+-}
143BA3c  (1981De25), |b|g (1982Pa24,1981Ke07,1981De25,1978Wu04),
143BA4c  |b{+-}n (1981En05,1980Re03,1980Lu04,1979WaZU,1979Ri09,1979En02,
143BAxc  \1978Gj01, \1978Gj02,1977Re06)
143BA c  Level scheme is mostly that of 1989Ro20. I|b, log| {Ift} values are the
143BA2c  upper and lower limits, respectively as 1989Ro20 studied only the
143BA3c  lower-lying levels. But other studies also did not observe any
143BA4c  E|g>2 MeV. With Q(|b{+-}) of 6.26 MeV level scheme may not be
143BA5c  complete
143BA c  Delayed-neutron emission probability=1.62% {I10} (evaluated in
143BA2c  1983ReZX). Others: 1.68% {I17} (1981En05), 1.54% {I9} (1980Lu04),
143BAxc  1.74% {I12} (1979Ri09)
143BA c  Observed delayed neutrons with E(n)=25.9 (strong group), 72,
143BA2c  84.5, 93, 124, 173, 211, 290, 330; for I(n) see 1985Gr15
143BA c  E(n)(av)=335 (1980Re03);
143BA2c  E(n)(av)=232 (if neutrons with E(n)>800 are neglected)
143BA cB           Measured E|b (coin |g): 3520 {I180} (1978|g), 5545 {I120}
143BA2cB (661|g), 5515 {I150} (627|g), 5395 {I180} (571|g), 5500 {I150}
143BA3cB (527|g), 5575 {I180} (467|g), 5810 {I180} (307|g), 6075 {I130}
143BA4cB (232|g), 6090 {I150} (195|g) (1982Pa24); 6070 {I50} (195|g) (1981De25)
143BA DG CC$ FROM BrIcc v2.2 (31-Mar-2008) 2008KiAA, "Frozen Orbitals" appr.
143BA CG           KC(exp), LC(exp), MC(exp) presented here have been
143BA2CG normalized to KC(117G, E2, theory)=0.741.
143BA cG RI        Absolute I|g from 1984So18 are based on
143BA2cG I(|g+ce)(293.3|g)=42.8% {I4} in {+143}Ce |b{+-} decay (1982Ge03)
143BA CG E$|g's: EG (RI): 595.0 (2), 653.3 (1.5), 681.9 (2),
143BA2cG 743.3 (2), 753.0 (1), 911.3 (1.5), 969.6 (3)
143BA3cG from 1979Sc11 were not observed in 1985Ra20 or 1989Ro20
143BA cG M$From 1985Ra20 based on |a(K)exp, |a(L)exp
143BA cG E(A),RI(A) $From 1985Ra20; |DE=0.1-0.3; |DI|g<10%
143BA cG E(B)      From 1979Bo26
143BA cL J$From Adopted Levels
143CS  P 0.0         3/2+              1.791 S   7              6262      22
143BA  N 0.126     19          1.0       1.0
143BA cN NR        From absolute I(195|g)=12.6% {I19} (1984So18)
143BA  G 198.5      50.5     LT                                             A
143BA cG RI        I|g=0.4 in 1979Sc11
143BA  G 204.3      10.6      1
143BA cG E,RI$suggested placement from 466 level by 1979Sc11 is not confirmed
143BA2cG by 1989Ro20 in coin studies.
143BA  G 711.5      10.9      1
143BA  G 880.5      11.0      1
143BA  L 0.0         5/2-              14.5 S    3
143BA  B             25      AP             5.7  AP
143BAS B EAV=2759 11
143BA  L 33.29      3(1/2)-
143BA  B             11      4             6.0   2
143BAS B EAV=2743 11
143BA  G 33.46       2.3      2E2                      125.7
143BAS G LC=98.9 14$MC=21.8 3$NC+=5.05 7
143BAS G NC=4.48 7$OC=0.569 8$PC=0.000631 9
143BA CG M         LC(exp)=107 21, normalized to KC(117G, E2, theory)=0.741.
143BA2CG CEL/CEM (theory)=5. 1985Ra20 reports CEL/CEM=8.9. However, evaluators
143BA3CG have obtained CEL/CEM AP 5 from the electron spectrum
143BA4CG given in 1985Ra20.
143BA  L 117.368   24  9/2-            3.8 NS    12
143BA  G 117.32    5 9.7      4E2                      1.094
143BAB G BE2W=72 23
143BAS G KC=0.741 11$LC=0.278 4$MC=0.0605 9$NC+=0.01432 21
143BAS G NC=0.01260 18$OC=0.001686 24$PC=3.52E-5 5
143BA cG M         |a(L)exp=0.336 {I100}, |a(M)exp=0.084 {I25}
143BA  L 228.83     3(3/2)-
143BA  B             12      2             5.9    1
143BAS B EAV=2651 11
143BA  G 195.554   10100       M1,E2                   0.169  17            B
143BAS G KC=0.137 7$LC=0.025 8$MC=0.0053 18$NC+=0.0013 5
143BAS G NC=0.0011 4$OC=0.00016 5$PC=8.1E-6 5
143BA cG M         |a(K)exp=0.136 {I40}, |a(L)exp=0.031 {I9}
143BA dG $|a(K)=0.1316 (M1),|a(K)=0.1445 (E2)
143BA cG RI        I|g=12.6% {I19} (1984So18)
143BA  G 228.80    6 20       1M1+E2     0.6     14    0.102  6
143BAS G KC=0.0856 14$LC=0.013 4$MC=0.0027 9$NC+=0.00068 19
143BAS G NC=0.00058 17$OC=8.7E-5 21$PC=5.4E-6 5
143BA cG M         |a(K)exp=0.082 {I30}, |a(L)exp=0.014 {I4}
143BA dG $|a(K)=0.0865 (M1),|a(K)=0.0872 (E2)
143BA  L 232.416   14(3/2,5/2)-
143BA  B             5.6                    6.2
143BAS B EAV=2650 11
143BA  G 232.421   1666       2M1,E2                   0.100  5             B
143BAS G KC=0.0820 12$LC=0.014 4$MC=0.0029 7$NC+=0.00072 16
143BAS G NC=0.00062 15$OC=9.1E-5 18$PC=4.9E-6 5
143BA cG M         |a(K)exp=0.101 {I30}
143BA dG $|a(K)=0.0827 (M1),|a(K)=0.0826 (E2)
143BA cG RI        I|g=10.0% {I9} (1984So18)
143BA  L 263.386   13 7/2-
143BA  G 146.00    3 3.2      2M1,E2                   0.42   9
143BAS G KC=0.33 4$LC=0.07 4$MC=0.016 8$NC+=0.0038 19
143BAS G NC=0.0033 16$OC=0.00047 21$PC=1.88E-5 5
143BA cG M         |a(K)exp=0.34 {I11}
143BA dG $|a(K)=0.374 (E2),|a(K)=0.296 (M1)
143BA  G 263.383   1429       1M1,E2                   0.0685               B
143BAS G KC=0.0569 19$LC=0.0092 15$MC=0.0019 4$NC+=0.00047 8
143BAS G NC=0.00041 7$OC=6.0E-5 8$PC=3.5E-6 4
143BA cG M         |a(K)exp=0.098 {I30}
143BA dG $|a(K)=0.0594 (M1),|a(K)=0.0555 (E2)
143BA  L 306.56     3(3/2)-
143BA  B             5.8     10            6.2    1
143BAS B EAV=2615 11
143BA  G 74.13      51.2      1
143BA  G 77.75      30.3      1
143BA  G 272.656   9034       1M1,E2                   0.0619 10            B
143BAF G FL=33.29
143BAS G KC=0.0515 21$LC=0.0082 12$MC=0.0017 3$NC+=0.00042 6
143BAS G NC=0.00037 6$OC=5.4E-5 7$PC=3.1E-6 4
143BA cG M         |a(K)exp=0.044 {I13}
143BA dG $|a(K)=0.0542 (M1),|a(K)=0.0497 (E2)
143BA cG RI        I|g=3.9% {I5} (1984So18)
143BA  G 306.424   5854       2M1+E2     1       5     0.0441 19            B
143BAS G KC=0.037 3$LC=0.0057 6$MC=0.00118 13$NC+=0.00029 3
143BAS G NC=0.000253 25$OC=3.74E-5 25$PC=2.3E-6 3
143BA cG M         |a(K)exp=0.035 {I11}
143BA dG $|a(K)=0.0399 (M1),|a(K)=0.0345 (E2)
143BA cG RI        I|g=6.9% {I12} (1984So18)
143BA  L 466.67     3-
143BA  B             3.3     6             6.4    1
143BAS B EAV=2540 11
143BA  G 160.00    5 3.5      2M1,E2                   0.32   6
143BAS G KC=0.250 25$LC=0.053 23$MC=0.011 5$NC+=0.0027 12
143BAS G NC=0.0024 11$OC=0.00033 13$PC=1.44E-5 5
143BA cG M         |a(K)exp=0.155 {I46}
143BA dG $|a(K)=0.278 (E2), |a(K)=0.228 (M1)
143BA  G 234.2      12.0      2
143BA  G 237.93     43.1      8
143BA  G 466.69    5 24       1(E2)                    0.01194
143BAS G KC=0.01001 14$LC=0.001538 22$MC=0.000321 5$NC+=7.91E-5 11
143BAS G NC=6.84E-5 10$OC=1.011E-5 15$PC=5.98E-7 9
143BA cG M         |a(K)exp=0.017 {I5}, |a(K)(E2)=0.0099
143BA cG E         from level energies
143BA  L     534.83 3   5/2-
143BA  B             1.2     2             6.8    1
143BAS B EAV=2508 11
143BA  G 302.51     53.9      2
143BA  G 417.44     51.1      1
143BA  G 534.80     610.7     5
143BA cG RI        I|g=1.2% {I2} (1984So18)
143BA  L 597.77    11                                                          ?
143BA  G 480.4      11.0      2
143BA  L 659.98     5
143BA  B             5.8     9             6.1    1
143BAS B EAV=2449 11
143BA  G 626.58     623.2     9
143BA  G 660.06     838       1
143BA cG RI        from 1989Ro20; 52 in 1985Ra20, 37 in 1979Sc11
143BA  L 670.57     5
143BA  G 407.2      12.6      2
143BA  G 438.1      10.7      1
143BA  G 553.2      11.8      2
143BA  G 670.6      12.4      2
143BA  L 695.53     5(+)
143BA  B             4.9     8             6.2    1
143BAS B EAV=2432 11
143BA  G 388.9      16.0      3
143BA  G 466.74     512.9     8(E1)
143BAS G CC=0.00382 6$KC=0.00330 5$LC=0.000416 6$MC=8.51E-5 12$NC+=2.13E-5 3
143BAS G NC=1.83E-5 3$OC=2.78E-6 4$PC=1.97E-7 3
143BA cG M         |a(K)exp=0.0075 {I23}
143BA cG E         from level energies
143BA  G 662.1      124       1
143BA  L 729.27     5   5/2-
143BA  B             1.6     3             6.6    1
143BAS B EAV=2417 11
143BA  G 611.93     67.0      4
143BA  G 729.23     710.9     5
143BA  L 822.74     5
143BA  G 516.1      11.1      2
143BA  G 559.5      10.9      1
143BA  G 590.3      10.9
143BA  G 822.7      14        2
143BA  L 830.85     8
143BA  G 524.1      12        1
143BA  G 602.2      12.8      3
143BA  L 834.09     43/2,5/2
143BA  B             7.7     12            5.9    1
143BAS B EAV=2367 11
143BA  G 299.33     56.4      3
143BA  G 527.4      127       1
143BA  G 570.70     712.9     6
143BA  G 601.6      10.4      1
143BA  G 605.30     712.3     5
143BA  G 834.0      15.8      4
143BA  L 933.69     7
143BA  B             0.4     1             7.2    1
143BAS B EAV=2321 11
143BA  G 670.2      11.6      2
143BA  G 933.75     81.5      1
143BA  L 1082.70    6
143BA  G 616.0      11.2      8
143BA  G 776.06     71.6      4
143BA  G 1049.2      0.6      1
143BA  G 1083.4     22.8      1
143BA  L 1085.12    6
143BA  B             2.2     4             6.4    1
143BAS B EAV=2249 11
143BA  G 618.5      12.3      8
143BA  G 778.6      15.1      6
143BA  G 852.7      12.2      3
143BA  G 856.4      25.6      6
143BA  G 1051.7     11.9      1
143BA  L 1100.63    5
143BA  B             2.0     3             6.4    1
143BAS B EAV=2242 11
143BA  G 793.5       1.0     LT                                             A
143BA  G 837.1      14.1      2
143BA  G 868.2      16.0      2
143BA  G 871.8      14.2      2
143BA  G 1100.8     11.0      1
143BA  L 1109.97    7
143BA  G 846.55     81.6      1
143BA  G 877.6      12.3      2
143BA  L    1153.55 6
143BA  G 890.0      11.1      1
143BA  G 921.20     81.6      3
143BA  G 1153.6     11.0      1
143BA  L 1203.52   20
143BA  G 971.1      21.2      1
143BA  L 1253.33    6
143BA  G 786.7      11.5      4
143BA  G 1020.8     12.1      2
143BA  G 1024.5     11.3      1
143BA  G 1253.4     10.6      1
143BA  L     1299.710
143BA  G 833        11.2      3
143BA  L 1440.86    8
143BA  G 1208.4     12.0      3
143BA  G 1440.9     10.2      1
143BA  L 1452.25    6
143BA  B              1.7    3             6.3    1
143BAS B EAV=2077 11
143BA  G 756.7      14.1      2
143BA  G 792.1      15.2      3
143BA  G 985.7      11.8      1
143BA  G 1219.9     12.0      3
143BA  L 1575.99   10
143BA  G 1312.6     12.6      1
143BA  L 2638.96   20
143BA  B             2.7     4             5.6    1
143BAS B EAV=1522 11
143BA  G 1805.5     53.7                                                    A
143BA  G 1909.5     35.3                                                    A
143BA  G 1978.9     310                                                     A