73AS    73SE EC DECAY (39.8 M)        1980TE01                  19NDS    201908
 73AS  H TYP=FUL$AUT=BALRAJ SINGH and JUN CHEN$CIT=NDS 158, 1 (2019)$
 73AS2 H CUT=16-May-2019$
 73AS c  1980Te01 (also 1978TeZY): measured E|g, I|g, |g|g
 73AS c  |g, |g|g: 1970Me20 (also 1970MeZZ), 1969Ma21. Others: 1970Mu02,
 73AS2c  1969Mu03, 1969Ba34, 1968Mu08, 1968At04, 1968Ak03, 1967Ra08, 1960Ri09,
 73ASxc  1960Ku06
 73AS c  ce: 1971Vo10, 1969Ko25, 1968Mu08
 73AS c  |b{++} endpoint energies: 1968Ak03, 1960Ku06, 1960Ri09
 73AS c  |b|g coin: 1968Ak03.
 73AS c  (|g{+|+})(|g) coin: 1960Ri09
 73AS c  X|g coin: 1969Ko25
 73AS c  Isomer branching: 1969Mu03, 1969Ma21
 73AS c  T{-1/2}({+73}Se isomer): 1976Bo19, 1969Ma21, 1970Me20, 1969Mu03,
 73AS2c  1968Ak03, 1960Ri09
 73AS c  The decay scheme is based on energy sums and |g|g-coin data of
 73AS2c  1980Te01, 1970Me20 and 1969Ma21
 73AS cE TI$From I(|g+ce) imbalances. 39.8-min decay is
 73AS2cE separated from 7.15-h decay by |g(t).
 73AS cG $The |a(K)exp and |a(L)exp are from ce intensities in 1971Vo10,
 73AS2cG assuming mult(84|g)=M1, and |a(K)(84|g)=0.1273. |a values in
 73AS3cG 1971Vo10 are normalized to |a(K)(84|g)=0.131.
 73AS cG $Intensity of |g{+|+} radiation intensity (relative to 100 for
 73AS2cG 253.7|g)=1713 {I156}, unweighted average of 1680 {I200} (1969Ma21),
 73AS3cG 1460 {I146} (1970Me20) and 2000 {I100} (1980Te01)
 73AS cG E(A)$Possibly doublet.
 73AS cG RI(B)$Corrected for contamination from {+73}Se |e decay (7.1 h).
 73AS cG M,MR$From Adopted Gammas. The adopted values are based on ce
 73AS2cG data (1971Vo10) given under comments from this study where available
 73AS cG E(D)$Not resolved from annihilation radiation. I|g calculated
 73AS2cG from relative branching in {+73}Se |e decay (7.15 h).
 73AS cL E$From least-squares fit to E|g data. Reduced |h{+2}=1.6 is within
 73AS2cL the critical |h{+2}
 73AS cL J,T$From Adopted Levels.
 73SE  P 25.71     4 3/2-              39.8 M    17             2725      7
 73SE cP E,J,T$From {+73}Se Adopted Levels
 73SE cP QP$From 2017Wa10
 73AS  N 0.086     7           0.274   3  3.65
 73AS cN NR$Deduced from measured annihilation intensity and
 73AS2cN theoretical |e/|b{++} ratios.
 73AS cN BR$%|e+%|b{++}=27.4 {I3} for decay of {+73}Se (39.8 min) from
 73AS2cN {+73}Se Adopted Levels
 73AS PN                                                                     3
 73AS  G 860.16    24 0.05   2
 73AS  G 1209.96   24 0.33   5
 73AS  G 1395.26   19 0.09   2
 73AS  G 1538.69   17 0.13   2
 73AS  G 1606.33   20 0.06   2
 73AS  G 1711.1    4 0.10    2
 73AS  G 2135.6    3 0.03    2
 73AS  G 2425.7    5 0.06    2
 73AS  L    0.0      3/2-              80.30 D   6
 73AS  E 2780      60  12.8  9   2.56  19  5.60   4             15.4      11
 73ASS E EAV=760.4 32$CK=0.1464 16$CL=0.01656 18$CM+=0.00316 4
 73AS  L    67.09   7 5/2-             4.95 NS   7
 73AS  E                2.4  3   0.55  7   6.24   6             3.0       4
 73ASS E EAV=729.8 32$CK=0.1622 18$CL=0.01835 20$CM+=0.00350 4
 73AS  G 67.07     10 110    9 M1(+E2)   -0.001  15    0.272                 C
 73ASS G  KC=0.241 4$LC=0.0264 4$MC=0.00403 7
 73ASS G  NC=0.000303 5
 73AS cG RI$1969Mu03 have separated the 39.8-min and 7.15-h components.
 73AS  L    84.19   4  (1/2)-
 73AS  E               1.26  14  0.29  3   6.51   5             1.55      17
 73ASS E EAV=722.0 32$CK=0.1665 19$CL=0.01884 21$CM+=0.00360 4
 73AS  G 84.0      1 86      4 (M1)                    0.1451                C
 73ASS G  KC=0.1288 19$LC=0.01403 21$MC=0.00214 3
 73ASS G  NC=0.0001614 24
 73AS cG M$K/(L+M)=5.9 {I11}; |a(L+..)exp+|a(M)exp=0.022 {I5}
 73AS DG $ ICE(K)=1300 50, ICE(L+M)=220 40
 73AS  L   253.84   4  (1/2)-
 73AS  E               0.05  3   0.01  1    7.8   3             0.06      4
 73ASS E EAV=645.0 32$CK=0.2178 25$CL=0.0247 3$CM+=0.00471 6
 73AS  G 169.72    6 2.85    24 [M1]                   0.0220                C
 73ASS G  KC=0.0195 3$LC=0.00209 3$MC=0.000319 5
 73ASS G  NC=2.41E-5 4
 73AS  G 253.70    7 100     1 M1+E2      0.33   6     0.0096 6              C
 73AS2 G EKC=0.0085 6
 73ASS G  KC=0.0085 6$LC=0.00091 6$MC=0.000139 10
 73ASS G  NC=1.05E-5 7
 73AS DG $ ICE(K)=100, ICE(L)=10.5
 73AS  L   393.39   5 3/2-
 73AS  E               0.84  8   0.38  3   6.29   5             1.22      11
 73ASS E EAV=582.2 32$CK=0.274 4$CL=0.0310 4$CM+=0.00592 7
 73AS  G 139.47    8 4.82    14 M1+E2     0.35   10    0.058  12             C
 73AS2 G EKC=0.051 10
 73ASS G  KC=0.051 10$LC=0.0058 13$MC=0.00088 19
 73ASS G  NC=6.4E-5 13
 73AS DG $ ICE(K)=29 4
 73AS  G 309.3     4 7.00    13 M1+E2     1.2    4     0.0093 16             C
 73AS2 G EKC=0.0083 15
 73ASS G  KC=0.0083 14$LC=0.00090 16$MC=0.000137 23
 73ASS G  NC=1.02E-5 17
 73AS DG $ ICE(K)=6.8 10
 73AS  G 393.43    7 69.0    7 M1+E2      1.0    3     0.0041 5              C
 73AS2 G EKC=0.0037 4
 73ASS G  KC=0.0037 5$LC=0.00039 5$MC=5.9E-5 8
 73ASS G  NC=4.5E-6 6
 73AS DG $ ICE(K)=30 2, ICE(L)=3.0
 73AS  L   509.74  15  (5/2)+
 73AS  E               0.090 8   0.054 5   7.09   4             0.144     12
 73ASS E EAV=530.2 32$CK=0.332 4$CL=0.0376 5$CM+=0.00718 9
 73AS  G 442.3     4 1.11    7 E1                      1.04E-3
 73ASS G  KC=0.000930 14$LC=9.59E-5 14$MC=1.460E-5 21
 73ASS G  NC=1.108E-6 16
 73AS  G 510       AP5.9     AP                                             D
 73AS cG $Ice(K)=11.3 {I13} relative to Ice(K)=100 for 254|g
 73AS  L   574.43   6  (1/2)-
 73AS  E               0.80  7   0.57  5   6.04   5             1.37      12
 73ASS E EAV=501.4 31$CK=0.369 5$CL=0.0419 5$CM+=0.00799 10
 73AS  G 181.06    7 19.4    4 M1+E2      0.40   8     0.028  4              C
 73AS2 G EKC=0.025 3
 73ASS G  KC=0.025 3$LC=0.0027 4$MC=0.00042 6
 73ASS G  NC=3.1E-5 4
 73AS DG $ ICE(K)=56 5
 73AS  G 320.53    8 34.6    4   M1                    0.00444               C
 73AS2 G EKC=0.0048 5
 73ASS G  KC=0.00396 6$LC=0.000416 6$MC=6.35E-5 9
 73ASS G  NC=4.83E-6 7
 73AS cG M$|a(K)exp gives M1(+E2) with |d<0.55, but |DJ|p consistent with M1
 73AS DG $ ICE(K)=19.6 10
 73AS  G 490.24    17 5.62   14                                              C
 73AS  L    577.6   3  5/2-
 73AS  E               0.57  5   0.42  4   6.18   5             0.99      9
 73ASS E EAV=500.0 32$CK=0.371 5$CL=0.0421 5$CM+=0.00803 10
 73AS  G 577.63    27 42.1   6 M1+E2     +0.5    +5-2  0.0012316
 73AS2 G EKC=0.0022 5
 73ASS G  KC=0.00109 15$LC=0.000114 16$MC=1.74E-5 24
 73ASS G  NC=1.32E-6 18
 73AS DG $ ICE(K)=10.8 22
 73AS CG M$from Adopted Gammas. EKC is larger than that for E2 or M1, but
 73AS2cG marginally agrees with E2
 73AS  L   655.36   6 3/2-
 73AS  E               0.97  8   0.88  8   5.82   5             1.85      16
 73ASS E EAV=465.6 31$CK=0.421 5$CL=0.0477 6$CM+=0.00911 11
 73AS  G 262.01    7 7.12    17 M1+E2     0.6    2     0.0113 20             C
 73AS2 G EKC=0.0101 16
 73ASS G  KC=0.0100 17$LC=0.00109 20$MC=0.00017 3
 73ASS G  NC=1.23E-5 21
 73AS DG $ ICE(K)=8.5 12
 73AS  G 401.47    7 53.0    5 M1+E2      1.0    3     0.0039 5              C
 73AS2 G EKC=0.0034 5
 73ASS G  KC=0.0034 4$LC=0.00037 5$MC=5.6E-5 7
 73ASS G  NC=4.2E-6 5
 73AS DG $ ICE(K)=21 3
 73AS  G 570.96    2710.28   29                                              C
 73AS2 G EKC=0.0023 15
 73AS DG $ ICE(K)=2.8 18
 73AS  G 588.28    173.7     2                                               C
 73AS  G 655.30    145.04    7
 73AS  L   769.61  10   5/2-
 73AS  E               0.104 9   0.138 12  6.58   5             0.242     21
 73ASS E EAV=415.3 31$CK=0.502 6$CL=0.0570 6$CM+=0.01088 12
 73AS  G 702.58    233.89    6  D+Q
 73AS  G 769.59    106.39    14M1(+E2)   2.0     LT    0.000656
 73ASS G  KC=0.00058 6$LC=6.1E-5 6$MC=9.2E-6 9
 73ASS G  NC=7.0E-7 7
 73AS  L   850.18  18(5/2)-
 73AS  E               0.097 9   0.174 16  6.44   5             0.271     25
 73ASS E EAV=380.1 31$CK=0.564 6$CL=0.0640 7$CM+=0.01223 12
 73AS  G 850.17    1811.5    4 M1+E2     +0.19   +19-174.86E-411
 73ASS G  KC=0.000434 10$LC=4.47E-5 11$MC=6.82E-6 16
 73ASS G  NC=5.22E-7 12
 73AS  L  1077.57   4  (3/2)-
 73AS  E               0.13  1   0.65  6   5.76   5             0.78      7
 73ASS E EAV=281.8 30$CK=0.733 5$CL=0.0834 6$CM+=0.01592 11
 73AS  G 823.68    8 4.62    26                                              C
 73AS  G 993.28    6 3.22    6                                               C
 73AS  G 1010.69   250.32    20
 73AS  G 1077.64   5 25.0    3
 73AS  L  1086.69   5   5/2-           0.28 PS   +28-12
 73AS  E               0.037 4   0.191 18  6.29   5             0.228     21
 73ASS E EAV=277.9 30$CK=0.739 5$CL=0.0841 6$CM+=0.01605 10
 73AS  G 693.2     4 0.92    4                                               C
 73AS  G 833.09    102.32    21                                              C
 73AS  G 1002.38   6 2.79    6                                               C
 73AS  G 1019.54   122.35    5
 73AS  G 1086.78   8 1.44    30
 73AS  L  1188.72  10  (3/2-)
 73AS  E              0.0027 4   0.026 4   7.1    1             0.029     4
 73ASS E EAV=234.4 30$CK=0.798 4$CL=0.0908 4$CM+=0.01734 8
 73AS  G 934.90    150.95    3                                               C
 73AS  G 1188.69   130.30    10
 73AS  L  1299.41   9  (1/2-,3/2)
 73AS  E              0.0049 6   0.108 11  6.41   5             0.113     12
 73ASS E EAV=187.5 30$CK=0.8427 23$CL=0.0960 3$CM+=0.01834 5
 73AS  G 643.9     3 0.50    4                                               C
 73AS  G 724.80    122.00    6                                               C
 73AS  G 1045.58   220.45    26                                              C
 73AS  G 1215.80   240.79    7
 73AS  G 1232.40   191.06    5
 73AS  L  1302.05   6 (5/2-)
 73AS  E              0.0044 5   0.100 9   6.45   4             0.104     9
 73ASS E EAV=186.4 30$CK=0.8435 22$CL=0.0961 3$CM+=0.01835 5
 73AS  G 646.7     3 0.04    2                                               C
 73AS  G 792.48    220.73    6
 73AS  G 908.46    190.88    3                                               C
 73AS  G 1302.04   6 2.75    5
 73AS  L  1972.92  11 (1/2-,3/2,5/2-)
 73AS  E                        0.0078 11  7.0    1
 73ASS E CK=0.8792$CL=0.10141 3$CM+=0.019402 5
 73AS  G 1719.1    4 0.16    2
 73AS  G 1888.74   140.09    2                                              B
 73AS  G 1905.74   170.08    2
 73AS  L  1982.42  13 (1/2,3/2,5/2-)
 73AS  E                        0.0125 16  6.8    1
 73ASS E CK=0.8792$CL=0.10144 3$CM+=0.019408 5
 73AS  G 1326.48   280.11    3
 73AS  G 1588.5    120.14    2                                              A
 73AS  G 1898.89   230.06    3
 73AS  G 1982.24   170.22    1
 73AS  L  2211.54  19  (5/2)-
 73AS  E                        0.0066 17  6.8   1
 73ASS E CK=0.8779$CL=0.10248 5$CM+=0.01964 1
 73AS  G 1125.5    6 0.14    5                                              A
 73AS  G 1133.4    6 0.09    4
 73AS  G 2127.4    4 0.02    1
 73AS  G 2144.38   230.03    2
 73AS  L  2484.63  10  (3/2-)
 73AS  E                        0.0111 15  5.9    1
 73ASS E CK=0.8733 3$CL=0.10621 21$CM+=0.02045 5
 73AS  G 1407.29   290.06    2
 73AS  G 1910.33   170.07    2
 73AS  G 1974.67   180.18    2                                              B
 73AS  G 2090.7    3 0.08    2
 73AS  G 2400.33   260.03    2
 73AS  G 2484.78   210.05    2