ADOPTED LEVELS, GAMMAS for 100Ru

Authors: Balraj Singh and Jun Chen |  Citation: Nucl. Data Sheets 172, 1 (2021) |  Cutoff date: 31-Jan-2021 

 Full ENSDF file | Adopted Levels (PDF version) 


Q(β-)=-3636 keV 18S(n)= 9673.32 keV 3S(p)= 9188.5 keV 9Q(α)= -2857.4 keV 4
Reference: 2017WA10

References:
  A  100Tc β- decay (15.65 S)  B  100Rh ε decay (20.5 H)
  C  100Rh ε decay (4.6 M)  D  100Mo 2β- decay (7.01×1018 Y)
  E  70Zn(36S,α2nγ),88Sr(14C,2nγ)  F  76Ge(34S,2α2nγ)
  G  98Mo(α,2nγ)  H  99Tc(3He,d)
  I  99Ru(n,γ) E=TH  J  99Ru(n,γ) E=RES
  K  99Ru(d,p)  L  100Mo(α,4nγ)
  M  100Ru(n,n’γ),(n,n’)  N  100Ru(p,p’)
  O  100Ru(α,α’)  P  101Ru(p,d)
  Q  101Ru(d,t)  R  102Ru(p,t)
  S  103Rh(p,α)  T  Coulomb Excitation

General Comments:

Other reactions:

See 99Ru(n,γ),(n,n):resonances dataset for 40 neutron resonances between 10.05 and 994.6 eV

(HI,X): 1976Mi13, 1974We04

100Ru(32S,32S’); 100Ru(32S,X): 1993Co11, measured σ(θ)

100Mo(32S,28Si): 1995He17, measured cross section

99Ru(p,n): 1969Fr18, search for IAR

-,X): 1980HoZV

103Rh(p,4nγ): 1972KoZE, E=44 MeV, measured Eγ, Iγ, I(ce). Deduced E0/E2 branching for the first excited 0+ state.

Theory references: consult the NSR database (www.nndc.bnl.gov/nsr/) for 127 primary references ealing with nuclear structure calculations.

Levels: Band assignments are from (36S,α2nγ) (2000Ti07) and from (α,2nγ) (2000Ge01)

Levels: In Jπ assignments from 99Tc(3He,d); 99Ru(d,p) and 101Ru(p,d), the target Jπ’s are: 9/2+ for 99Tc; 5/2+ for 99Ru and 101Ru

Q-value: S(2n)=17145 6, S(2p)=15689.4 4 (2017Wa10)










E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
      0.0ABCDEFGHIJKLM OPQRST 0+ STABLE      
    539.5103 20 ABCDEFGHIJKLM OPQRST 2+ 12.54 ps 10     539.509 2 
   100
E2
      0.0
0+
   1130.305 7 AB D  GHIJKLM  PQRST 0+ 8.2 ps +15-11     590.786 11 
  1130.3 3 
   100
 
E2
E0
    539.5103
      0.0
2+
0+
   1226.467 5  BC EFGHIJKLM OPQR T 4+ 2.6 ps 2     686.972 7 
   100
E2
    539.5103
2+
   1362.166 5 ABCD  GHIJKLM OPQRST 2+ 0.95 ps +24-16     822.646 9 
  1362.157 10 
   100.0 5 
    73.1 2 
E2+M1
E2
    539.5103
      0.0
2+
0+
   1741.011 8 AB D  GHIJK M  P R   0+ > 1.39 ps    378.90 5 
   610.48 10 
  1201.503 16 
  1740.6 2 
    75.4 13 
 
   100.0 11 
 
E2
E0
(E2)
E0
   1362.166
   1130.305
    539.5103
      0.0
2+
0+
2+
0+
   1828 2                 QR   0+        
   1865.110 5 AB D  GHIJK M  PQR   2+ 0.66 ps +20-12     502.905 23 
   638.631 20 
   734.798 7 
  1325.590 17 
  1865.06 6 
    14.1 5 
    18 3 
    77.6 9 
   100.0 7 
    95.9 12 
M1,E2
E2
E2
M1+E2
E2
   1362.166
   1226.467
   1130.305
    539.5103
      0.0
2+
4+
0+
2+
0+
   1881.043 5  BC   GHIJKLM  PQ    3+ 0.90 ps +40-22     518.881 8 
   654.574 6 
  1341.548 21 
    16.9 4 
    12.1 9 
   100.0 6 
M1+E2
M1+E2
M1+E2
   1362.166
   1226.467
    539.5103
2+
4+
2+
   2051.661 7 AB D  G IJ  M   QR   0+ 1.0 ps +11-4     689.491 5 
  1512.134 16 
    14.2 19 
   100.0 13 
[E2]
E2
   1362.166
    539.5103
2+
2+
   2062.651 7   C   GHIJKLM   QR   4+ 0.56 ps +92-22     700.51 5 
   836.181 4 
  1523.14 5 
    44.9 13 
    95 6 
   100.0 14 
E2
M1+E2
E2
   1362.166
   1226.467
    539.5103
2+
4+
2+
   2075.675 15   C EFGHIJ LM    R   6+ > 0.28 ps    849.22 2 
   100
E2
   1226.467
4+
   2099.103 6 AB    GHIJK M  PQR   2+ 0.39 ps +7-6     234.0 5 ?
   358.080 9 
   736.99 4 
   872.67 5 
   968.83 3 
  1559.54 3 
  2099.14 7 
     0.19 7 
     3.9 4 
    13.17 13 
     2.3 6 
     4.0 8 
   100.0 9 
     4.0 4 

[E2]
(M1,E2)
[E2]
[E2]
M1
[E2]
   1865.110
   1741.011
   1362.166
   1226.467
   1130.305
    539.5103
      0.0
2+
0+
2+
4+
0+
2+
0+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2131 10                P     2+,3+        
   2166.879 5  B    G IJKLMNO QR T 3- 34 ps +12-8     301.769 3 
   804.85 12 
   940.75 8 
  1627.36 3 
  2166.81 4 
    12.67 24 
     2.2 13 
     2.2 4 
   100.0 5 
     5.9 7 
(E1(+M2))
[E1]
[E1]
E1
(E3)
   1865.110
   1362.166
   1226.467
    539.5103
      0.0
2+
2+
4+
2+
0+
   2194 10 ?               P            
   2240.804 7 AB    G IJK M   QR   2+ 83 ps 6     375.686 8 
   499.8?
   878.55 9 
  1013.69 7 
  1110.66 11 ?
  1701.292 21 
  2240.1 5 ?
     3.1 15 
   ≈50
     2.4 3 
    25 3 
     8.3 21 
   100.0 3 
     0.7 6 

[E2]

[E2]
[E2]
(M1)
[E2]
   1865.110
   1741.011
   1362.166
   1226.467
   1130.305
    539.5103
      0.0
2+
0+
2+
4+
0+
2+
0+
   2268 5                P     2+,3+        
   2313.5 3   C                  (3-,4+)      951.5 5 
  1087.1 5 
  1773.8 5 
    24 14 
    33 14 
   100 14 



   1362.166
   1226.467
    539.5103
2+
4+
2+
   2324.6 4   C                  (3-:6+)      262.3 5 
  1097.8 5 
   100 16 
    24 8 


   2062.651
   1226.467
4+
4+
   2351.240 6       G IJK M   QR   4+ 0.42 ps +26-12     470.188 17 
   486.121 5 
  1124.770 8 
  1811.63 8 
     2.31 23 
     7.5 4 
   100.0 18 
    64.5 22 

[E2]
M1+E2
E2
   1881.043
   1865.110
   1226.467
    539.5103
3+
2+
4+
2+
   2366.588 7   C   G I K MNO QR T 4+ 0.78 ps +76-26     485.547 15 
  1139.91 6 
  1827.13 4 
     3.5 5 
    14.3 24 
   100.0 7 


E2
   1881.043
   1226.467
    539.5103
3+
4+
2+
   2387.22 7 AB D    I   M  PQR   0+ > 0.52 ps    288.81 10 ?
  1025.13 17 
  1847.68 7 
   360 60 
   100 2 
    78 4 
[E2]
[E2]
[E2]
   2099.103
   1362.166
    539.5103
2+
2+
2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2413.86 11       G IJK M   QR   (4+) 87 fs +7-6    1051.68 14 
  1874.38 17 
    14.1 23 
   100.0 5 
[E2]
(E2)
   1362.166
    539.5103
2+
2+
   2438 5                P     2+,3+        
   2469.389 5  B    G IJ  M    R   2- 0.44 ps +51-16     228.581 8 
   302.512 7 
   370.280 5 
   588.343 6 
   604.33 5 
  1107.222 14 
  1929.804 20 
  2469.328 22 
     1.07 1 
     5.34 11 
     5.54 6 
    36.9 4 
     1.70 8 
   100.0 10 
    85.2 8 
     1.08 8 
E1
M1+E2
E1
E1
E1
E1
E1
M2
   2240.804
   2166.879
   2099.103
   1881.043
   1865.110
   1362.166
    539.5103
      0.0
2+
3-
2+
3+
2+
2+
2+
0+
   2493.06 4       G I K M    R   (3,4,5+) > 0.83 ps    430.42 9 
   612.02 5 
   627.83 8 ?
  1266.46 14 
    45.5 18 
    18.9 18 
    56 7 
   100.0 20 



D(+Q)
   2062.651
   1881.043
   1865.110
   1226.467
4+
3+
2+
4+
   2512.411 11  B    G I K M  P     (4)+ 0.41 ps +55-15     345.518 12 
   413.42 7 
   450.04 19 
   631.382 20 
  1150.44 10 
  1285.82 15 
  1972.91 6 
     5.0 8 
    16.6 13 
     4.7 12 
   100.0 17 
    10 4 
    12.4 19 
    49 6 
[E1]
[E2]

M1+E2
[E2]

(E2)
   2166.879
   2099.103
   2062.651
   1881.043
   1362.166
   1226.467
    539.5103
3-
2+
4+
3+
2+
4+
2+
   2516.827 6  B      IJK M    R   1- 105 fs +43-26     349.960 16 
   465.148 17 
   651.708 10 
   775.832 11 
  1154.50 15 
  1386.51 6 
  1977.37 16 
  2516.86 5 
     6.71 23 
    27 3 
   100.0 10 
    20 6 
    52.3 5 
    78 16 
    51 9 
     5.08 16 
[E2]
[E1]
E1
[E1]
(E1)
(E1)
(E1)
[E1]
   2166.879
   2051.661
   1865.110
   1741.011
   1362.166
   1130.305
    539.5103
      0.0
3-
0+
2+
0+
2+
0+
2+
0+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2527.247 9     E G IJ LM    R   5- 0.6 ps +14-3     175.84 6 
   360.371 9 
   451.58 3 
   464.9 10 ?
  1300.780 19 
     2.08 18 
     6.0 6 
     1.36 12 
    14 7 
   100.0 9 
[E1]
E2
[E1]
[E1]
E1
   2351.240
   2166.879
   2075.675
   2062.651
   1226.467
4+
3-
6+
4+
4+
   2536.194 12  B    G I   M        3 0.7 ps +12-3     295.49 8 ?
   655.156 12 
   671.2 3 
  1173.99 9 
  1309.65 14 
  1996.62 3 
    32 5 
     8.9 6 
     1.8 4 
     5.6 11 
    11.4 6 
   100.0 6 





D(+Q)
   2240.804
   1881.043
   1865.110
   1362.166
   1226.467
    539.5103
2+
3+
2+
2+
4+
2+
   2543.71 3  B    G I K M  P R   2+ 0.38 ps +49-15     662.68 17 
   678.62 3 
  1181.42 7 
  1413.19 7 ?
  2004.31 9 
  2543.58 9 
    11.0 22 
    65 3 
   100.0 22 
    46 7 
    48 5 
    38 7 


M1+E2



   1881.043
   1865.110
   1362.166
   1130.305
    539.5103
      0.0
3+
2+
2+
0+
2+
0+
   2569.912 7  B    G IJ  M    R   (3)- > 0.30 ps    329.058 12 
   403.042 24 
   470.82 3 
   688.89 3 
  1207.68 6 
  1343.47 3 
  2030.55 8 
     1.44 21 
   100.0 19 
     3.2 4 
     3.9 3 
    61 13 
    56 4 
    10.6 14 

(M1+E2)





   2240.804
   2166.879
   2099.103
   1881.043
   1362.166
   1226.467
    539.5103
2+
3-
2+
3+
2+
4+
2+
   2576.872 15       G I   M        5(+) > 125 fs    695.783 21 
  1350.431 20 
    72 9 
   100.0 21 
(E2)
D+Q
   1881.043
   1226.467
3+
4+
   2591.817 6       G IJ  M        4- 0.26 ps +62-12     240.549 8 
   424.874 18 
   710.771 3 
  1229.46 12 ?
  1365.415 12 
  1461.19 14 ?
  2052.60 16 
     3.5 3 
    42.7 24 
   100.0 25 
     3.1 6 
    81 6 
     4.4 6 
     1.9 6 
[E1]
(M1+E2)
(E1(+M2))
[M2]
(E1(+M2))
[M4]
[M2]
   2351.240
   2166.879
   1881.043
   1362.166
   1226.467
   1130.305
    539.5103
4+
3-
3+
2+
4+
0+
2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2606.07 8         I K M  P R   (2,3) 71 fs +10-8    2066.52 8 
   100

    539.5103
2+
   2617.14 4  B      I   M  P     1,2+ 121 fs +26-19     752.0 3 
  1255.12 9 
  2617.09 5 
     6.8 14 
    35 15 
   100.0 17 



   1865.110
   1362.166
      0.0
2+
2+
0+
   2634 10                P     (0:5)+        
   2660.140 17 AB      I K M        1,2+ 48 fs +6-5     560.95 8 
  2120.59 7 
  2660.11 12 
    12.3 13 
   100.0 11 
    21.6 11 



   2099.103
    539.5103
      0.0
2+
2+
0+
   2660.82 4       G I K          5(+)      309.52 9 
   598.16 6 
   779.79 6 
  1434.28 19 
    11.1 12 
   <46
   100 3 
   104 18 


Q
(M1+E2)
   2351.240
   2062.651
   1881.043
   1226.467
4+
4+
3+
4+
   2666.29 3  B      IJK M    R   (2,3) 55 fs +6-5    1535.12 6 ?
  2126.86 7 
    63 7 
   100 13 


   1130.305
    539.5103
0+
2+
   2705.52 3       G   K    P R   6+      128.3 3 
   629.79 5 
   642.818 19 
  1479.143 22 
     1.9 4 
    26.0 11 
   100.0 15 
    68.0 11 

(M1+E2)
Q
Q
   2576.872
   2075.675
   2062.651
   1226.467
5(+)
6+
4+
4+
   2738.678 6        HI   M    R   (2+,3,4+)      372.090 4 
   387.436 3 
   676.071 21 
   857.621 12 
   873.66 5 
    45.2 23 
    50.3 17 
    67 6 
   100 12 
    48.6 23 





   2366.588
   2351.240
   2062.651
   1881.043
   1865.110
4+
4+
4+
3+
2+
   2745.60 5  B     H  K M        (1,2+) 132 fs +42-28     693.89 14 
   880.8 3 
  1615.29 5 
  2205.95 14 
    11 3 
    17 5 
   100.0 14 
    40.5 14 




   2051.661
   1865.110
   1130.305
    539.5103
0+
2+
0+
2+
   2747.495 10       GHIJK          4(-)      155.68 4 
   580.600 11 
   866.466 12 
   882.63 16 
  1520.69 8 
    32.5 25 
    44 16 
    39.4 18 
     1.8 5 
   100 5 
D
(M1+E2)


(D+Q)
   2591.817
   2166.879
   1881.043
   1865.110
   1226.467
4-
3-
3+
2+
4+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2764.943 18       GHIJK M  P R   2+,3+ > 0.17 ps    398.6 4 
   413.703 19 
   598.16 6 
   883.88 9 
   899.87 10 
  1538.33 7 
    33 11 
     8.8 6 
  <103
    13 3 
    13 3 
   100 3 






   2366.588
   2351.240
   2166.879
   1881.043
   1865.110
   1226.467
4+
4+
3-
3+
2+
4+
   2775.179 18       G     M        (5-)      247.943 17 
   712.76 13 
  1548.70 12 
   100.0 17 
    20 3 
   <20
(M1+E2)


   2527.247
   2062.651
   1226.467
5-
4+
4+
   2775.34 6  B    GHIJ  M  P     2+,3+ 0.30 ps +24-10    1413.18 7 
  1548.73 10 
  2236.09 17 
    63.2 16 
   <34
   100.0 25 



   1362.166
   1226.467
    539.5103
2+
4+
2+
   2785.193 22       G              6(+)      709.43 3 
   722.677 22 
  1558.80 8 
   100.0 22 
     6.7 11 
    41 4 
(M1+E2)
(Q)
Q
   2075.675
   2062.651
   1226.467
6+
4+
4+
   2800.84 5             M    R   (2+,3) 0.13 ps +5-3    1438.69 5 
  1574.24 11 
   100.0 13 
    45.4 13 
D(+Q)

   1362.166
   1226.467
2+
4+
   2801.48 5  B      IJK M    R   (1+,2,3) 97 fs +17-13     141.27 5 
   920.6 3 
  2262.26 11 
    46 8 
    19.8 7 
   100.0 7 


D+Q
   2660.140
   1881.043
    539.5103
1,2+
3+
2+
   2816 10                P     2+,3+        
   2832.8 17          J       R   0+        
   2837.71 12 A       I K M        (1+,2+) 116 fs +21-17    1475.67 19 
  2298.22 20 
     9.3 6 
   100.0 6 

D+Q
   1362.166
    539.5103
2+
2+
   2862.52 9         I   M        (0+:4+) 0.25 ps +51-10     763.33 17 
  1500.38 10 
    14 3 
   100 3 


   2099.103
   1362.166
2+
2+
   2877.57 8       G IJK M  P     2+,3+      996.56 15 
  1515.41 20 
  2337.98 22 ?
    97 10 
   100 7 
 
(D(+Q))


   1881.043
   1362.166
    539.5103
3+
2+
2+
   2878.44 4             M        2+,3,4+ 140 fs +30-21     779.54 10 
   997.41 5 
  1651.89 5 
    21.6 10 
    72.6 14 
   100.0 18 



   2099.103
   1881.043
   1226.467
2+
3+
4+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2890 10                P     2+,3+        
   2905.14 20         I K M    R   (4+) 0.21 ps +8-5    2365.50 25 
   100
(E2)
    539.5103
2+
   2911.47 3       G   K          5(-)      384.22 3 
   544.91 14 
  1685.30 24 
    89 4 
   100 19 
    89 15 
D+Q


   2527.247
   2366.588
   1226.467
5-
4+
4+
   2915.545 5  B      IJ  M        2- 0.35 ps +29-11     249.25 3 
   255.417 17 
   298.55 11 
   345.654 8 
   379.24 5 
   398.716 6 
   403.07 11 ?
   446.153 5 
   748.666 7 
   816.454 16 
  1034.510 8 
  1553.348 10 
  2375.976 16 
  2915.42 7 
     0.0373 15 
     0.0519 12 
     0.0148 22 
     0.243 4 
     0.16 3 
     0.429 5 
     0.22 7 
    36.7 4 
     2.77 3 
     1.146 12 
     4.74 5 
    63.3 6 
   100.0 10 
     0.22 7 






[M2]
M1(+E2)
M1,E2
(E1+M2)
(E1)
E1
E1
[M2]
   2666.29
   2660.140
   2617.14
   2569.912
   2536.194
   2516.827
   2512.411
   2469.389
   2166.879
   2099.103
   1881.043
   1362.166
    539.5103
      0.0
(2,3)
1,2+
1,2+
(3)-
3
1-
(4)+
2-
3-
2+
3+
2+
2+
0+
   2933.65 10 AB             P     (1,2)+     2933.60 10 
   100

      0.0
0+
   2951.10 8           K M        2+,3,4+ 87 fs +14-10    1589.1 3 
  1724.62 8 
  2411.41 21 
    14.2 15 
   100.0 22 
    70.6 24 



   1362.166
   1226.467
    539.5103
2+
4+
2+
   2951.552 13     E G    L         7-      166.38 15 
   245.97 8 
   424.318 14 
   876.26 24 
     0.19 6 
     0.84 6 
    16.7 11 
   100.0 8 


(E2)
E1
   2785.193
   2705.52
   2527.247
   2075.675
6(+)
6+
5-
6+
   2963.626 13     E G    L         6-      188
   371.774 19 
   436.352 18 
   887.43 24 
 
    28.0 5 
   <38
   100.0 14 

E2
(M1+E2)
E1(+M2)
   2775.179
   2591.817
   2527.247
   2075.675
(5-)
4-
5-
6+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2967.57 3       G              6(+)      262.08 3 
   891.67 8 
   904.80 5 
  1741.24 7 
    34.1 11 
    61 3 
   100 5 
    43.2 23 
(D(+Q))
(M1+E2)

Q
   2705.52
   2075.675
   2062.651
   1226.467
6+
6+
4+
4+
   2983.04 7         IJ     P     (0:4)+     2444.25 8 ?
   100

    539.5103
2+
   2999.32 11         I K M        (0+:4+) 0.18 ps +10-5    2459.39 24 
   100

    539.5103
2+
   3016.77 16         IJ                  
   3034.0 4         I K                 
   3058.1 10          J     P     (2,3,4)        
   3060.051 17     EFGH  KL         8+      984.81 22 
   100
E2
   2075.675
6+
   3060.14 5  B        K M  P     1,2+ 11 fs 3    1698.32 24 
  2520.56 5 
  3060.20 11 
    21 3 
    28.6 9 
   100.0 17 



   1362.166
    539.5103
      0.0
2+
2+
0+
   3064.61 7         I K M        4+ 37 fs +10-7    2525.26 17 
   100
E2
    539.5103
2+
   3069.525 6  B      IJK M        (1,2)- > 0.45 ps    154.007 10 
   409.18 8 
   499.599 7 
   533.52 7 
   552.706 8 
   600.124 6 
   828.70 4 
   902.673 19 
  1204.46 5 
  1707.44 6 
  2529.969 20 
  3069.44 16 
     1.03 3 
     0.26 3 
     4.41 6 
     3.5 6 
     4.31 4 
     9.20 9 
     0.48 8 
     3.75 16 
     1.16 8 
     6.61 9 
   100.0 8 
     0.09 9 


M1,E2
[E1]

M1,E2
[E1]

[E1]
[E1]
D+Q
[M2]
   2915.545
   2660.140
   2569.912
   2536.194
   2516.827
   2469.389
   2240.804
   2166.879
   1865.110
   1362.166
    539.5103
      0.0
2-
1,2+
(3)-
3
1-
2-
2+
3-
2+
2+
2+
0+
   3072.268 19  B          M  P     2+ 0.20 ps +14-6     555.42 4 
   602.91 4 
   831.272 19 ?
   905.60 21 
   973.15 4 
  1191.16 4 
  1207.50 3 
  1710.07 3 
  3071.80 12 
     7.6 4 
    17 3 
    23.8 6 
    24.1 21 
    12.7 11 
    15.1 10 
    12 3 
   100.0 21 
    14.6 9 
[E1]
[E1]

[E1]




[E2]
   2516.827
   2469.389
   2240.804
   2166.879
   2099.103
   1881.043
   1865.110
   1362.166
      0.0
1-
2-
2+
3-
2+
3+
2+
2+
0+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   3102 4           K                 
   3110.57 11       G IJ  M  P     (2+,3+) > 0.26 ps    943.70 16 
   100
[E1]
   2166.879
3-
   3118.67 13         I   M  P     (0+:4+) 37 ps +8-6    1756.21 21 
  2579.28 16 
    34.1 22 
   100.0 22 


   1362.166
    539.5103
2+
2+
   3139.303 14     E G    L         7-      175.55 6 
   187.759 13 
   228.1 5 
   354.09 4 
   612.057 18 
  1063.8 4 
     5.3 8 
    54 4 
     2.0 12 
     9.4 4 
   100.0 17 
    37.3 8 

(D+Q)

D(+Q)
E2
D(+Q)
   2963.626
   2951.552
   2911.47
   2785.193
   2527.247
   2075.675
6-
7-
5(-)
6(+)
5-
6+
   3177.07 23         I      P     2+,3+        
   3218.111 23       G              (8)-      254.486 19 
   100
E2
   2963.626
6-
   3231.79 17         I                   
   3263.664 18     EFG    L         8(+)      203.590 24 
   478.467 22 
   557.98 3 
  1188.012 20 
    79.0 25 
    52.2 13 
    34.4 6 
   100.0 13 
D
Q
Q
Q
   3060.051
   2785.193
   2705.52
   2075.675
8+
6(+)
6+
6+
   3266.3 3        HI      P     (0:5)+        
   3272.1 3         I      P            
   3300.62 8         IJ     P     2+,3+        
   3308.08 14         I                   
   3323.70 5  B                   (1,2+)      806.93 6 
   854.32 6 
  1224.63 13 
  1272.01 11 
  2193.40 4 
  2784.29 5 
  3323.91 22 
     9.7 10 
     7.57 10 
     6.9 10 
     5.6 10 
     9.1 9 
   100.0 10 
     5.2 3 





D+Q

   2516.827
   2469.389
   2099.103
   2051.661
   1130.305
    539.5103
      0.0
1-
2-
2+
0+
0+
2+
0+
   3326.27 8         IJ                  
   3332.40 6         IJ                  
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   3348.13 6         IJ                  
   3354.637 14     E G    L         8-       91.7 10 ?
   215.48 3 
   294.61 3 
   390.981 14 
   403.092 15 
     2.4 7 
     9.3 5 
     8.83 24 
   100.0 10 
   <35


D(+Q)
E2
E2+M1
   3263.664
   3139.303
   3060.051
   2963.626
   2951.552
8(+)
7-
8+
6-
7-
   3368.982 21       G              (7-)      229.69 5 
   405.5 5 
   417.407 20 
   593.93 5 
    14.7 9 
     4.6 28 
   100.0 18 
    29.4 18 
(D(+Q))

(M1+E2)

   3139.303
   2963.626
   2951.552
   2775.179
7-
6-
7-
(5-)
   3375.01 13         IJ                  
   3419.13 17  B      IJ     P     (2+)     2879.43 20 
  3419.4 3 
    38 4 
   100 6 


    539.5103
      0.0
2+
0+
   3441 10                P     2+,3+        
   3446.56 6       G              7(+)      785.70 20 
   869.69 16 
  1370.95 9 
    39 7 
   100 17 
    83 4 

Q
D+Q
   2660.82
   2576.872
   2075.675
5(+)
5(+)
6+
   3460.4 15          J                  
   3463.43 12  B      IJ           (1+,2)      140.03 3 
  1582.9 5 
  3464.8 5 
   100 10 
    96 58 
    98 15 



   3323.70
   1881.043
      0.0
(1,2+)
3+
0+
   3503.365 15     E G    L         9-      148.720 14 
   239.74 5 
   364.055 15 
   443.317 16 
   551.883 17 
    25.0 11 
     6.0 4 
    55.6 11 
    75.8 11 
   100.0 11 
(M1+E2)

E2
E1(+M2)
E2
   3354.637
   3263.664
   3139.303
   3060.051
   2951.552
8-
8(+)
7-
8+
7-
   3517 10                P     2+,3+        
   3550.10 3       G              8(+)      490.05 4 
   765.04 6 
   844.47 7 
  1474.37 7 
    30.7 11 
    24.7 11 
   100 11 
    22.6 11 
(Q)
Q

Q
   3060.051
   2785.193
   2705.52
   2075.675
8+
6(+)
6+
6+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   3575.51 3     E G    L         9-      436.352 18 
   515.47 5 
   623.933 14 
   <30
    11.6 11 
   100.0 9 

D(+Q)
E2
   3139.303
   3060.051
   2951.552
7-
8+
7-
   3576.43 6       G              7(+)      129.94 10 
   312.62 15 
   608.9 5 
   870.99 21 
   999.54 7 
     7.1 18 
    20 4 
     9 5 
    68 18 
   100 5 



D+Q
Q
   3446.56
   3263.664
   2967.57
   2705.52
   2576.872
7(+)
8(+)
6(+)
6+
5(+)
   3585 10                P     2+,3+        
   3599.301 23       G              (8-)      244.41 13 
   381.21 18 
   460.01 7 
   647.752 20 
     4.5 7 
     5.2 7 
    14.8 13 
   100.0 19 
(D(+Q))

D+Q
D+Q
   3354.637
   3218.111
   3139.303
   2951.552
8-
(8)-
7-
7-
   3608 10                P     2+,3+        
   3609.96 8       G              7(+)      948.98 11 
  1534.40 10 
    35.4 21 
   100 4 
Q
D+Q
   2660.82
   2075.675
5(+)
6+
   3661.48 13       G              (4,5,6)      886.5 5 
  1134.21 13 
    33 20 
   100 7 

D+Q
   2775.179
   2527.247
(5-)
5-
   3693 10                P     (0:5)+        
   3731.88 13          J                  
   3779.72 13         IJ     P     (1:4)+        
   3851.5 4       G              (4+,5,6,7+)      883.8 5 
  1274.7 5 
   100 20 
   100 20 


   2967.57
   2576.872
6(+)
5(+)
   3877.75 17         IJ     P     2+,3+        
   3883.0 3         IJ                  
   3929.64 6       G              (8+)      666.15 10 
   961.93 8 
    36 5 
   100 7 

Q
   3263.664
   2967.57
8(+)
6(+)
   3960.36 4       G              (9-)      605.72 4 
   742.27 9 
   100 3 
    80 6 

D+Q
   3354.637
   3218.111
8-
(8)-
   3973.6 5         IJ           (0+:5+)        
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   3983.0 7         IJ           (1+:4+)        
   3992.13 5     E G    L         10-      416.8 3 
   488.671 20 
   637.47 7 
     1.8 11 
    54.3 7 
   100 6 

E2+M1
E2
   3575.51
   3503.365
   3354.637
9-
9-
8-
   4000.70 20         IJ                  
   4049.5 12          J                  
   4075.93 11       G              (8,9-)      477.1 5 
   572.41 13 
   936.94 21 
    26 16 
    53 5 
   100 16 

D(+Q)

   3599.301
   3503.365
   3139.303
(8-)
9-
7-
   4083.30 4     EFG    L         10+      819.63 13 
  1023.75 25 
     6.9 8 
   100.0 10 

E2
   3263.664
   3060.051
8(+)
8+
   4091.5 14          J                  
   4097.38 6       G              (9-)      521.86 5 
   728.48 19 
   100 6 
    29 6 
D+Q

   3575.51
   3368.982
9-
(7-)
   4102.9 11          J                  
   4148.6 20          J                  
   4187.6 3         IJ           (1+:4+)        
   4230.56 6     E G    L         11-      238.351 16 
   727.34 3 
    35.4 7 
   100.0 14 
D+Q
E2
   3992.13
   3503.365
10-
9-
   4235.82 5       G              (10-)      636.54 15 
   660.34 11 
   732.46 5 
   100 31 
    17.9 25 
    53.7 25 
(Q)

D+Q
   3599.301
   3575.51
   3503.365
(8-)
9-
9-
   4235.84 3     E G              10(+)      152.56 4 
   972.13 9 
  1175.776 23 
     7.6 6 
    43.3 23 
   100.0 12 
(D(+Q))
(Q)
Q
   4083.30
   3263.664
   3060.051
10+
8(+)
8+
   4248.49 7       G              (7-,8,9)      673.05 8 
   893.77 9 
    54 4 
   100 9 

D+Q
   3575.51
   3354.637
9-
8-
   4257.1 3         IJ                  
   4273.5 16          J                  
   4307.4 10          J                  
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   4315.73 4     E G    L         11-      740.222 19 
   812.39 8 
   100.0 13 
    10.5 9 
E2

   3575.51
   3503.365
9-
9-
   4337.6 18          J                  
   4343.44 8       G              9(+)      896.79 8 
  1079.98 13 
   100 8 
    45 5 
Q
D+Q
   3446.56
   3263.664
7(+)
8(+)
   4353.36 4     EFG              (10+)      270.08 8 
   803.26 6 
  1293.30 4 
     5.8 7 
    20.7 13 
   100.0 19 

(Q)

   4083.30
   3550.10
   3060.051
10+
8(+)
8+
   4366.4 18          J           (1+:4+)        
   4376.1 11          J                  
   4381.83 8       G              (7,8,9+)      935.37 9 
  1117.99 11 
   100 6 
    65 6 

D+Q
   3446.56
   3263.664
7(+)
8(+)
   4403.6 12          J                  
   4408.63 8       G              (9-,10-)      178.05 9 
  1054.01 11 
    12.7 18 
   100 9 


   4230.56
   3354.637
11-
8-
   4503.48 4       G              (10+)      419.92 16 
   953.38 3 
    18 3 
   100 3 

(Q)
   4083.30
   3550.10
10+
8(+)
   4519.6 9          J                  
   4530 3          J                  
   4543.7 18          J                  
   4585.6 12          J                  
   4601.2 12          J                  
   4650.7 20          J                  
   4663.44 7       G              (11-)      433.00 15 
   565.7 7 
  1160.05 7 
    26 5 
    13 11 
   100 5 


(Q)
   4230.56
   4097.38
   3503.365
11-
(9-)
9-
   4791.59 5       G              (8+,9,10+)      288.08 11 
   438.4 3 
   555.69 6 
   708.5 5 
   861.93 10 
  1731.7 3 
    22 3 
    25 6 
    81 3 
    16 9 
   100 9 
    25 3 






   4503.48
   4353.36
   4235.84
   4083.30
   3929.64
   3060.051
(10+)
(10+)
10(+)
10+
(8+)
8+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   4798.15 5     E G    L         12(-)      567.46 9 
   806.021 20 
    20 2 
   100 2 

(E2)
   4230.56
   3992.13
11-
10-
   4818.58 6       G              (10+)      465.33 15 
   582.82 8 
    35 4 
   100 9 

(D+Q)
   4353.36
   4235.84
(10+)
10(+)
   4917.97 13     EFG    L         12+      564.54 15 
   681.5 5 
   688.2
   834.95 25 
    25 4 
    29 7 
 
   100 6 

Q

E2
   4353.36
   4235.84
   4230.56
   4083.30
(10+)
10(+)
11-
10+
   5010.49 6       G              (8+,9,10,11)      191.93 3 
   218.87 4 
   774.4 3 
   927.6 5 
   100 4 
    96 4 
    64 14 
    18 11 

D+Q


   4818.58
   4791.59
   4235.84
   4083.30
(10+)
(8+,9,10+)
10(+)
10+
   5066.19 6       G              (12-)      750.8 5 
   830.39 4 
   835.20 20 
    10 6 
   100 4 
     9.8 20 



   4315.73
   4235.82
   4230.56
11-
(10-)
11-
   5126.3 10       G    L         (12+)     1043.0 10 
   100

   4083.30
10+
   5162.52 13     E G    L         13-      846.73 14 
   932.2 3 
   106 6 
   100 2 

E2
   4315.73
   4230.56
11-
11-
   5274.67 12     E G    L         (13-)      959.06 13 
  1043.80 20 
   100 9 
    75 16 
(E2)
Q
   4315.73
   4230.56
11-
11-
   5307.2 5     E                (12+)     1223.9 5 
   100

   4083.30
10+
   5713.31 14     EFG    L         14+      795.34 6 
   100
E2
   4917.97
12+
   5784.4 3     E                (14-)      986.2 3 
   100

   4798.15
12(-)
   6167.2 4     E                (15-)     1004.7 3 
   100
Q
   5162.52
13-
   6283.7 6     E                (15-)     1009.0 5 
   100

   5274.67
(13-)
   6365.2 7     E                (14+)     1058.0 5 
   100

   5307.2
(12+)
   6714.81 18     EF               16+     1001.5 1 
   100
E2
   5713.31
14+
   6885.1 6     E                (16-)     1100.7 5 
   100

   5784.4
(14-)
   7203.7 5     E      L         (17-)     1036.5 3 
   100
(E2)
   6167.2
(15-)
   7408.6 9     E                (16+)     1043.4 5 
   100

   6365.2
(14+)
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   7827.02 20     EF               18+     1112.2 1 
   100
E2
   6714.81
16+
   8018.2 8     E                (18-)     1133.1 5 
   100

   6885.1
(16-)
   8450.6 10     E                (18+)     1042.0 5 
   100

   7408.6
(16+)
   8458.7 7     E                (19-)     1255.0 5 
   100

   7203.7
(17-)
   9057.73 23     EF               20+     1230.7 1 
   100
E2
   7827.02
18+
   9178.8 10     E                (20-)     1160.6 5 
   100

   8018.2
(18-)
   9673.32 3 S        I            2+,3+     5416.1 3 
  5485.6 3 
  5672.46 19 
  5690.2 7 
  5699.6 5 
  5790.2 3 
  5795.41 16 
  5893.43 12 
  5941.27 12 
  6210.36 4 
  6254.6 7 ?
  6298.11 12 
  6324.99 5 
  6340.72 5 
  6346.85 7 
  6365.04 13 
  6372.50 7 
  6401.0 3 
  6406.8 3 
  6441.32 16 
  6496.04 23 
  6554.4 4 
  6562.55 14 
  6602.37 7 
  6608.53 7 
  6639.1 4 
  6656.33 15 
  6673.70 11 
  6690.06 6 
  6757.2 3 
  6767.8 3 
  6795.54 9 
  6811.1 6 
  6835.56 19 
  6871.62 20 
  6898.24 18 ?
  6908.29 15 
  6926.00 18 
  6934.0 5 
  7007.05 9 
  7013.4 5 
  7056.4 6 
  7066.7 3 
  7081.30 15 
  7103.14 5 
  7129.65 26 
  7136.6 5 
  7160.66 19 
  7180.00 9 
  7203.40 9 
  7259.6 5 
  7306.28 9 
  7432.2 8 
  7506.16 6 
  7574.00 16 
  7610.29 7 
  7791.80 9 
  7807.96 11 
  8310.78 7 
  8446.57 8 
  8543.8 5 ?
  9133.21 8 
  9673.4 3 
     7.1 13 
     5.9 10 
     4.5 7 
     3.4 9 
     8.1 18 
     4.6 8 
     9.4 15 
    40 7 
    30 5 
    70 3 
     3.3 9 
    38 6 
    39.6 10 
   100 3 
    31.9 12 
    10.4 7 
    29.4 11 
     3.8 6 
     3.3 5 
     6.9 7 
     4.3 5 
     2.2 4 
     8.9 7 
    21.3 7 
    24.7 10 
     2.0 4 
     7.3 6 
    11.5 7 
    51.6 16 
     5.7 10 
     3.4 5 
    18.2 9 
     1.3 4 
     4.9 5 
     4.8 5 
    32 5 
     7.1 6 
     5.6 5 
     1.6 4 
    16.3 8 
     1.9 4 
     1.3 4 
    10.2 7 
     6.9 6 
    90.8 22 
     3.6 5 
     1.9 4 
     5.3 5 
    15.9 8 
    16.4 8 
     1.7 4 
    15.8 8 
     0.9 4 
    56.2 17 
     6.2 5 
    41.6 14 
    11.5 5 
     7.2 4 
    17.9 6 
    16.2 6 
     0.6 2 
    16.8 4 
     0.5 1 































































   4257.1
   4187.6
   4000.70
   3983.0
   3973.6
   3883.0
   3877.75
   3779.72
   3731.88
   3463.43
   3419.13
   3375.01
   3348.13
   3332.40
   3326.27
   3308.08
   3300.62
   3272.1
   3266.3
   3231.79
   3177.07
   3118.67
   3110.57
   3069.525
   3064.61
   3034.0
   3016.77
   2999.32
   2983.04
   2915.545
   2905.14
   2877.57
   2862.52
   2837.71
   2801.48
   2775.179
   2764.943
   2747.495
   2738.678
   2666.29
   2660.82
   2617.14
   2606.07
   2591.817
   2569.912
   2543.71
   2536.194
   2512.411
   2493.06
   2469.389
   2413.86
   2366.588
   2240.804
   2166.879
   2099.103
   2062.651
   1881.043
   1865.110
   1362.166
   1226.467
   1130.305
    539.5103
      0.0

(1+:4+)

(1+:4+)
(0+:5+)

2+,3+
(1:4)+

(1+,2)
(2+)





2+,3+

(0:5)+

2+,3+
(0+:4+)
(2+,3+)
(1,2)-
4+


(0+:4+)
(0:4)+
2-
(4+)
2+,3+
(0+:4+)
(1+,2+)
(1+,2,3)
(5-)
2+,3+
4(-)
(2+,3,4+)
(2,3)
5(+)
1,2+
(2,3)
4-
(3)-
2+
3
(4)+
(3,4,5+)
2-
(4+)
4+
2+
3-
2+
4+
3+
2+
2+
4+
0+
2+
0+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   9673.33 3 S         J           3(+)     5021.6 18 
  5071.5 10 
  5087.1 10 
  5129.0 16 
  5142.6 28 
  5153.2 7 
  5269.1 10 
  5296.6 9 
  5306.3 16 
  5336.8 16 
  5365.3 8 
  5399.2 14 
  5416.1 10 
  5486.8 21 
  5581.2 12 
  5673.6 5 
  5688.3 5 
  5700.4 19 
  5797.0 11 
  5894.2 21 
  5942.4 7 
  6206.3 5 
  6212.3 13 
  6296.1 17 
  6325.2 12 
  6340.2 21 
  6346.8 15 
  6371.6 21 
  6562.2 5 
  6602.3 9 
  6654.4 5 
  6689.9 8 
  6795.3 6 
  6899.6 19 
  7080.0 4 
  7102.7 21 
  7202.3 12 
  7504.5 4 
  7574.9 5 
  7611.0 15 
  7806.0 10 
  8308.5 15 
  8444.7 5 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 











































   4650.7
   4601.2
   4585.6
   4543.7
   4530
   4519.6
   4403.6
   4376.1
   4366.4
   4337.6
   4307.4
   4273.5
   4257.1
   4187.6
   4091.5
   4000.70
   3983.0
   3973.6
   3877.75
   3779.72
   3731.88
   3463.43
   3460.4
   3375.01
   3348.13
   3332.40
   3326.27
   3300.62
   3110.57
   3069.525
   3016.77
   2983.04
   2877.57
   2775.34
   2591.817
   2569.912
   2469.389
   2166.879
   2099.103
   2062.651
   1865.110
   1362.166
   1226.467








(1+:4+)




(1+:4+)


(1+:4+)
(0+:5+)
2+,3+
(1:4)+

(1+,2)





2+,3+
(2+,3+)
(1,2)-

(0:4)+
2+,3+
2+,3+
4-
(3)-
2-
3-
2+
4+
2+
2+
4+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   9673.35 3 S         J           3(+)     5021.6 18 
  5129.0 16 
  5142.6 28 
  5296.6 9 
  5336.8 16 
  5365.3 8 
  5399.2 14 
  5416.1 10 
  5523.6 22 
  5570.8 9 
  5581.2 12 
  5673.6 5 
  5688.3 5 
  5700.4 19 
  5791.8 5 
  5894.2 21 
  5942.4 7 
  6212.3 13 
  6296.1 17 
  6325.2 12 
  6340.2 21 
  6371.6 21 
  6562.2 5 
  6602.3 9 
  6689.9 8 
  6755.5 6 
  6839.9 15 
  6870.2 15 
  6899.6 19 
  6908.2 17 
  6925.5 6 
  7005.5 7 
  7102.7 21 
  7158.1 24 
  7504.5 4 
  7574.9 5 
  7611.0 15 
  7624.4 15 
  7790.8 5 
  8308.5 15 
  8447.7 5 
  9135.9 13 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 










































   4650.7
   4543.7
   4530
   4376.1
   4337.6
   4307.4
   4273.5
   4257.1
   4148.6
   4102.9
   4091.5
   4000.70
   3983.0
   3973.6
   3883.0
   3779.72
   3731.88
   3460.4
   3375.01
   3348.13
   3332.40
   3300.62
   3110.57
   3069.525
   2983.04
   2915.545
   2832.8
   2801.48
   2775.34
   2764.943
   2747.495
   2666.29
   2569.912
   2516.827
   2166.879
   2099.103
   2062.651
   2051.661
   1881.043
   1362.166
   1226.467
    539.5103












(1+:4+)
(0+:5+)

(1:4)+





2+,3+
(2+,3+)
(1,2)-
(0:4)+
2-
0+
(1+,2,3)
2+,3+
2+,3+
4(-)
(2,3)
(3)-
1-
3-
2+
4+
0+
3+
2+
4+
2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   9673.38 3 S         J           3(+)     5021.6 18 
  5129.0 16 
  5153.2 7 
  5269.1 10 
  5523.6 22 
  5623.2 10 
  5688.3 5 
  5791.8 5 
  5797.0 11 
  5894.2 21 
  6206.3 5 
  6296.1 17 
  6346.8 15 
  6371.6 21 
  6562.2 5 
  6614.6 8 
  6755.5 6 
  6839.9 15 
  6870.2 15 
  6908.2 17 
  7080.0 4 
  7158.1 24 
  7202.3 12 
  7504.5 4 
  7574.9 5 
  7790.8 5 
  7806.0 10 
  8444.7 5 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 




























   4650.7
   4543.7
   4519.6
   4403.6
   4148.6
   4049.5
   3983.0
   3883.0
   3877.75
   3779.72
   3463.43
   3375.01
   3326.27
   3300.62
   3110.57
   3058.1
   2915.545
   2832.8
   2801.48
   2764.943
   2591.817
   2516.827
   2469.389
   2166.879
   2099.103
   1881.043
   1865.110
   1226.467






(1+:4+)

2+,3+
(1:4)+
(1+,2)


2+,3+
(2+,3+)
(2,3,4)
2-
0+
(1+,2,3)
2+,3+
4-
1-
2-
3-
2+
3+
2+
4+
   9673.40 3 S         J           2(+)     5306.3 16 
  5486.8 21 
  5688.3 5 
  5700.4 19 
  5894.2 21 
  6602.3 9 
  6614.6 8 
  7102.7 21 
  7624.4 15 
  7790.8 5 
 
 
 
 
 
 
 
 
 
 










   4366.4
   4187.6
   3983.0
   3973.6
   3779.72
   3069.525
   3058.1
   2569.912
   2051.661
   1881.043
(1+:4+)
(1+:4+)
(1+:4+)
(0+:5+)
(1:4)+
(1,2)-
(2,3,4)
(3)-
0+
3+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   9763.42 3 S         J           3(+)     6252 2 
 

   3517
2+,3+
   9796.7 9     E                (21-)     1338.0 5 
   100

   8458.7
(19-)
  10378.14 25     EF               22+     1320.4 1 
   100
E2
   9057.73
20+
  10403.3 11     E                (22-)     1224.5 5 
   100

   9178.8
(20-)
  11738.5 3     EF               24(+)     1360.4 1 
   100
(E2)
  10378.14
22+
  11746.3 12     E                (24-)     1343.0 5 
   100

  10403.3
(22-)
  13170.0 3     EF               26(+)     1431.4 1 
   100
E2
  11738.5
24(+)
  13309.3 13     E                (26-)     1563.0 5 
   100

  11746.3
(24-)
  14738.2 4     EF               28(+)     1568.2 3 
   100
E2
  13170.0
26(+)
  14933.3 14     E                (28-)     1624.0 5 
   100

  13309.3
(26-)
  14938.1 5     E                (28+)     1768.1 5 
   100
Q
  13170.0
26(+)
  16105.8 5     E                (30+)     1167.7 5 
  1367.6 5 
    60 20 
   100 20 
Q

  14938.1
  14738.2
(28+)
28(+)
  16648.4 6     E                (30+)     1910.2 5 
   100
Q
  14738.2
28(+)
  17740.7 6     E                (32+)     1092.3 5 
  1634.9 5 
   100 33 
   100 33 
Q
Q
  16648.4
  16105.8
(30+)
(30+)
  20197.7 8     E                    2457.0 5 
   100

  17740.7
(32+)

E(level): From least-squares fit to Eγ data for levels seen in γ-ray studies. In other cases weighted averages of available level energies are taken. About 31 γ rays amongst a total of about 450 γ rays are outside 3 times the quoted standard deviation, resulting in a reduced χ2/n=5.7, much greater than the critical value=1.2. This indicates either low uncertainties for some of the γ rays or some systematic deviations in one or more datasets. So in the fitting procedure to reduce χ2, the uncertainties of poor-fit γ rays are increased by factors as noted for those γ rays in the γ-ray table, resulting χ2/n=1.8.

Jπ(level): For high-spin states (J|>6), in using arguments based on available experimental data, it is assumed that the spin values increase as the excitation energy rises in reactions of the type: (HI,xnγ). This assumption is generally supported by the decay modes

T1/2(level): From Doppler-shift attenuation method (DSAM) in (n,n’γ) (2001Ge03), unless otherwise stated.

Back to top

Band Transitions:

E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
Band 1 - g.s. band
      0.0 0+ STABLE      
    539.5103 20  2+ 12.54 ps 10     539.509 2 
   100
E2
      0.0
0+
   1226.467 5  4+ 2.6 ps 2     686.972 7 
   100
E2
    539.5103
2+
   2075.675 15  6+ > 0.28 ps    849.22 2 
   100
E2
   1226.467
4+
   3060.051 17  8+      984.81 22 
   100
E2
   2075.675
6+
   4235.84 3  10(+)      152.56 4 
   972.13 9 
  1175.776 23 
     7.6 6 
    43.3 23 
   100.0 12 
(D(+Q))
(Q)
Q
   4083.30
   3263.664
   3060.051
10+
8(+)
8+
E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
Band 2 - Quasi-γ band
   1362.166 5  2+ 0.95 ps +24-16       
   1881.043 5  3+ 0.90 ps +40-22     518.881 8 
   654.574 6 
  1341.548 21 
    16.9 4 
    12.1 9 
   100.0 6 
M1+E2
M1+E2
M1+E2
   1362.166
   1226.467
    539.5103
2+
4+
2+
   2062.651 7  4+ 0.56 ps +92-22     700.51 5 
   836.181 4 
  1523.14 5 
    44.9 13 
    95 6 
   100.0 14 
E2
M1+E2
E2
   1362.166
   1226.467
    539.5103
2+
4+
2+
   2576.872 15  5(+) > 125 fs    695.783 21 
  1350.431 20 
    72 9 
   100.0 21 
(E2)
D+Q
   1881.043
   1226.467
3+
4+
   2705.52 3  6+      128.3 3 
   629.79 5 
   642.818 19 
  1479.143 22 
     1.9 4 
    26.0 11 
   100.0 15 
    68.0 11 

(M1+E2)
Q
Q
   2576.872
   2075.675
   2062.651
   1226.467
5(+)
6+
4+
4+
   3446.56 6  7(+)      785.70 20 
   869.69 16 
  1370.95 9 
    39 7 
   100 17 
    83 4 

Q
D+Q
   2660.82
   2576.872
   2075.675
5(+)
5(+)
6+
   3550.10 3  8(+)        
   4343.44 8  9(+)      896.79 8 
  1079.98 13 
   100 8 
    45 5 
Q
D+Q
   3446.56
   3263.664
7(+)
8(+)
E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
Band 3 - 2- band,
   2469.389 5  2- 0.44 ps +51-16       
   2569.912 7  (3)- > 0.30 ps    329.058 12 
   403.042 24 
   470.82 3 
   688.89 3 
  1207.68 6 
  1343.47 3 
  2030.55 8 
     1.44 21 
   100.0 19 
     3.2 4 
     3.9 3 
    61 13 
    56 4 
    10.6 14 

(M1+E2)





   2240.804
   2166.879
   2099.103
   1881.043
   1362.166
   1226.467
    539.5103
2+
3-
2+
3+
2+
4+
2+
   2747.495 10  4(-)      155.68 4 
   580.600 11 
   866.466 12 
   882.63 16 
  1520.69 8 
    32.5 25 
    44 16 
    39.4 18 
     1.8 5 
   100 5 
D
(M1+E2)


(D+Q)
   2591.817
   2166.879
   1881.043
   1865.110
   1226.467
4-
3-
3+
2+
4+
   2911.47 3  5(-)      384.22 3 
   544.91 14 
  1685.30 24 
    89 4 
   100 19 
    89 15 
D+Q


   2527.247
   2366.588
   1226.467
5-
4+
4+
   3368.982 21  (7-)      229.69 5 
   405.5 5 
   417.407 20 
   593.93 5 
    14.7 9 
     4.6 28 
   100.0 18 
    29.4 18 
(D(+Q))

(M1+E2)

   3139.303
   2963.626
   2951.552
   2775.179
7-
6-
7-
(5-)
   3599.301 23  (8-)      244.41 13 
   381.21 18 
   460.01 7 
   647.752 20 
     4.5 7 
     5.2 7 
    14.8 13 
   100.0 19 
(D(+Q))

D+Q
D+Q
   3354.637
   3218.111
   3139.303
   2951.552
8-
(8)-
7-
7-
   3960.36 4  (9-)        
   4235.82 5  (10-)      636.54 15 
   660.34 11 
   732.46 5 
   100 31 
    17.9 25 
    53.7 25 
(Q)

D+Q
   3599.301
   3575.51
   3503.365
(8-)
9-
9-
   4663.44 7  (11-)      433.00 15 
   565.7 7 
  1160.05 7 
    26 5 
    13 11 
   100 5 


(Q)
   4230.56
   4097.38
   3503.365
11-
(9-)
9-
E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
   5066.19 6  (12-)      750.8 5 
   830.39 4 
   835.20 20 
    10 6 
   100 4 
     9.8 20 



   4315.73
   4235.82
   4230.56
11-
(10-)
11-
E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
Band 4 - 4- band, α=0.
   2591.817 6  4- 0.26 ps +62-12       
   2963.626 13  6-      188
   371.774 19 
   436.352 18 
   887.43 24 
 
    28.0 5 
   <38
   100.0 14 

E2
(M1+E2)
E1(+M2)
   2775.179
   2591.817
   2527.247
   2075.675
(5-)
4-
5-
6+
   3354.637 14  8-       91.7 10 ?
   215.48 3 
   294.61 3 
   390.981 14 
   403.092 15 
     2.4 7 
     9.3 5 
     8.83 24 
   100.0 10 
   <35


D(+Q)
E2
E2+M1
   3263.664
   3139.303
   3060.051
   2963.626
   2951.552
8(+)
7-
8+
6-
7-
   3992.13 5  10-      416.8 3 
   488.671 20 
   637.47 7 
     1.8 11 
    54.3 7 
   100 6 

E2+M1
E2
   3575.51
   3503.365
   3354.637
9-
9-
8-
   4798.15 5  12(-)      567.46 9 
   806.021 20 
    20 2 
   100 2 

(E2)
   4230.56
   3992.13
11-
10-
   5784.4 3  (14-)      986.2 3 
   100

   4798.15
12(-)
   6885.1 6  (16-)        
   8018.2 8  (18-)     1133.1 5 
   100

   6885.1
(16-)
   9178.8 10  (20-)     1160.6 5 
   100

   8018.2
(18-)
  10403.3 11  (22-)     1224.5 5 
   100

   9178.8
(20-)
  11746.3 12  (24-)     1343.0 5 
   100

  10403.3
(22-)
  13309.3 13  (26-)     1563.0 5 
   100

  11746.3
(24-)
  14933.3 14  (28-)     1624.0 5 
   100

  13309.3
(26-)
E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
Band 5 - 3- band, α=1.
   2166.879 5  3- 34 ps +12-8       
   2527.247 9  5- 0.6 ps +14-3     175.84 6 
   360.371 9 
   451.58 3 
   464.9 10 ?
  1300.780 19 
     2.08 18 
     6.0 6 
     1.36 12 
    14 7 
   100.0 9 
[E1]
E2
[E1]
[E1]
E1
   2351.240
   2166.879
   2075.675
   2062.651
   1226.467
4+
3-
6+
4+
4+
   2951.552 13  7-      166.38 15 
   245.97 8 
   424.318 14 
   876.26 24 
     0.19 6 
     0.84 6 
    16.7 11 
   100.0 8 


(E2)
E1
   2785.193
   2705.52
   2527.247
   2075.675
6(+)
6+
5-
6+
   3503.365 15  9-      148.720 14 
   239.74 5 
   364.055 15 
   443.317 16 
   551.883 17 
    25.0 11 
     6.0 4 
    55.6 11 
    75.8 11 
   100.0 11 
(M1+E2)

E2
E1(+M2)
E2
   3354.637
   3263.664
   3139.303
   3060.051
   2951.552
8-
8(+)
7-
8+
7-
   4230.56 6  11-      238.351 16 
   727.34 3 
    35.4 7 
   100.0 14 
D+Q
E2
   3992.13
   3503.365
10-
9-
   5162.52 13  13-      846.73 14 
   932.2 3 
   106 6 
   100 2 

E2
   4315.73
   4230.56
11-
11-
   6167.2 4  (15-)        
   7203.7 5  (17-)     1036.5 3 
   100
(E2)
   6167.2
(15-)
   8458.7 7  (19-)     1255.0 5 
   100

   7203.7
(17-)
   9796.7 9  (21-)     1338.0 5 
   100

   8458.7
(19-)
E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
Band 6 - Band based on 8(+), α=0.
   3263.664 18  8(+)        
   4083.30 4  10+      819.63 13 
  1023.75 25 
     6.9 8 
   100.0 10 

E2
   3263.664
   3060.051
8(+)
8+
   4917.97 13  12+      564.54 15 
   681.5 5 
   688.2
   834.95 25 
    25 4 
    29 7 
 
   100 6 

Q

E2
   4353.36
   4235.84
   4230.56
   4083.30
(10+)
10(+)
11-
10+
   5713.31 14  14+      795.34 6 
   100
E2
   4917.97
12+
   6714.81 18  16+     1001.5 1 
   100
E2
   5713.31
14+
   7827.02 20  18+     1112.2 1 
   100
E2
   6714.81
16+
   9057.73 23  20+        
  10378.14 25  22+     1320.4 1 
   100
E2
   9057.73
20+
  11738.5 3  24(+)     1360.4 1 
   100
(E2)
  10378.14
22+
  13170.0 3  26(+)     1431.4 1 
   100
E2
  11738.5
24(+)
  14738.2 4  28(+)     1568.2 3 
   100
E2
  13170.0
26(+)
  16648.4 6  (30+)     1910.2 5 
   100
Q
  14738.2
28(+)
E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
Band 7 - Band based on (28+).
  14938.1 5  (28+)        
  16105.8 5  (30+)     1167.7 5 
  1367.6 5 
    60 20 
   100 20 
Q

  14938.1
  14738.2
(28+)
28(+)
  17740.7 6  (32+)     1092.3 5 
  1634.9 5 
   100 33 
   100 33 
Q
Q
  16648.4
  16105.8
(30+)
(30+)
E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
Band 8 - Band based on 9-
   3575.51 3  9-        
   4315.73 4  11-      740.222 19 
   812.39 8 
   100.0 13 
    10.5 9 
E2

   3575.51
   3503.365
9-
9-
   5274.67 12  (13-)      959.06 13 
  1043.80 20 
   100 9 
    75 16 
(E2)
Q
   4315.73
   4230.56
11-
11-
   6283.7 6  (15-)     1009.0 5 
   100

   5274.67
(13-)
E(level)
(keV)
Jπ(level) T1/2(level)E(γ)I(γ)M(γ)Final Levels
Band 9 - Band based on (10+)
   4353.36 4  (10+)        
   5307.2 5  (12+)     1223.9 5 
   100

   4083.30
10+
   6365.2 7  (14+)     1058.0 5 
   100

   5307.2
(12+)
   7408.6 9  (16+)     1043.4 5 
   100

   6365.2
(14+)
   8450.6 10  (18+)     1042.0 5 
   100

   7408.6
(16+)

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Additional Gamma Data:















E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
    539.5103 2+ 12.54 ps 10     539.509 2 E2 0.00428B(E2)(W.u.)=35.7 3, α=0.00428
   1130.305 0+ 8.2 ps +15-11     590.786 11 E2 0.00332B(E2)(W.u.)=35 5, α=0.00332
   1226.467 4+ 2.6 ps 2     686.972 7 E2 0.00221B(E2)(W.u.)=52 4, α=0.00221
   1362.166 2+ 0.95 ps +24-16     822.646 9 E2+M1+3.7 30.0014B(E2)(W.u.)=31 6, B(M1)(W.u.)=0.0016 +5-4, α=0.0014, α(K)=0.001230 17, α(L)=0.0001439 20, α(M)=2.64E-5 4, α(N)=4.25E-6 6, α(O)=2.185E-7 31
2+ 0.95 ps +24-16    1362.157 10 E2 B(E2)(W.u.)=2.0 4
   1741.011 0+ > 1.39 ps    378.90 5 E2 0.01250α=0.01250, α(K)=0.01081 16, α(L)=0.001388 20, α(M)=0.000255 4, α(N)=4.05×10-5 6, α(O)=1.85E-6 3
   1865.110 2+ 0.66 ps +20-12     502.905 23 M1,E2 0.0049α=0.0049 4
2+ 0.66 ps +20-12     638.631 20 E2 0.00268B(E2)(W.u.)=17 5, α=0.00268, α(K)=0.002340 33, α(L)=0.000281 4, α(M)=5.15E-5 7, α(N)=8.27E-6 12, α(O)=4.12E-7 6
2+ 0.66 ps +20-12     734.798 7 E2 0.00186B(E2)(W.u.)=37 +8-9, α=0.00186, α(K)=0.001623 23, α(L)=0.0001921 27, α(M)=3.52E-5 5, α(N)=5.67E-6 8, α(O)=2.87E-7 4
2+ 0.66 ps +20-12    1325.590 17 M1+E2-1.0 3B(E2)(W.u.)=1.24 +43-53, B(M1)(W.u.)=0.0023 +10-8
2+ 0.66 ps +20-12    1865.06 6 E2 B(E2)(W.u.)=0.43 10
   1881.043 3+ 0.90 ps +40-22     518.881 8 M1+E2+0.37 70.00432B(E2)(W.u.)=9.6 +46-41, B(M1)(W.u.)=0.020 +7-6, α=0.00432 7, α(K)=0.00379 6, α(L)=0.000441 7, α(M)=8.08E-5 13, α(N)=1.307E-5 21, α(O)=6.87E-7 10
3+ 0.90 ps +40-22     654.574 6 M1+E2+2.3 50.00250B(E2)(W.u.)=15 5, B(M1)(W.u.)=0.0013 +8-5, α=0.00250, α(K)=0.002188 31, α(L)=0.000260 4, α(M)=4.77E-5 7, α(N)=7.67E-6 11, α(O)=3.87E-7 5
3+ 0.90 ps +40-22    1341.548 21 M1+E2+5.7 5B(E2)(W.u.)=3.9 +13-12, B(M1)(W.u.)=0.00023 +9-8
   2051.661 0+ 1.0 ps +11-4     689.491 5 [E2] 0.00219B(E2)(W.u.)=16 +11-8, α=0.00219, α(K)=0.001912 27, α(L)=0.0002276 32, α(M)=4.17E-5 6, α(N)=6.71E-6 9, α(O)=3.37E-7 5
0+ 1.0 ps +11-4    1512.134 16 E2 B(E2)(W.u.)=2.3 +15-11
   2062.651 4+ 0.56 ps +92-22     700.51 5 E2 0.0021B(E2)(W.u.)=41 +27-21, α=0.0021, α(K)=0.001835 26, α(L)=0.0002181 31, α(M)=4.00E-5 6, α(N)=6.43E-6 9, α(O)=3.24E-7 5
4+ 0.56 ps +92-22     836.181 4 M1+E2+1.73 210.00136B(E2)(W.u.)=27 +18-14, B(M1)(W.u.)=0.007 +5-4, α=0.00136, α(K)=0.001194 17, α(L)=0.0001389 20, α(M)=2.54E-5 4, α(N)=4.11E-6 6, α(O)=2.132E-7 31
4+ 0.56 ps +92-22    1523.14 5 E2 B(E2)(W.u.)=1.9 +13-10
   2099.103 2+ 0.39 ps +7-6     358.080 9 [E2] 0.015B(E2)(W.u.)=2.7×102 +6-5, α=0.015, α(K)=0.01295 18, α(L)=0.001677 23, α(M)=0.000309 4, α(N)=4.89E-5 7, α(O)=2.204E-6 31
2+ 0.39 ps +7-6     872.67 5 [E2] 0.00121B(E2)(W.u.)=1.9 +6-5, α=0.00121, α(K)=0.001063 15, α(L)=0.0001241 17, α(M)=2.274E-5 32, α(N)=3.67E-6 5, α(O)=1.888E-7 26
2+ 0.39 ps +7-6     968.83 3 [E2] B(E2)(W.u.)=1.9 5
2+ 0.39 ps +7-6    1559.54 3 M1 B(M1)(W.u.)=0.0117 +21-18
2+ 0.39 ps +7-6    2099.14 7 [E2] B(E2)(W.u.)=0.040 +9-7
   2166.879 3- 34 ps +12-8     301.769 3 (E1(+M2))+0.04 30.00620B(E1)(W.u.)=3.5E-5 10, B(M2)(W.u.)=2.8 +63-22, α=0.00620 23, α(K)=0.00544 20, α(L)=0.000626 26, α(M)=0.000114 5, α(N)=1.84E-5 8, α(O)=9.4E-7 4
3- 34 ps +12-8     804.85 12 [E1] B(E1)(W.u.)=3.2E-7 +22-17
3- 34 ps +12-8     940.75 8 [E1] B(E1)(W.u.)=2.0E-7 +7-6
3- 34 ps +12-8    1627.36 3 E1 B(E1)(W.u.)=1.7E-6 5
3- 34 ps +12-8    2166.81 4 (E3) B(E3)(W.u.)=13 4
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   2240.804 2+ 83 ps 6     499.8[E2] 0.00535B(E2)(W.u.)=2.1 10, α=0.00535, α(K)=0.00465 7, α(L)=0.000574 8, α(M)=0.0001054 15, α(N)=1.684E-5 24, α(O)=8.09E-7 11
2+ 83 ps 6    1013.69 7 [E2] B(E2)(W.u.)=0.030 +6-5
2+ 83 ps 6    1110.66 11 [E2] B(E2)(W.u.)=0.0064 +19-18
2+ 83 ps 6    1701.292 21 (M1) B(M1)(W.u.)=2.84×10-5 +46-39
2+ 83 ps 6    2240.1 5 [E2] B(E2)(W.u.)=1.6E-5 +16-9
   2351.240 4+ 0.42 ps +26-12     486.121 5 [E2] 0.0058B(E2)(W.u.)=77 +32-29, α=0.0058, α(K)=0.00505 7, α(L)=0.000624 9, α(M)=0.0001147 16, α(N)=1.832E-5 26, α(O)=8.77E-7 12
4+ 0.42 ps +26-12    1124.770 8 M1+E2-0.36 5B(E2)(W.u.)=1.8 +9-8, B(M1)(W.u.)=0.019 7
4+ 0.42 ps +26-12    1811.63 8 E2 B(E2)(W.u.)=0.9 4
   2366.588 4+ 0.78 ps +76-26    1827.13 4 E2 B(E2)(W.u.)=1.1 +6-5
   2387.22 0+ > 0.52 ps    288.81 10 [E2] 0.0305α=0.0305, α(K)=0.0262 4, α(L)=0.00354 5, α(M)=0.000653 9, α(N)=0.0001028 14, α(O)=4.38×10-6 6
   2413.86 (4+) 87 fs +7-6    1051.68 14 [E2] B(E2)(W.u.)=23 5
(4+) 87 fs +7-6    1874.38 17 (E2) B(E2)(W.u.)=8.9 7
   2469.389 2- 0.44 ps +51-16     228.581 8 E1 0.01306B(E1)(W.u.)=0.00027 +16-13, α=0.01306, α(K)=0.01146 16, α(L)=0.001322 19, α(M)=0.000241 4, α(N)=3.87E-5 6, α(O)=1.94E-6 3
2- 0.44 ps +51-16     302.512 7 M1+E21.8 +12-50.0237B(E2)(W.u.)=3.2×102 +19-16, B(M1)(W.u.)=0.010 +8-7, α=0.0237 14, α(K)=0.0205 12, α(L)=0.00268 19, α(M)=0.00049 4, α(N)=7.8E-5 6, α(O)=3.49E-6 17
2- 0.44 ps +51-16     370.280 5 E1 0.00355B(E1)(W.u.)=0.00033 +20-16, α=0.00355, α(K)=0.00312 4, α(L)=0.000357 5, α(M)=6.52E-5 9, α(N)=1.051E-5 15, α(O)=5.40E-7 8
2- 0.44 ps +51-16     588.343 6 E1 0.00115B(E1)(W.u.)=0.00055 +32-26, α=0.00115, α(K)=0.001010 14, α(L)=0.0001145 16, α(M)=2.092E-5 29, α(N)=3.38E-6 5, α(O)=1.771E-7 25
2- 0.44 ps +51-16     604.33 5 E1 0.00108B(E1)(W.u.)=2.3E-5 +13-11, α=0.00108, α(K)=0.000950 13, α(L)=0.0001076 15, α(M)=1.967E-5 28, α(N)=3.18E-6 4, α(O)=1.667E-7 23
2- 0.44 ps +51-16    1107.222 14 E1 B(E1)(W.u.)=0.00022 +13-11
2- 0.44 ps +51-16    1929.804 20 E1 B(E1)(W.u.)=3.6E-5 +21-17
2- 0.44 ps +51-16    2469.328 22 M2 B(M2)(W.u.)=0.16 +10-8
   2493.06 (3,4,5+) > 0.83 ps   1266.46 14 D(+Q)+0.4 6 
   2512.411 (4)+ 0.41 ps +55-15     345.518 12 [E1] 0.00425B(E1)(W.u.)=0.00047 +28-24, α=0.00425, α(K)=0.00374 5, α(L)=0.000428 6, α(M)=7.82E-5 11, α(N)=1.259E-5 18, α(O)=6.45E-7 9
(4)+ 0.41 ps +55-15     413.42 7 [E2] 0.0095B(E2)(W.u.)=3.5E2 +21-18, α=0.0095, α(K)=0.00823 12, α(L)=0.001042 15, α(M)=0.0001916 27, α(N)=3.05E-5 4, α(O)=1.416E-6 20
(4)+ 0.41 ps +55-15     631.382 20 M1+E2+0.41 50.00270B(E2)(W.u.)=36 +24-19, B(M1)(W.u.)=0.09 +6-5, α=0.00270, α(K)=0.002365 33, α(L)=0.000273 4, α(M)=5.01E-5 7, α(N)=8.10E-6 11, α(O)=4.29E-7 6
(4)+ 0.41 ps +55-15    1150.44 10 [E2] B(E2)(W.u.)=1.3 +9-8
(4)+ 0.41 ps +55-15    1972.91 6 (E2) B(E2)(W.u.)=0.41 +25-20
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   2516.827 1- 105 fs +43-26     349.960 16 [E2] 0.0161B(E2)(W.u.)=7.3E2 +25-22, α=0.0161, α(K)=0.01394 20, α(L)=0.001813 25, α(M)=0.000334 5, α(N)=5.29E-5 7, α(O)=2.368E-6 33
1- 105 fs +43-26     465.148 17 [E1] 0.0020B(E1)(W.u.)=0.0024 +8-7, α=0.0020, α(K)=0.001759 25, α(L)=0.0002003 28, α(M)=3.66E-5 5, α(N)=5.91E-6 8, α(O)=3.07E-7 4
1- 105 fs +43-26     651.708 10 E1 B(E1)(W.u.)=0.0032 +11-9
1- 105 fs +43-26     775.832 11 [E1] B(E1)(W.u.)=0.00038 16
1- 105 fs +43-26    1154.50 15 (E1) B(E1)(W.u.)=3.0E-4 +10-9
1- 105 fs +43-26    1386.51 6 (E1) B(E1)(W.u.)=0.00026 9
1- 105 fs +43-26    1977.37 16 (E1) B(E1)(W.u.)=5.8E-5 +20-19
1- 105 fs +43-26    2516.86 5 [E1] 0.0010B(E1)(W.u.)=2.8E-6 +10-8, α=0.0010, α(K)=7.24E-5 10, α(L)=8.00E-6 11, α(M)=1.459E-6 20, α(N)=2.368E-7 33, α(O)=1.281E-8 18
   2527.247 5- 0.6 ps +14-3     175.84 6 [E1] 0.0274B(E1)(W.u.)=0.0016 +17-10, α=0.0274, α(K)=0.02403 34, α(L)=0.00279 4, α(M)=0.000509 7, α(N)=8.13E-5 11, α(O)=3.99E-6 6
5- 0.6 ps +14-3     360.371 9 E2 0.01468B(E2)(W.u.)=2.7×102 +29-16, α=0.01468, α(K)=0.01268 18, α(L)=0.001642 23, α(M)=0.000302 5, α(N)=4.79E-5 7, α(O)=2.16E-6 3
5- 0.6 ps +14-3     451.58 3 [E1] 0.00215B(E1)(W.u.)=6E-5 +7-4, α=0.00215, α(K)=0.001891 26, α(L)=0.0002155 30, α(M)=3.94E-5 6, α(N)=6.35E-6 9, α(O)=3.30E-7 5
5- 0.6 ps +14-3     464.9 10 [E1] 0.0020B(E1)(W.u.)=0.0006 +7-4, α=0.0020, α(K)=0.001761 26, α(L)=0.0002006 30, α(M)=3.67E-5 5, α(N)=5.91E-6 9, α(O)=3.07E-7 5
5- 0.6 ps +14-3    1300.780 19 E1 B(E1)(W.u.)=0.00019 +20-11
   2536.194 3 0.7 ps +12-3    1996.62 3 D(+Q)+0.02 3 
   2543.71 2+ 0.38 ps +49-15    1181.42 7 M1+E2-0.12 9B(E2)(W.u.)=0.11 +26-9, B(M1)(W.u.)=0.011 +7-6
   2569.912 (3)- > 0.30 ps    403.042 24 (M1+E2)+1.58 70.00958α=0.00958 15, α(K)=0.00832 12, α(L)=0.001037 16, α(M)=0.0001905 29, α(N)=3.04×10-5 5, α(O)=1.452E-6 21
   2576.872 5(+) > 125 fs    695.783 21 (E2) 0.00214α=0.00214
   2591.817 4- 0.26 ps +62-12     240.549 8 [E1] 0.0113B(E1)(W.u.)=0.0013 +11-7, α=0.0113, α(K)=0.00994 14, α(L)=0.001146 16, α(M)=0.0002092 29, α(N)=3.36E-5 5, α(O)=1.684E-6 24
4- 0.26 ps +62-12     424.874 18 (M1+E2)+1.2 30.0080B(E2)(W.u.)=6E2 +6-4, B(M1)(W.u.)=0.08 +8-5, α=0.0080 3, α(K)=0.00694 24, α(L)=0.00085 4, α(M)=0.000156 7, α(N)=2.50E-5 11, α(O)=1.223E-6 33
4- 0.26 ps +62-12     710.771 3 (E1(+M2))+0.03 5B(E1)(W.u.)=0.0014 +14-10
4- 0.26 ps +62-12    1229.46 12 [M2] 0.00137α=0.00137, α(K)=0.001199 17, α(L)=0.0001387 19, α(M)=2.55×10-5 4, α(N)=4.13E-6 6, α(O)=2.209E-7 31
4- 0.26 ps +62-12    1365.415 12 (E1(+M2))-0.05 12B(E1)(W.u.)=1.6E-4 +16-12
4- 0.26 ps +62-12    1461.19 14 [M4] 0.00289α=0.00289
4- 0.26 ps +62-12    2052.60 16 [M2] B(M2)(W.u.)=1.2 +12-8
   2660.82 5(+)     1434.28 19 (M1+E2)+0.38 4 
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   2705.52 6+      629.79 5 (M1+E2)+1.00 7 
   2747.495 4(-)      580.600 11 (M1+E2)+0.62 16 
4(-)     1520.69 8 (D+Q)+0.38 15 
   2775.179 (5-)      247.943 17 (M1+E2)+0.6 20.033α=0.033 4, α(K)=0.029 3, α(L)=0.0037 5, α(M)=0.00067 8, α(N)=0.000107 13, α(O)=5.1×10-6 4
   2785.193 6(+)      709.43 3 (M1+E2)+0.54 8 
   2800.84 (2+,3) 0.13 ps +5-3    1438.69 5 D(+Q)+0.01 5 
   2877.57 2+,3+      996.56 15 (D(+Q))+0.05 20 
   2905.14 (4+) 0.21 ps +8-5    2365.50 25 (E2) B(E2)(W.u.)=1.3 4
   2915.545 2- 0.35 ps +29-11     403.07 11 [M2] 0.0289α=0.0289, α(K)=0.02502 35, α(L)=0.00316 4, α(M)=0.000586 8, α(N)=9.45×10-5 13, α(O)=4.85E-6 7
2- 0.35 ps +29-11     446.153 5 M1(+E2)0.45 LT0.00624B(M1)(W.u.)=0.12 +7-6, α=0.00624 15, α(K)=0.00546 12, α(L)=0.000638 19, α(M)=0.0001170 35, α(N)=1.89×10-5 5, α(O)=9.93E-7 19
2- 0.35 ps +29-11     748.666 7 M1,E2 0.00179α=0.00179, α(K)=0.001572 32, α(L)=0.0001825 26, α(M)=3.34×10-5 5, α(N)=5.40E-6 8, α(O)=2.82E-7 9
2- 0.35 ps +29-11     816.454 16 (E1+M2)0.7 60.0017B(E1)(W.u.)=6.0E-6 +31-37, B(M2)(W.u.)=20 +23-16, α=0.0017 11, α(K)=0.0014 9, α(L)=1.7E-4 11, α(M)=3.1E-5 20, α(N)=5.0E-6 33, α(O)=2.7E-7 17
2- 0.35 ps +29-11    1034.510 8 (E1) B(E1)(W.u.)=1.8E-5 +9-8
2- 0.35 ps +29-11    1553.348 10 E1 B(E1)(W.u.)=7.2E-5 +33-31
2- 0.35 ps +29-11    2375.976 16 E1 B(E1)(W.u.)=3.2E-5 +15-14
2- 0.35 ps +29-11    2915.42 7 [M2] B(M2)(W.u.)=0.020 +12-11
   2951.552 7-      424.318 14 (E2) 0.00876α=0.00876
   2963.626 6-      436.352 18 (M1+E2)+2.8 200.0079α=0.0079 8
6-      887.43 24 E1(+M2)-0.08 10 
   2967.57 6(+)      262.08 3 (D(+Q))+0.17 22 
6(+)      891.67 8 (M1+E2)-0.17 8 
   3064.61 4+ 37 fs +10-7    2525.26 17 E2 B(E2)(W.u.)=5.4 +13-12
   3069.525 (1,2)- > 0.45 ps    499.599 7 M1,E2 0.0050α=0.0050 4
(1,2)- > 0.45 ps    600.124 6 M1,E2 0.00310α=0.00310 9
   3072.268 2+ 0.20 ps +14-6     555.42 4 [E1] 0.00131B(E1)(W.u.)=0.00031 +18-15, α=0.00131, α(K)=0.001153 16, α(L)=0.0001308 18, α(M)=2.391E-5 33, α(N)=3.86E-6 5, α(O)=2.019E-7 28
2+ 0.20 ps +14-6     602.91 4 [E1] 0.00109B(E1)(W.u.)=0.00054 +25-23, α=0.00109, α(K)=0.000955 13, α(L)=0.0001082 15, α(M)=1.978E-5 28, α(N)=3.20E-6 4, α(O)=1.676E-7 23
2+ 0.20 ps +14-6     905.60 21 [E1] B(E1)(W.u.)=0.00022 +10-9
2+ 0.20 ps +14-6    3071.80 12 [E2] B(E2)(W.u.)=0.024 +11-10
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   3139.303 7-      187.759 13 (D+Q)+0.17 10 
7-      354.09 4 D(+Q)+0.04 6 
7-      612.057 18 E2 0.00301α=0.00301, α(K)=0.00263 4, α(L)=0.000316 4, α(M)=5.80×10-5 8, α(N)=9.31E-6 13, α(O)=4.61E-7 6
7-     1063.8 4 D(+Q)-0.03 5 
   3218.111 (8)-      254.486 19 E2 0.0469α=0.0469, α(K)=0.0401 6, α(L)=0.00559 8, α(M)=0.001032 14, α(N)=0.0001618 23, α(O)=6.63×10-6 9
   3354.637 8-      294.61 3 D(+Q)+0.08 20 
8-      390.981 14 E2 0.01131α=0.01131, α(K)=0.00979 14, α(L)=0.001251 18, α(M)=0.000230 4, α(N)=3.66×10-5 6, α(O)=1.679E-6 24
8-      403.092 15 E2+M1+1.58 70.00958α=0.00958 15, α(K)=0.00832 12, α(L)=0.001036 16, α(M)=0.0001905 29, α(N)=3.04×10-5 5, α(O)=1.451E-6 21
   3368.982 (7-)      229.69 5 (D(+Q))+0.02 15 
(7-)      417.407 20 (M1+E2)-0.21 70.00728α=0.00728 12, α(K)=0.00638 10, α(L)=0.000744 13, α(M)=0.0001364 25, α(N)=2.21×10-5 4, α(O)=1.163E-6 18
   3446.56 7(+)     1370.95 9 D+Q+0.12 2 
   3503.365 9-      148.720 14 (M1+E2)+0.05 10.1040α=0.1040, α(K)=0.0908 13, α(L)=0.01090 16, α(M)=0.00201 3, α(N)=0.000324 5, α(O)=1.678×10-5 24
9-      364.055 15 E2 0.01420α=0.01420, α(K)=0.01228 18, α(L)=0.001586 23, α(M)=0.000292 4, α(N)=4.63×10-5 7, α(O)=2.09E-6 3
9-      443.317 16 E1(+M2)+0.06 60.00232α=0.00232 21, α(K)=0.00204 18, α(L)=0.000233 23, α(M)=4.3×10-5 4, α(N)=6.9E-6 7, α(O)=3.56E-7 35
9-      551.883 17 E2 0.00402α=0.00402, α(K)=0.00350 5, α(L)=0.000426 6, α(M)=7.83×10-5 11, α(N)=1.253E-5 18, α(O)=6.12E-7 9
   3575.51 9-      515.47 5 D(+Q)+0.09 12 
9-      623.933 14 E2 0.00286α=0.00286, α(K)=0.002492 35, α(L)=0.000300 4, α(M)=5.50×10-5 8, α(N)=8.82E-6 12, α(O)=4.38E-7 6
   3576.43 7(+)      870.99 21 D+Q-0.12 7 
   3599.301 (8-)      244.41 13 (D(+Q))+0.2 3 
(8-)      460.01 7 D+Q-2.8 2 
(8-)      647.752 20 D+Q-0.30 2 
   3609.96 7(+)     1534.40 10 D+Q+2.6 2 
   3661.48 (4,5,6)     1134.21 13 D+Q-0.16 6 
   3960.36 (9-)      742.27 9 D+Q+0.58 12 
   3992.13 10-      488.671 20 E2+M1+0.37 20.00501α=0.00501, α(K)=0.00439 6, α(L)=0.000512 7, α(M)=9.39×10-5 13, α(N)=1.518E-5 22, α(O)=7.96E-7 11
10-      637.47 7 E2 0.00269α=0.00269, α(K)=0.002352 33, α(L)=0.000282 4, α(M)=5.18×10-5 7, α(N)=8.31E-6 12, α(O)=4.14E-7 6
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   4075.93 (8,9-)      572.41 13 D(+Q)+0.05 7 
   4097.38 (9-)      521.86 5 D+Q-0.25 7 
   4235.82 (10-)      732.46 5 D+Q-1.05 12 
   4235.84 10(+)      152.56 4 (D(+Q))+0.04 9 
   4248.49 (7-,8,9)      893.77 9 D+Q+0.52 5 
   4343.44 9(+)     1079.98 13 D+Q+2.84 8 
   4381.83 (7,8,9+)     1117.99 11 D+Q-0.11 7 
   4818.58 (10+)      582.82 8 (D+Q)-0.26 20 
   5010.49 (8+,9,10,11)      218.87 4 D+Q+0.078 8 

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Additional Level Data and Comments:

E(level)Jπ(level)T1/2(level)Comments
      0.00+ STABLE Evaluated δr2(100Ru,104Ru)=-0.506 fm2 3 (2013An02).
E(level): g.s. band.
    539.51032+ 12.54 ps 10  μ=+0.858 46 (2011Ch23,2014StZZ), Q=-0.44 7 (2016St14,1998Hi01)
β2(α,α’)=0.204 3 (from β2R(charge)=1.154 17, β2R(nuclear)=1.12 5 (1996Go36)). β2(Coul. ex.)=0.209 2 (from B(E2) (1980La01,1980HiZV)).
E(level): β2(α,α’)=0.204 3 (from β2R(charge)=1.154 17, β2R(nuclear)=1.12 5 (1996Go36)). β2(Coul. ex.)=0.209 2 (from B(E2) (1980La01,1980HiZV)). g.s. band.
   1130.3050+ 8.2 ps +15-11  XREF: L(?).
   1226.4674+ 2.6 ps 2  E(level): g.s. band.
   1362.1662+ 0.95 ps +24-16  XREF: d(?).
E(level): Quasi-γ band.
   1741.0110+ > 1.39 ps XREF: d(?)p(?).
   18280+   XREF: Q(1840).
   1865.1102+ 0.66 ps +20-12  XREF: d(?)p(1887).
   1881.0433+ 0.90 ps +40-22  E(level): Quasi-γ band.
   2051.6610+ 1.0 ps +11-4  XREF: d(?).
   2062.6514+ 0.56 ps +92-22  E(level): Quasi-γ band.
   2075.6756+ > 0.28 ps XREF: C(?).
E(level): g.s. band.
   2166.8793- 34 ps +12-8  XREF: L(?).
E(level): 3- band, α=1.
   2366.5884+ 0.78 ps +76-26  β4R(nuclear)(α,α’)=0.038 8 (1996Go36). Large value of β4(p,p’)=0.10 (1989Si15) suggests this state as hexadecapole excitation.
   2387.220+ > 0.52 ps XREF: d(?)p(2394).
   2469.3892- 0.44 ps +51-16  E(level): 2- band,.
   2512.411(4)+ 0.41 ps +55-15  XREF: p(2515).
   2527.2475- 0.6 ps +14-3  E(level): 3- band, α=1.
   2543.712+ 0.38 ps +49-15  XREF: p(2560).
   2569.912(3)- > 0.30 ps E(level): 2- band,.
   2576.8725(+) > 125 fs E(level): Quasi-γ band.
   2591.8174- 0.26 ps +62-12  E(level): 4- band, α=0.
   2705.526+   XREF: p(2695)R(2703.4).
E(level): Quasi-γ band.
   2747.4954(-)   E(level): 2- band,.
   2764.9432+,3+ > 0.17 ps XREF: R(2759.4).
E(level)Jπ(level)T1/2(level)Comments
   2775.179(5-)   XREF: M(?).
   2775.342+,3+ 0.30 ps +24-10  XREF: γ(?)p(2783).
   2832.80+   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   2877.572+,3+   XREF: p(2865).
   2905.14(4+) 0.21 ps +8-5  XREF: R(2902.6).
   2911.475(-)   E(level): 2- band,.
   2933.65(1,2)+   XREF: p(2926).
   2951.102+,3,4+ 87 fs +14-10  XREF: K(2953).
   2951.5527-   E(level): 3- band, α=1.
   2963.6266-   E(level): 4- band, α=0.
   2983.04(0:4)+   XREF: p(2971).
   3016.77   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   3060.0518+   E(level): g.s. band.
   3069.525(1,2)- > 0.45 ps XREF: I(3071.6).
   3072.2682+ 0.20 ps +14-6  XREF: p(3080).
   3110.57(2+,3+) > 0.26 ps XREF: p(3124).
   3118.67(0+:4+) 37 ps +8-6  XREF: p(3132).
   3263.6648(+)   XREF: L(3266.1).
E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
   3266.3(0:5)+   XREF: H(3240)p(3268).
   3272.1   XREF: p(3278).
   3300.622+,3+   XREF: p(3315).
   3326.27   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   3332.40   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   3348.13   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   3354.6378-   E(level): 4- band, α=0.
E(level)Jπ(level)T1/2(level)Comments
   3368.982(7-)   E(level): 2- band,.
   3375.01   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   3419.13(2+)   XREF: p(3403).
   3446.567(+)   E(level): Quasi-γ band.
   3460.4   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   3503.3659-   E(level): 3- band, α=1.
   3550.108(+)   E(level): Quasi-γ band.
   3575.519-   E(level): γ from 100Rh ε decay (20.8 h) only. Band based on 9-.
   3599.301(8-)   E(level): 2- band,.
   3731.88   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   3883.0   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   3960.36(9-)   E(level): 2- band,.
   3992.1310-   E(level): 4- band, α=0.
   4000.70   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4049.5   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4083.3010+   E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
   4091.5   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4102.9   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4148.6   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4230.5611-   E(level): 3- band, α=1.
   4235.82(10-)   E(level): 2- band,.
   4235.8410(+)   XREF: E(4239.7).
E(level): g.s. band.
   4257.1   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4273.5   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4307.4   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
E(level)Jπ(level)T1/2(level)Comments
   4315.7311-   E(level): γ from 100Rh ε decay (20.8 h) only. Band based on 9-.
   4337.6   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4343.449(+)   E(level): Quasi-γ band.
   4353.36(10+)   E(level): Band based on (10+).
   4376.1   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4403.6   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4519.6   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4530   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4543.7   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4585.6   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4601.2   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4650.7   E(level): γ from 100Rh ε decay (4.6 m) only.
Jπ(level): Primary γ from (3+) suggests Jπ=1+,2,3,4,5+; the choices 1+ and 5+ are less likely if there is a strong primary transition.
   4663.44(11-)   E(level): 2- band,.
   4798.1512(-)   E(level): 4- band, α=0.
   4917.9712+   XREF: L(?).
E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
   5066.19(12-)   E(level): 2- band,.
   5162.5213-   E(level): 3- band, α=1.
   5274.67(13-)   E(level): γ from 100Rh ε decay (20.8 h) only. Band based on 9-.
   5307.2(12+)   E(level): Band based on (10+).
   5713.3114+   XREF: L(?).
E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
   5784.4(14-)   E(level): 4- band, α=0.
   6167.2(15-)   E(level): 3- band, α=1.
   6283.7(15-)   E(level): γ from 100Rh ε decay (20.8 h) only. Band based on 9-.
   6365.2(14+)   E(level): Band based on (10+).
   6714.8116+   E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
E(level)Jπ(level)T1/2(level)Comments
   6885.1(16-)   E(level): 4- band, α=0.
   7203.7(17-)   E(level): 3- band, α=1.
   7408.6(16+)   E(level): Band based on (10+).
   7827.0218+   E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
   8018.2(18-)   E(level): 4- band, α=0.
   8450.6(18+)   E(level): Band based on (10+).
   8458.7(19-)   E(level): 3- band, α=1.
   9057.7320+   E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
   9178.8(20-)   E(level): 4- band, α=0.
   9673.333(+)   Jπ(level): From 2018MuZY evaluation.
   9673.353(+)   Jπ(level): From 2018MuZY evaluation.
   9673.383(+)   Jπ(level): From 2018MuZY evaluation.
   9673.402(+)   Jπ(level): From 2018MuZY evaluation.
   9763.423(+)   Jπ(level): From 2018MuZY evaluation.
   9796.7(21-)   E(level): 3- band, α=1.
  10378.1422+   E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
  10403.3(22-)   E(level): 4- band, α=0.
  11738.524(+)   E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
  11746.3(24-)   E(level): 4- band, α=0.
  13170.026(+)   E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
  13309.3(26-)   E(level): 4- band, α=0.
  14738.228(+)   E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
  14933.3(28-)   E(level): 4- band, α=0.
  14938.1(28+)   E(level): γ from (n,γ) E=th only. Band based on (28+).
  16105.8(30+)   E(level): γ from (n,γ) E=th only. Band based on (28+).
E(level)Jπ(level)T1/2(level)Comments
  16648.4(30+)   E(level): γ from (n,γ) E=th only. Band based on 8(+), α=0.
  17740.7(32+)   E(level): γ from (n,γ) E=th only. Band based on (28+).

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Additional Gamma Comments:

E(level)E(gamma)Comments
    539.5103    539.509E(γ): weighted average of 539.512 5 from 100Rh ε decay (20.8 h) and 539.508 2 from (n,γ) E=th. Others: 539.52 11 from 100Tc β- decay (15.46 s), 539.7 1 from (36S,α2nγ), 539.509 14 from (α,2nγ), 539.7 3 from (α,4nγ), 539.506 18 from (n,n’γ), and 539.6 1 from Coulomb excitation
M(γ): from ce data in 100Rh ε decay (20.8 h), γ(DCO) in (36S,α2nγ) and (34S,2α2nγ), γ(θ) in (α,2nγ) and (n,n’γ)
   1130.305    590.786E(γ): weighted average of 590.792 6 from 100Rh ε decay (20.8 h), 590.844 20 from (α,2nγ), 590.765 9 from (n,γ) E=th, and 590.774 20 from (n,n’γ). Others: 590.77 10 from 100Tc β- decay (15.46 s) and 590.8 5 from Coulomb excitation
M(γ): M1,E2 from ce data and Q from γγ(θ) in 100Rh ε decay (20.8 h)
   1226.467    686.972E(γ): weighted average of 686.971 7 from 100Rh ε decay (20.8 h), 686.973 17 from (α,2nγ), 686.972 3 from (n,γ) E=th, and 686.963 17 from (n,n’γ). Others: 687.5 1 from (36S,α2nγ), 687.4 3 from (α,4nγ), and 686.9 5 from Coulomb excitation
M(γ): M1,E2 from ce data and Q from γγ(θ) in 100Rh ε decay (20.8 h); also from γ(DCO) and γ(pol) in (36S,α2nγ), γ(DCO) in (34S,2α2nγ), γ(θ) in (α,2nγ), (α,4nγ) an d(n,n’γ)
   1362.166    822.646E(γ): weighted average of 822.6 1 from 100Tc β- decay (15.46 s), 822.654 7 from 100Rh ε decay (20.8 h), 822.666 17 from (α,2nγ), 822.614 10 from (n,γ) E=th, 822.672 16 from (n,n’γ), and 822.5 2 from Coulomb excitation
I(γ): from (n,n’γ). Others: 100.0 10 from 100Rh ε decay (20.8 h), 100.0 12 from (α,2nγ), 100 4 from (n,γ) E=th.
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h) and γ(θ) in (n,n’γ), 100 8 from (n,γ) E=res
   1362.157E(γ): weighted average of 1362.152 10 from 100Rh ε decay (20.8 h), 1362.172 23 from (α,2nγ), 1362.17 3 from (n,γ) E=th, and 1362.160 21 from (n,n’γ). Others: 1362.2 1 from 100Tc β- decay (15.46 s) and 1362.1 2 from Coulomb excitation
I(γ): weighted average of 72.95 23 from 100Rh ε decay (20.8 h), 73.3 12 from (α,2nγ), and 73.6 5 from (n,n’γ). Others: 68 4 from (n,γ) E=th; 52 5 in Coulomb excitation, 95 3 in 100Tc β- decay and 112 11 in (n,γ) E=res are in disagreement
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h) and γ(θ) in (α,2nγ) and (n,n’γ)
   1741.011    378.90E(γ): weighted average of 378.7 1 from 100Tc β- decay (15.46 s), 378.79 5 from 100Rh ε decay (20.8 h), 378.81 11 from (α,2nγ), 379.10 10 from (n,γ) E=th, and 378.94 3 from (n,n’γ)
I(γ): weighted average of 85 6 from 100Tc β- decay (15.46 s), 75.1 11 from (n,n’γ), and 69 12 from 100Rh ε decay (20.8 h). Others: 130 18 in (n,γ) E=th; 220 20 in (α,2nγ) are in disagreement
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h)
   1201.503E(γ): weighted average of 1201.493 16 from 100Rh ε decay (20.8 h) and 1201.54 3 from (n,n’γ). Others: 1201.5 1 from 100Tc β- decay (15.46 s), 1201.4 3 from (α,2nγ), and 1201.44 14 from (n,γ) E=th
I(γ): from (n,n’γ). Others: 100 4 from 100Tc β- decay (15.46 s), 100.0 21 from 100Rh ε decay (20.8 h), 100 17 from (α,2nγ), 100 18 from (n,γ) E=th
M(γ): (Q) from γγ(θ) in 100Rh ε decay (20.8 h); polarity from no level-parity change
   1865.110    502.905E(γ): weighted average of 502.907 18 from 100Rh ε decay (20.8 h), 502.7 3 from (α,2nγ), 503.09 10 from (n,γ) E=th, and 502.83 6 from (n,n’γ)
I(γ): weighted average of 16.0 14 from 100Rh ε decay (20.8 h), 21 8 from (α,2nγ), 19.8 28 from (n,γ) E=th, and 13.9 3 from (n,n’γ)
M(γ): from ce data in 100Rh ε decay (20.8 h)
    638.631E(γ): weighted average of 638.619 14 from 100Rh ε decay (20.8 h), 638.81 13 from (α,2nγ), 638.70 7 from (n,γ) E=th, and 638.72 5 from (n,n’γ)
I(γ): unweighted average of 14.2 5 from 100Rh ε decay (20.8 h), 21 4 from (α,2nγ), 25 3 from (n,γ) E=th, and 13.0 3 from (n,n’γ)
M(γ): M1,E2 from ce data in 100Rh ε decay (20.8 h); ΔJ=2 requires E2
    734.798E(γ): weighted average of 734.806 7 from 100Rh ε decay (20.8 h), 734.789 7 from (n,γ) E=th, and 734.810 21 from (n,n’γ). Others: 734.8 3 from 100Tc β- decay (15.46 s) and 734.84 8 from (α,2nγ)
I(γ): weighted average of 76.8 7 from 100Rh ε decay (20.8 h), 78.3 6 from (n,n’γ), and 69 4 from (α,2nγ). Others: 114 14 in 100Tc β-; 118 3 in (n,γ) E=th, 104 5 in (n,γ) E=res are in disagreement
M(γ): M1,E2 from ce data in 100Rh ε decay (20.8 h); ΔJ=2 requires E2
   1325.590E(γ): weighted average of 1325.8 5 from 100Tc β- decay (15.46 s), 1325.583 13 from 100Rh ε decay (20.8 h), 1325.56 7 from (α,2nγ), 1325.45 6 from (n,γ) E=th, and 1325.633 22 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100.0 10 from 100Rh ε decay (20.8 h), 100 4 from (α,2nγ), 100 13 from (n,γ) E=th, 100 7 from (n,γ) E=res, 100 33 from 100Tc β- decay
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h) and γ(θ) in (n,n’γ)
   1865.06E(γ): weighted average of 1864.9 2 from 100Tc β- decay (15.46 s), 1865.12 15 from 100Rh ε decay (20.8 h), 1865.12 9 from (α,2nγ), 1865.04 6 from (n,γ) E=th, and 1865.07 6 from (n,n’γ)
I(γ): weighted average of 93 7 from 100Tc β- decay (15.46 s), 90 4 from (α,2nγ), and 96.4 12 from (n,n’γ), 109 13 from (n,γ) E=th, and 109 23 from (n,γ) E=res. Other: 63 6 in 100Rh ε decay (20.8 h) is in disagreement
M(γ): Q from γ(θ) in (n,n’γ); M2 ruled out by RUL
   1881.043    518.881E(γ): weighted average of 518.882 5 from 100Rh ε decay (20.8 h), 518.88 6 from (α,2nγ), 519.11 13 from (n,γ) E=th, and 518.82 3 from (n,n’γ)
I(γ): weighted average of 17.2 2 from 100Rh ε decay (20.8 h), 14.2 13 from (α,2nγ), 22 4 from (n,γ) E=th, and 16.1 4 from (n,n’γ). Other: 86 4 in (n,γ) E=res is in disagreement
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h) and γ(θ) in (n,n’γ) and (α,2nγ)
    654.574E(γ): weighted average of 654.571 6 from 100Rh ε decay (20.8 h), 654.587 17 from (n,γ) E=th, and 654.60 3 from (n,n’γ). Other: 654.78 5 from (α,2nγ)
I(γ): unweighted average of 10.5 1 from 100Rh ε decay (20.8 h), 12.7 5 from (α,2nγ), 14.2 8 from (n,γ) E=th, and 10.9 3 from (n,n’γ). Other: 116 31 in (n,γ) E=res is in disagreement
   1341.548E(γ): unweighted average of 1341.515 9 from 100Rh ε decay (20.8 h), 1341.601 18 from (α,2nγ), 1341.560 9 from (n,γ) E=th, and 1341.515 22 from (n,n’γ)
I(γ): from (n,γ) E=th. Others: 100.0 10 from 100Rh ε decay (20.8 h), 100.0 13 from (α,2nγ), and 100.0 8 from (n,n’γ), 100 16 from (n,γ) E=res
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h), γ(θ) in (α,2nγ) and (n,n’γ)
   2051.661    689.491E(γ): from 100Rh ε decay (20.8 h). Others: 689.2 1 from 100Tc β- decay (15.46 s), and 689.46 9 from (n,n’γ)
I(γ): unweighted average of 12.3 4 from 100Tc β- decay (15.46 s) and 16.0 12 from 100Rh ε decay (20.8 h)
   1512.134E(γ): weighted average of 1512.1 1 from 100Tc β- decay (15.46 s), 1512.140 16 from 100Rh ε decay (20.8 h), 1512.01 8 from (n,γ) E=th, and 1512.13 4 from (n,n’γ). Other: 1512.10 22 from (α,2nγ)
I(γ): from 100Rh ε decay (20.8 h). Others: 100 15 from 100Tc β- decay (15.46 s)
M(γ): Q from γγ(θ) in 100Tc β- decay (15.46 s) and 100Rh ε decay (20.8 h); M2 ruled out by RUL
   2062.651    700.51E(γ): weighted average of 700.52 6 from (n,γ) E=th and 700.51 5 from (n,n’γ). Other: 700.7 6 from (α,2nγ)
I(γ): weighted average of 47 3 from (α,2nγ), 44.5 8 from (n,n’γ), 60 7 from (n,γ) E=th, and 88 24 from (n,γ) E=res. Other: 200 18 in 100Rh ε decay (4.6 min) is in disagreement
M(γ): Q from γ(θ) in (α,2nγ); M2 ruled out by RUL
    836.181E(γ): weighted average of 836.187 23 from (α,2nγ), 836.180 3 from (n,γ) E=th, and 836.24 3 from (n,n’γ)
I(γ): unweighted average of 87.6 18 from (α,2nγ), 104 2 from (n,γ) E=th, 96 12 from E=res. Other: 188 18 in 100Rh ε decay (4.6 min); 52.4 2 in (n,n’γ) are in disagreement
M(γ): D+Q from γ(θ) in (n,n’γ) and (α,2nγ); M2 ruled out by RUL
   1523.14E(γ): unweighted average of 1523.199 24 from (α,2nγ), 1523.07 3 from (n,γ) E=th, and 1523.08 6 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100 13 from 100Rh ε decay (4.6 min), 100.0 15 from (α,2nγ), 100 5 from (n,γ) E=th, 100 48 from (n,γ) E=res
M(γ): Q from γ(θ) in (n,n’γ) and (α,2nγ); M2 ruled out by RUL
   2075.675    849.22E(γ): unweighted average of 849.241 15 from (α,2nγ), and 849.188 7 from (n,γ) E=th, and 849.241 15 from (n,n’γ). Others: 849.9 1 from (36S,α2nγ), 849.9 3 from (α,4nγ)
M(γ): from γ(DCO) and γ(lin pol) in (36S,α2nγ), ce data and γ(θ) in (α,4nγ), γ(θ) in (α,2nγ), γ(DCO) in (34S,2α2nγ)
   2099.103    234.0E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    358.080E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    736.99E(γ): weighted average of 736.966 20 from 100Rh ε decay (20.8 h), 736.93 18 from (α,2nγ), 737.20 13 from (n,γ) E=th, and 737.15 6 from (n,n’γ)
I(γ): weighted average of 13.16 13 from 100Rh ε decay (20.8 h), 13.2 7 from (n,n’γ), and 17 3 from (n,γ) E=th. Others: 57 9 in (α,2nγ); 89 20 in (n,γ) E=res are in disagreement
M(γ): from ce data in 100Rh ε decay (20.8 h)
    872.67E(γ): weighted average of 872.62 5 from 100Rh ε decay (20.8 h), 872.71 5 from (n,γ) E=th, and 872.67 16 from (n,n’γ)
I(γ): unweighted average of 2.10 24 from 100Rh ε decay (20.8 h), 3.6 3 from (n,γ) E=th, and 1.59 25 from (n,n’γ)
    968.83E(γ): weighted average of 968.85 3 from 100Rh ε decay (20.8 h), 968.80 5 from (n,γ) E=th, and 968.68 10 from (n,n’γ). Other: 969.2 5 from (α,2nγ)
I(γ): unweighted average of 3.95 24 from 100Rh ε decay (20.8 h), 6.4 4 from (n,γ) E=th, and 3.18 25 from (n,n’γ). Other: 22 13 in (α,2nγ) is in severe disagreement
   1559.54E(γ): weighted average of 1558.9 3 from 100Tc β- decay (15.46 s), 1559.554 21 from 100Rh ε decay (20.8 h), 1560.1 6 from (α,2nγ), 1559.37 6 from (n,γ) E=th, and 1559.56 3 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100.0 10 from 100Rh ε decay (20.8 h), 100 9 from 100Tc β- decay (15.46 s), 100 13 from (α,2nγ), 100 12 from (n,γ) E=th, and 100 23 from (n,γ) E=res
M(γ): from ce data in 100Rh ε decay (20.8 h)
   2099.14E(γ): weighted average of 2099.16 7 from 100Rh ε decay (20.8 h), 2099.4 5 from (n,γ) E=th, and 2099.03 15 from (n,n’γ)
I(γ): weighted average of 3.3 4 from 100Rh ε decay (20.8 h), 10 4 from (n,γ) E=th, and 4.28 25 from (n,n’γ)
E(level)E(gamma)Comments
   2166.879    301.769E(γ): weighted average of 301.771 8 from 100Rh ε decay (20.8 h), 301.769 1 from (n,γ) E=th. Others: 301.63 3 from (α,2nγ), 301.82 3 from (n,n’γ)
I(γ): weighted average of 12.7 9 from 100Rh ε decay (20.8 h), 13.5 12 from (α,2nγ), and 12.63 24 from (n,n’γ). Other: 21.8 4 in (n,γ) E=th is in disagreement
M(γ): d(+Q) from γ(θ) in (n,n’γ) and (α,2nγ); polarity from level-parity change
    804.85E(γ): unweighted average of 804.73 8 from 100Rh ε decay (20.8 h) and 804.96 7 from (n,γ) E=th
I(γ): unweighted average of 0.93 9 from 100Rh ε decay (20.8 h) and 3.5 4 from (n,γ) E=th
    940.75E(γ): γ from (n,γ) E=th only. Uncertainty increased by a factor of 4 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from (n,γ) E=th only
   1627.36E(γ): weighted average of 1627.340 11 from 100Rh ε decay (20.8 h), 1627.462 22 from (α,2nγ), 1627.35 4 from (n,γ) E=th, 1627.34 4 from (n,n’γ), and 1626.4 5 from Coulomb excitation
I(γ): from 100Rh ε decay (20.8 h). Others: 100.0 15 from (α,2nγ), 100.0 7 from (n,γ) E=th, and 100.0 10 from (n,n’γ)
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h). δ(M2/E1)=-0.008 24 in (n,n’γ), +0.02 3 in (α,2nγ)
   2166.81E(γ): weighted average of 2166.80 3 from 100Rh ε decay (20.8 h), 2166.65 16 from (α,2nγ), 2166.94 7 from (n,γ) E=th, and 2166.61 21 from (n,n’γ)
I(γ): unweighted average of 4.98 25 from 100Rh ε decay (20.8 h), 7.3 8 from (α,2nγ), and 5.4 4 from (n,n’γ). Other: 10.9 13 from (n,γ) E=th, is in severe disagreement.
M(γ): (O) from γ(θ) in (n,n’γ); polarity from level-parity change
   2240.804    375.686E(γ): from (n,γ) E=th. Other: 375.73 9 from (n,n’γ)
I(γ): unweighted average of 4.6 3 from (n,γ) E=th and 1.6 3 from (n,n’γ)
    499.8E(γ): from 100Tc β- decay only
    878.55E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1013.69E(γ): γ from (n,γ) E=th only. Uncertainty increased by a factor of 5 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from (n,γ) E=th only
   1110.66E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   1701.292E(γ): weighted average of 1701.0 10 from 100Tc β- decay (15.46 s), 1701.310 18 from 100Rh ε decay (20.8 h), 1701.30 15 from (α,2nγ), 1701.14 6 from (n,γ) E=th, and 1701.28 3 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100.0 16 from 100Rh ε decay (20.8 h), 100 12 from (n,γ) E=th
M(γ): d from γ(θ) in (α,2nγ), δ(Q/d)=-0.014 50 from γ(θ) in (n,n’γ), δ(Q/d)=0.12 40 from γγ(θ) in 100Rh ε decay (20.8 h); polarity from no level-parity change
   2240.1E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   2313.5    951.5E(γ): γ from 100Rh ε decay (4.6 m) only
I(γ): γ from 100Rh ε decay (4.6 m) only
   1087.1E(γ): γ from 100Rh ε decay (4.6 m) only
I(γ): γ from 100Rh ε decay (4.6 m) only
   1773.8E(γ): γ from 100Rh ε decay (4.6 m) only
I(γ): γ from 100Rh ε decay (4.6 m) only
   2324.6    262.3E(γ): γ from 100Rh ε decay (4.6 m) only
I(γ): γ from 100Rh ε decay (4.6 m) only
   1097.8E(γ): γ from 100Rh ε decay (4.6 m) only
I(γ): γ from 100Rh ε decay (4.6 m) only
   2351.240    470.188E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    486.121E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1124.770E(γ): weighted average of 1124.84 3 from (α,2nγ), 1124.768 5 from (n,γ) E=th, and 1124.77 3 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100 3 from (α,2nγ), 100 5 from (n,γ) E=th, and 100 30 from (n,γ) E=res
   1811.63E(γ): weighted average of 1811.79 8 from (α,2nγ), 1811.53 6 from (n,γ) E=th, and 1811.66 8 from (n,n’γ)
I(γ): weighted average of 62 3 from (α,2nγ), 52 6 from (n,γ) E=th, 81 25 from (n,γ) E=res, and 66.4 18 from (n,n’γ)
M(γ): Q from γ(θ) in (n,n’γ); M2 ruled out by RUL
   2366.588    485.547E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1139.91E(γ): weighted average of 1139.8 7 from (α,2nγ), 1139.96 7 from (n,γ) E=th, and 1139.88 6 from (n,n’γ). level-energy difference=1140.12. Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): unweighted average of 15.0 13 from 100Rh ε decay (4.6 min), 8 7 from (α,2nγ), 14.4 18 from (n,γ) E=th, and 19.8 7 from (n,n’γ)
   1827.13E(γ): weighted average of 1827.13 5 from (α,2nγ), 1827.16 4 from (n,γ) E=th, and 1827.04 6 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100.0 25 from (α,2nγ), 100 8 from 100Rh ε decay (4.6 min) and 100 8 from (n,γ) E=th
M(γ): Q from γ(θ) in (α,2nγ) and (n,n’γ); M2 ruled out by RUL
   2387.22    288.81E(γ): level-energy difference=288.28. γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1025.13E(γ): unweighted average of 1024.9 1 from 100Tc β- decay (15.46 s), 1024.98 3 from 100Rh ε decay (20.8 h), 1025.62 9 from (n,γ) E=th, and 1025.00 5 from (n,n’γ)
I(γ): from (n,n’γ). Other: 100 22 from (n,γ) E=th, 100 4 from 100Rh ε decay (20.8 h), 100 4 from 100Tc β- decay (15.46)
   1847.68E(γ): weighted average of 1847.6 2 from 100Tc β- decay (15.46 s), 1847.57 8 from 100Rh ε decay (20.8 h), 1847.76 7 from (n,γ) E=th, and 1847.73 11 from (n,n’γ)
I(γ): unweighted average of 76 9 from 100Tc β- decay (15.46 s), 102 8 from 100Rh ε decay (20.8 h), and 76.7 20 from (n,n’γ). Other: 200 22 in (n,γ) E=th is in disagreement
E(level)E(gamma)Comments
   2413.86   1051.68E(γ): unweighted average of 1051.51 6 from (α,2nγ), 1051.57 7 from (n,γ) E=th, and 1051.96 7 from (n,n’γ)
I(γ): unweighted average of 9.5 10 from (n,γ) E=th and 15.2 5 from (n,n’γ). Other: 312 19 from (α,2nγ) is in severe disagreement
   1874.38E(γ): unweighted average of 1874.70 23 from (α,2nγ), 1874.15 5 from (n,γ) E=th, and 1874.29 6 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100 13 from (α,2nγ), 100 15 from (n,γ) E=th
M(γ): (Q), ΔJ=2 from γ(θ) in (n,n’γ); ΔJ=0 is also possible; M2 ruled out by RUL
   2469.389    228.581E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
M(γ): from α(K)exp in 100Rh ε decay (20.8 h)
    302.512E(γ): weighted average of 302.507 6 from 100Rh ε decay (20.8 h) and 302.522 8 from (n,γ) E=th
I(γ): from 100Rh ε decay (20.8 h). Other: 8.1 6 from (n,γ) E=th is in disagreement
    370.280E(γ): weighted average of 370.275 7 from 100Rh ε decay (20.8 h) and 370.283 5 from (n,γ) E=th
I(γ): from 100Rh ε decay (20.8 h). Other: 10.4 11 from (n,γ) E=th is in disagreement
M(γ): from ce data in 100Rh ε decay (20.8 h) and RUL
    588.343E(γ): weighted average of 588.343 5 from 100Rh ε decay (20.8 h), 588.30 10 from (α,2nγ), 588.47 8 from (n,γ) E=th, and 588.25 8 from (n,n’γ)
I(γ): weighted average of 36.9 4 from 100Rh ε decay (20.8 h), and 36.6 9 from (n,n’γ). Others: 68 11 from (α,2nγ), 71 9 from (n,γ) E=th are in disagreement
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h), γ(θ) in (n,n’γ), and RUL. δ(Q/d)=+0.14 16 from (n,n’γ) would give an unreasonably large B(M2)(W.u.) exceeding RUL
    604.33E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
M(γ): from ce data in 100Rh ε decay (20.8 h)
   1107.222E(γ): weighted average of 1107.223 8 from 100Rh ε decay (20.8 h), 1107.10 12 from (α,2nγ), 1107.07 6 from (n,γ) E=th, and 1107.29 5 from (n,n’γ)
I(γ): from 100Rh ε decay (20.8 h). Others: 100.0 16 from (n,n’γ), 100 11 from (α,2nγ) and 100 12 from (n,γ) E=th
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h), γ(θ) in (n,n’γ), and RUL. δ(Q/d)=-0.10 13 from (n,n’γ) would give an unreasonably large B(M2)(W.u.) exceeding RUL
   1929.804E(γ): weighted average of 1929.811 20 from 100Rh ε decay (20.8 h), 1929.74 6 from (n,γ) E=th, and 1929.80 7 from (n,n’γ)
I(γ): weighted average of 85.6 8 from 100Rh ε decay (20.8 h) and 84.1 16 from (n,n’γ). Other: 111 13 from (n,γ) E=th
M(γ): from ce data and γγ(θ) in 100Rh ε decay (20.8 h), γ(θ) in (n,n’γ), and RUL. δ(Q/d)=-0.8 9 from (n,n’γ) would give an unreasonably large B(M2)(W.u.) exceeding RUL
   2469.328E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
M(γ): from ce data in 100Rh ε decay (20.8 h)
   2493.06    430.42E(γ): unweighted average of 430.34 4 from (α,2nγ), 430.61 7 from (n,γ) E=th, and 430.32 6 from (n,n’γ)
I(γ): from (n,n’γ). Other: 100 13 in (n,γ) E=th is in disagreement
    612.02E(γ): weighted average of 612.03 6 from (n,γ) E=th, and 612.01 5 from (n,n’γ). Other: 612.055 18 from (α,2nγ) for a doublet
I(γ): from (n,n’γ). Others: 37 4 in (n,γ) E=th; doublet in (α,2nγ)
    627.83E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1266.46E(γ): unweighted average of 1266.52 22 from (α,2nγ), 1266.20 8 from (n,γ) E=th, and 1266.66 10 from (n,n’γ)
I(γ): from (n,n’γ). Other: 100 13 from (n,γ) E=th
   2512.411    345.518E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    413.42E(γ): weighted average of 413.43 7 from (n,γ) E=th and 413.28 25 from (n,n’γ)
I(γ): weighted average of 24 4 from (n,γ) E=th and 16.4 7 from (n,n’γ)
    450.04E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    631.382E(γ): weighted average of 631.35 3 from 100Rh ε decay (20.8 h), 631.41 5 from (α,2nγ), 631.393 20 from (n,γ) E=th, and 631.38 3 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100 3 from 100Rh ε decay (20.8 h), 100 6 from (n,γ) E=th, and 100 14 from (α,2nγ)
   1150.44E(γ): weighted average of 1150.6 3 from (n,γ) E=th and 1150.42 10 from (n,n’γ)
I(γ): unweighted average of 5.8 12 from (n,γ) E=th and 13.4 11 from (n,n’γ)
   1285.82E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1972.91E(γ): weighted average of 1972.91 6 from 100Rh ε decay (20.8 h), 1972.83 25 from (α,2nγ), 1972.96 7 from (n,γ) E=th, and 1972.85 9 from (n,n’γ)
I(γ): unweighted average of 63 4 from 100Rh ε decay (20.8 h), 41 10 from (α,2nγ), 36 5 from (n,γ) E=th, and 54.3 13 from (n,n’γ)
M(γ): (Q), ΔJ=(2) from γ(θ) in γ(θ) in (n,n’γ), ΔJ=0 is also possible; M2 ruled out by RUL
   2516.827    349.960E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    465.148E(γ): weighted average of 465.15 3 from 100Rh ε decay (20.8 h), 465.148 17 from (n,γ) E=th, and 465.11 15 from (n,n’γ)
I(γ): unweighted average of 22.7 2 from 100Rh ε decay (20.8 h), 25.7 19 from (n,γ) E=th, 33 3 from (n,n’γ) is in disagreement
    651.708E(γ): weighted average of 651.707 6 from 100Rh ε decay (20.8 h), 651.88 7 from (n,γ) E=th, and 651.72 4 from (n,n’γ)
I(γ): from 100Rh ε decay (20.8 h). Others: 100 3 from (n,n’γ), 100 14 from (n,γ) E=th
M(γ): from ce data in 100Rh ε decay (20.8 h) and RUL
    775.832E(γ): weighted average of 775.831 11 from 100Rh ε decay (20.8 h), 775.97 23 from (n,γ) E=th, and 775.95 13 from (n,n’γ)
I(γ): unweighted average of 21.0 3 from 100Rh ε decay (20.8 h), 10 5 from (n,γ) E=th, and 29.0 19 from (n,n’γ)
   1154.50E(γ): unweighted average of 1154.680 10 from 100Rh ε decay (20.8 h), 1154.21 13 from (n,γ) E=th, and 1154.60 8 from (n,n’γ)
I(γ): weighted average of 52.4 5 from 100Rh ε decay (20.8 h), 52 10 from (n,γ) E=th, and 49 3 from (n,n’γ)
M(γ): d from γγ(θ) in 100Rh ε decay (20.8 h); polarity from level-parity change
   1386.51E(γ): weighted average of 1386.521 10 from 100Rh ε decay (20.8 h) and 1386.43 6 from (n,n’γ). Other: 1385.86 8 from (n,γ) E=th
I(γ): unweighted average of 86.0 7 from 100Rh ε decay (20.8 h) and 100 3 from (n,n’γ), 48 5 from (n,γ) E=th
M(γ): d from γγ(θ) in 100Rh ε decay (20.8 h); polarity from level-parity change
   1977.37E(γ): unweighted average of 1977.24 4 from 100Rh ε decay (20.8 h), 1977.69 13 from (n,γ) E=th, and 1977.18 13 from (n,n’γ)
I(γ): unweighted average of 57.5 11 from 100Rh ε decay (20.8 h), 33 5 from (n,γ) E=th, and 61.3 22 from (n,n’γ)
M(γ): δ(Q/d)=0.11 15 from γγ(θ) in 100Rh ε decay (20.8 h); polarity from level-parity change
   2516.86E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
E(level)E(gamma)Comments
   2527.247    175.84E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    360.371E(γ): weighted average of 360.331 23 from (α,2nγ) and 360.373 5 from (n,γ) E=th
I(γ): unweighted average of 5.43 9 from (α,2nγ) and 6.6 4 from (n,γ) E=th
M(γ): Q from γ(θ) in (α,2nγ); M2 ruled out by RUL
    451.58E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    464.9E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1300.780E(γ): weighted average of 1300.792 12 from (α,2nγ), 1300.764 18 from (n,γ) E=th, and 1300.71 4 from (n,n’γ). Others: 1301.3 3 from (36S,α2nγ) and 1301.6 3 from (α,4nγ)
I(γ): from (α,2nγ)
M(γ): δ(Q/d)=+0.004 6 from γ(θ) in (α,2nγ), +0.05 7 from γ(θ) in (n,n’γ); δ(M2/E1)=-0.07 3 from γ(θ) and γ(lin pol) in (α,4nγ)
   2536.194    295.49E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    655.156E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    671.2E(γ): weighted average of 671.3 6 from 100Rh ε decay (20.8 h) and 671.2 3 from (n,γ) E=th
I(γ): weighted average of 1.8 4 from 100Rh ε decay (20.8 h) and 2.2 11 from (n,γ) E=th
   1173.99E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1309.65E(γ): weighted average of 1309.8 3 from 100Rh ε decay (20.8 h), 1309.5 3 from (α,2nγ), 1309.41 13 from (n,γ) E=th, and 1309.94 14 from (n,n’γ)
I(γ): weighted average of 13.5 25 from 100Rh ε decay (20.8 h), 10.0 11 from (n,γ) E=th, and 11.7 6 from (n,n’γ). Other: 42 8 in (α,2nγ) is in disagreement
   1996.62E(γ): weighted average of 1996.59 3 from 100Rh ε decay (20.8 h), 1996.81 13 from (α,2nγ), 1996.69 6 from (n,γ) E=th, and 1996.62 8 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100.0 16 from 100Rh ε decay (20.8 h), 100 8 from (α,2nγ) and 100 12 from (n,γ) E=th
   2543.71    662.68E(γ): weighted average of 662.99 21 from 100Rh ε decay (20.8 h), 662.54 17 from (n,γ) E=th, and 662.56 25 from (n,n’γ)
I(γ): weighted average of 12 3 from 100Rh ε decay (20.8 h), 6.6 3.4 from (n,γ) E=th, and 12.3 22 from (n,n’γ)
    678.62E(γ): weighted average of 678.65 3 from 100Rh ε decay (20.8 h), 678.54 14 from (α,2nγ), 678.60 7 from (n,γ) E=th, and 678.59 4 from (n,n’γ)
I(γ): weighted average of 78 6 from 100Rh ε decay (20.8 h), 71 12 from (α,2nγ), 55 7 from (n,γ) E=th, and 64.0 22 from (n,n’γ)
   1181.42E(γ): unweighted average of 1181.49 5 from 100Rh ε decay (20.8 h), 1181.43 12 from (α,2nγ), 1181.21 7 from (n,γ) E=th, and 1181.53 4 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100 6 from (α,2nγ), 100 14 from (n,γ) E=th, 100 5 from 100Rh ε decay (20.8 h)
M(γ): D+Q from γ(θ) in (n,n’γ); M2 ruled out by RUL
   1413.19E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   2004.31E(γ): weighted average of 2004.30 13 from 100Rh ε decay (20.8 h), 2004.01 13 from (α,2nγ), 2004.44 7 from (n,γ) E=th, and 2004.20 12 from (n,n’γ)
I(γ): unweighted average of 53 4 from 100Rh ε decay (20.8 h) and 42.6 17 from (n,n’γ). Others: 147 12 in (α,2nγ) and 179 23 in (n,γ) E=th are in disagreement
   2543.58E(γ): weighted average of 2543.60 9 from 100Rh ε decay (20.8 h), 2543.5 3 from (n,γ) E=th, and 2543.4 3 from (n,n’γ)
I(γ): weighted average of 49.4 24 from 100Rh ε decay (20.8 h), 36 7 from (n,γ) E=th, and 27.3 17 from (n,n’γ)
   2569.912    329.058E(γ): level-energy difference=329.096. γ from (n,γ) E=th only. Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from (n,γ) E=th only
    403.042E(γ): weighted average of 403.07 11 from 100Rh ε decay (20.8 h), 403.092 15 from (α,2nγ), 403.013 10 from (n,γ) E=th, and 403.14 4 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100 5 from (n,γ) E=th, 100 20 from 100Rh ε decay (20.8 h), 100 13 from (n,nγ) E=res
M(γ): D+Q from γ(θ) in (α,2nγ) and (n,n’γ); polarity from no level-parity change
    470.82E(γ): weighted average of 470.98 17 from 100Rh ε decay (20.8 h) and 470.82 3 from (n,γ) E=th
I(γ): weighted average of 3.7 8 from 100Rh ε decay (20.8 h) and 3.1 4 from (n,γ) E=th
    688.89E(γ): weighted average of 689.3 5 from (α,2nγ) and 688.89 3 from (n,γ) E=th
I(γ): from (n,γ) E=th
   1207.68E(γ): unweighted average of 1207.50 3 from 100Rh ε decay (20.8 h), 1207.70 5 from (α,2nγ), 1207.74 7 from (n,γ) E=th, and 1207.78 6 from (n,n’γ)
I(γ): unweighted average of 52 7 from 100Rh ε decay (20.8 h), 31 4 from (n,γ) E=th, 90 30 from (n,γ) E=res, and 70.4 21 from (n,n’γ)
   1343.47E(γ): weighted average of 1343.44 5 from 100Rh ε decay (20.8 h), 1343.49 3 from (n,γ) E=th, and 1343.39 10 from (n,n’γ)
I(γ): weighted average of 60 12 from 100Rh ε decay (20.8 h), 58 4 from (n,γ) E=th, and 51 6 from (n,n’γ)
   2030.55E(γ): weighted average of 2030.56 20 from 100Rh ε decay (20.8 h), 2030.54 8 from (n,γ) E=th, and 2030.7 3 from (n,n’γ)
I(γ): unweighted average of 11 3 from 100Rh ε decay (20.8 h), 8.0 11 from (n,γ) E=th, and 12.9 14 from (n,n’γ)
   2576.872    695.783E(γ): from (n,γ) E=th. Other: 695.8 3 from (α,2nγ)
I(γ): unweighted average of 63 3 from (α,2nγ) and 80 6 from (n,γ) E=th
M(γ): Q from γ(θ) in (n,γ) E=th, mostly likely E2
   1350.431E(γ): weighted average of 1350.40 3 from (α,2nγ), 1350.450 20 from (n,γ) E=th, and 1350.37 7 from (n,n’γ)
I(γ): from (α,2nγ). Other: 100 5 from (n,γ) E=th
E(level)E(gamma)Comments
   2591.817    240.549E(γ): γ from (n,γ) E=th only. Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from (n,γ) E=th only
    424.874E(γ): from (n,γ) E=th. Others: 424.83 21 from (α,2nγ), and 424.88 17 from (n,n’γ). Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): weighted average of 61 14 from (α,2nγ), 54 6 from (n,γ) E=th, 85 23 from (n,γ) E=res, and 41.7 14 from (n,n’γ)
    710.771E(γ): from (n,γ) E=th. Others: 710.82 5 from (α,2nγ), and 710.80 3 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100 5 from (α,2nγ), 100 6 from (n,γ) E=th, 100 12 from (n,γ) E=res
M(γ): d(+Q) from γ(θ) in (n,n’γ) and (α,2nγ); polarity from level scheme
   1229.46E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1365.415E(γ): weighted average of 1365.40 3 from (α,2nγ) and 1365.416 12 from (n,γ) E=th. Other: 1365.49 9 from (n,n’γ).. Uncertainty increased by a factor of 5 in the fitting procedure, as the γ ray fits poorly
I(γ): unweighted average of 73.9 19 from (α,2nγ), 71 4 from (n,γ) E=th, 96 8 from (n,γ) E=res, and 85.0 23 from (n,n’γ)
M(γ): d(+Q) from γ(θ) in (α,2nγ); polarity from level scheme
   1461.19E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   2052.60E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   2606.07   2066.52E(γ): weighted average of 2066.55 8 from (n,γ) E=th and 2066.49 9 from (n,n’γ)
   2617.14    752.0E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   1255.12E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   2617.09E(γ): weighted average of 2617.07 4 from 100Rh ε decay (20.8 h), 2617.32 12 from (n,γ) E=th, and 2617.09 9 from (n,n’γ)
I(γ): from 100Rh ε decay (20.8 h). Other: 100 9 from (n,γ) E=th
   2660.140    560.95E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   2120.59E(γ): weighted average of 2120.61 7 from 100Rh ε decay (20.8 h), 2120.55 11 from (n,γ) E=th, and 2120.57 11 from (n,n’γ). Other: 2121.2 7 from 100Tc β- decay (15.46 s)
I(γ): from (n,n’γ). Others: 100 20 from 100Tc β- decay (15.46 s), 100 9 from 100Rh ε decay (20.8 h), 100 10 from (n,γ) E=th
   2660.11E(γ): weighted average of 2660.09 12 from 100Rh ε decay (20.8 h), 2660.0 4 from (n,γ) E=th, and 2660.22 20 from (n,n’γ). Other: 2659.5 10 from 100Tc β- decay (15.46 s)
I(γ): weighted average of 40 20 from 100Tc β- decay (15.46 s), 20 3 from 100Rh ε decay (20.8 h), 23 7 from (n,γ) E=th, and 21.7 11 from (n,n’γ)
   2660.82    309.52E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    598.16E(γ): weighted average of 598.19 6 from (n,γ) E=th and 598.11 17 from (α,2nγ). Multiply placed with undivided intensity
I(γ): from (α,2nγ), <310 from (n,γ) E=th. Multiply placed with undivided intensity
    779.79E(γ): from (α,2nγ). Other: 778.980 14 from (n,γ) E=th differs greatly with level-energy difference
I(γ): from (n,γ) E=th. Other: 100 6 from (α,2nγ)
M(γ): from γ(θ) in (α,2nγ)
   1434.28E(γ): weighted average of 1434.21 7 from (n,γ) E=th and 1434.81 20 from (α,2nγ)
I(γ): weighted average of 116 15 from (n,γ) E=th and 78 22 from (α,2nγ)
   2666.29   1535.12E(γ): poor fit, level-energy difference=1535.82. γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   2126.86E(γ): weighted average of 2126.92 14 from 100Rh ε decay (20.8 h), 2126.91 6 from (n,γ) E=th, and 2126.68 11 from (n,n’γ)
I(γ): from (n,γ) E=th.
   2705.52    128.3E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    629.79E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    642.818E(γ): γ from (α,2nγ) only. Uncertainty increased by a factor of 4 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from (α,2nγ) only
M(γ): from γ(θ) in (α,2nγ)
   1479.143E(γ): Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
M(γ): from γ(θ) in (α,2nγ)
   2738.678    372.090E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    387.436E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    676.071E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    857.621E(γ): from (n,γ) E=th. Other: 857.71 23 from (n,n’γ)
    873.66E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
E(level)E(gamma)Comments
   2745.60    693.89E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    880.8E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   1615.29E(γ): weighted average of 1615.29 5 from 100Rh ε decay (20.8 h) and 1615.4 9 from (n,n’γ)
I(γ): from (n,n’γ). Other: 100 5 from 100Rh ε decay (20.8 h)
   2205.95E(γ): weighted average of 2205.96 14 from 100Rh ε decay (20.8 h) and 2205.93 19 from (n,n’γ)
I(γ): weighted average of 35 6 from 100Rh ε decay (20.8 h) and 40.8 14 from (n,n’γ)
   2747.495    155.68E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
M(γ): from γ(θ) in (α,2nγ) with ΔJ=0
    580.600E(γ): from (n,γ) E=th. Other: 580.52 12 from (α,2nγ)
I(γ): unweighted average of 27.5 25 from (α,2nγ) and 60 4 from (n,γ) E=th
    866.466E(γ): from (n,γ) E=th. Other: 866.29 21 from (α,2nγ)
I(γ): weighted average of 38 8 from (α,2nγ) and 39.5 18 from (n,γ) E=th
    882.63E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1520.69E(γ): weighted average of 1520.83 12 from (α,2nγ) and 1520.64 7 from (n,γ) E=th.. Uncertainty increased by a factor of 4 in the fitting procedure, as the γ ray fits poorly
I(γ): from (α,2nγ). Other: 100 13 from (n,γ) E=th
   2764.943    398.6E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    413.703E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    598.16E(γ): Multiply placed with undivided intensity
I(γ): from (n,n’γ). Other: 208 27 from (n,γ) E=th. Multiply placed with undivided intensity
    883.88E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
    899.87E(γ): γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   1538.33E(γ): weighted average of 1538.38 8 from (n,n’γ) and 1538.29 7 from (n,γ) E=th
I(γ): from (n,n’γ). Other: 100 13 from (n,γ) E=th
   2775.179    247.943E(γ): from (α,2nγ). Other: 248.11 7 from (n,n’γ)
    712.76E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   2775.34   1413.18E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   1548.73E(γ): weighted average of 1548.74 10 from (n,n’γ) and 1548.4 8 from 100Rh ε decay (20.8 h)
   2236.09E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   2785.193    709.43E(γ): γ from (α,2nγ) only. Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from (α,2nγ) only
    722.677E(γ): poor fit, level-energy difference=722.566. γ from (α,2nγ) only. Uncertainty increased by a factor of 4 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from (α,2nγ) only
M(γ): from γ(θ) in (α,2nγ)
   1558.80E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
M(γ): from γ(θ) in (α,2nγ)
   2800.84   1438.69E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   1574.24E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
E(level)E(gamma)Comments
   2801.48    141.27E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    920.6E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   2262.26E(γ): weighted average of 2262.1 5 from 100Rh ε decay (20.8 h), 2262.32 7 from (n,γ) E=th, and 2261.88 18 from (n,n’γ)
I(γ): from (n,n’γ). Others: 100 25 from 100Rh ε decay (20.8 h)
   2837.71   1475.67E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   2298.22E(γ): weighted average of 2298.4 4 from 100Tc β- decay (15.46 s) and 2298.17 20 from (n,n’γ)
I(γ): from (n,n’γ)
   2862.52    763.33E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   1500.38E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   2877.57    996.56E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1515.41E(γ): unweighted average of 1515.54 12 from (α,2nγ) and 1515.10 19 from (n,n’γ)
I(γ): from (α,2nγ)
   2337.98E(γ): γ from (n,γ) E=th only
   2878.44    779.54E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
    997.41E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   1651.89E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   2905.14   2365.50M(γ): ΔJ=2, Q from γ(θ) in (n,n’γ); M2 ruled out by RUL. ΔJ=0 is also possible
   2911.47    384.22E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
M(γ): ΔJ=0, from γ(θ) in (α,2nγ)
    544.91E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1685.30E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   2915.545    249.25E(γ): poor fit, level-energy difference=249.39. γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    255.417E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    298.55E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    345.654E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    379.24E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    398.716E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    403.07E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    748.666E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
M(γ): from ce data in 100Rh ε decay (20.8 h)
    816.454E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   1034.510E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
M(γ): from ce data in 100Rh ε decay (20.8 h)
   1553.348M(γ): from ce data in 100Rh ε decay (20.8 h)
   2375.976M(γ): from ce data in 100Rh ε decay (20.8 h)
   2915.42E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
E(level)E(gamma)Comments
   2951.10   1589.1E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   1724.62E(γ): poor fit, level-energy difference=1724.99. γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   2411.41E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   2951.552    166.38E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    245.97E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    424.318E(γ): from (α,2nγ). Others: 423.8 5 from (36S,α2nγ), and 424.3 3 from (α,4nγ)
I(γ): weighted average of 17 4 from (36S,α2nγ), 13.5 19 from (α,2nγ), and 17.4 9 from (α,4nγ)
M(γ): Q from γ(DCO) in (36S,α2nγ), γ(θ) in (α,2nγ) and (α,4nγ); ce data in (α,4nγ) indicates (E2)
    876.26E(γ): unweighted average of 876.2 1 from (36S,α2nγ), 875.878 12 from (α,2nγ), and 876.7 3 from (α,4nγ)
I(γ): from (α,2nγ). Others: 100 4 from (36S,α2nγ), 100 9 from (α,4nγ)
M(γ): from γ(θ) in (α,2nγ), γ(DCO) and γ(pol) in (36S,α2nγ), and γ(θ,pol) and ce data in (α,4nγ). δ(M2/E1)=-0.02 3 from (α,2nγ)
   2963.626    188E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    371.774E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
M(γ): Q from γ(θ) in (α,2nγ); M2 ruled out since it would require an isomeric half-life by RUL, which is unlikely.
    436.352E(γ): Multiply placed with undivided intensity
I(γ): Multiply placed with undivided intensity
    887.43E(γ): unweighted average of 888.5 5 from (36S,α2nγ), 887.981 17 from (α,2nγ), and 888.8 3 from (α,4nγ)
I(γ): from (α,2nγ). Others: 100 5 from (α,4nγ), 100 25 from (36S,α2nγ)
   2967.57    262.08E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    891.67E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
M(γ): (D+Q) from γ(θ) in (α,2nγ), most likely (M1+E2) by RUL
    904.80E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1741.24E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   2983.04   2444.25E(γ): poor fit, level-energy difference=2443.78. γ from (n,γ) E=th only
I(γ): γ from (n,γ) E=th only
   2999.32   2459.39E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   3060.051    984.81E(γ): unweighted average of 984.8 1 from (36S,α2nγ), 984.439 12 from (α,2nγ), and 985.2 3 from (α,4nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(θ) and ce data in (α,4nγ), γ(θ) in (α,2nγ)
   3060.14   1698.32E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   2520.56E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   3060.20E(γ): weighted average of 3060.25 11 from 100Rh ε decay (20.8 h) and 3059.97 24 from (n,n’γ)
   3064.61   2525.26E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
M(γ): Q from γ(θ) in (n,n’γ); M2 ruled out by RUL
   3069.525    154.007E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    409.18E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    499.599E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
M(γ): from ce data in 100Rh ε decay (20.8 h)
    533.52E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    552.706E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    600.124E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
M(γ): from ce data in 100Rh ε decay (20.8 h)
    828.70E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    902.673E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   1204.46E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   1707.44E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   2529.969M(γ): from γγ(θ) in 100Rh ε decay (20.8 h)
E(level)E(gamma)Comments
   3072.268    555.42E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    602.91E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    831.272E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    905.60E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
    973.15E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   1191.16E(γ): γ from 100Rh ε decay (20.8 h) only. Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from 100Rh ε decay (20.8 h) only
   1207.50E(γ): γ from 100Rh ε decay (20.8 h) only. Uncertainty increased by a factor of 5 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from 100Rh ε decay (20.8 h) only
   1710.07E(γ): weighted average of 1710.07 3 from 100Rh ε decay (20.8 h) and 1710.00 12 from (n,n’γ)
I(γ): from 100Rh ε decay (20.8 h). Other: 100 4 from (n,n’γ)
   3071.80E(γ): weighted average of 3071.80 12 from 100Rh ε decay (20.8 h) and 3071.86 24 from (n,n’γ). level-energy difference=3072.20. Uncertainty increased by a factor of 4 in the fitting procedure, as the γ ray fits poorly
I(γ): 100Rh ε decay (20.8 h). Other: 106 4 from (n,n’γ) is in disagreement
   3110.57    943.70E(γ): weighted average of 943.62 16 from (α,2nγ) and 943.79 16 from (n,n’γ)
   3118.67   1756.21E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   2579.28E(γ): γ from (n,n’γ) only
I(γ): γ from (n,n’γ) only
   3139.303    175.55E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    187.759E(γ): weighted average of 187.5 5 from (36S,α2nγ), 187.760 13 from (α,2nγ), and 187.4 3 from (α,4nγ)
I(γ): weighted average of 76 26 from (36S,α2nγ), 56.1 21 from (α,2nγ), and 43 5 from (α,4nγ)
    228.1E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    354.09E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    612.057E(γ): weighted average of 612.4 5 from (36S,α2nγ), 612.055 18 from (α,2nγ), and 612.4 3 from (α,4nγ)
I(γ): from (α,2nγ) for a doublet, but most intensity belongs with 3140 level. Others: 100 10 from (α,4nγ), 100 26 from (36S,α2nγ)
M(γ): from γ(θ) in (α,2nγ), γ(θ) and ce data in (α,4nγ)
   1063.8E(γ): unweighted average of 1063.3 5 from (36S,α2nγ), 1063.67 3 from (α,2nγ), and 1064.5 3 from (α,4nγ)
I(γ): from (α,2nγ). Others: <81 from (α,4nγ); 200 50 from (36S,α2nγ) is in disagreement
   3218.111    254.486E(γ): from (α,2nγ) only
M(γ): Q from γ(θ) in (α,2nγ); M2 ruled out since it would require an isomeric half-life (>0.45 μs) by RUL, which is unlikely
   3263.664    203.590E(γ): weighted average of 202.6 5 from (36S,α2nγ), 203.590 14 from (α,2nγ), and 204.0 3 from (α,4nγ)
I(γ): from (α,2nγ). Other: 100 15 from (α,4nγ)
M(γ): δ(Q/d)=+0.18 20 from γ(θ) in (α,2nγ); ΔJ=0, d from γ(DCO) in (36S,α2nγ)
    478.467E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    557.98E(γ): γ from (α,2nγ) only. Uncertainty increased by a factor of 4 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from (α,2nγ) only
   1188.012E(γ): weighted average of 1188.012 20 from (α,2nγ) and 1188.1 10 from (α,4nγ)
I(γ): from (α,2nγ). Other: 100 15 from (α,4nγ)
M(γ): from γ(θ) in (α,2nγ)
   3323.70    806.93E(γ): γ from 100Rh ε decay (20.8 h) only. Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from 100Rh ε decay (20.8 h) only
    854.32E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   1224.63E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   1272.01E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   2193.40E(γ): γ from 100Rh ε decay (20.8 h) only. Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from 100Rh ε decay (20.8 h) only
   2784.29E(γ): γ from 100Rh ε decay (20.8 h) only. Uncertainty increased by a factor of 5 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from 100Rh ε decay (20.8 h) only
   3323.91E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
E(level)E(gamma)Comments
   3354.637     91.7E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    215.48E(γ): γ from (α,2nγ) only. Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from (α,2nγ) only
    294.61E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    390.981E(γ): from (α,2nγ). Others: 390.9 5 from (36S,α2nγ) and 391.0 3 from (α,4nγ)
I(γ): from (α,2nγ). Others: 100 6 from (α,4nγ), 100 17 from (36S,α2nγ)
M(γ): from γ(θ,pol) and ce data in (α,4nγ), γ(DCO) in (36S,α2nγ), and γ(θ) in (α,2nγ)
    403.092E(γ): from (α,2nγ). Others: 403.7 5 from (36S,α2nγ) and 403.2 3 from (α,4nγ)
I(γ): from (α,2nγ). Others: 67 17 from (36S,α2nγ), 55 3 from (α,4nγ)
M(γ): from γ(θ,pol) and ce data in (α,4nγ)
   3368.982    229.69E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    405.5E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    417.407E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    593.93E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   3419.13   2879.43E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   3419.4E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   3446.56    785.70E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    869.69E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1370.95E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   3463.43    140.03E(γ): γ from 100Rh ε decay (20.8 h) only. Uncertainty increased by a factor of 5 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from 100Rh ε decay (20.8 h) only
   1582.9E(γ): γ from 100Rh ε decay (20.8 h) only
I(γ): γ from 100Rh ε decay (20.8 h) only
   3464.8E(γ): γ from 100Rh ε decay (20.8 h) only. Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): γ from 100Rh ε decay (20.8 h) only
   3503.365    148.720E(γ): from (α,2nγ). Others: 148.1 5 from (36S,α2nγ) and 148.6 3 from (α,4nγ)
I(γ): weighted average of 17 8 from (36S,α2nγ), 24.7 11 from (α,2nγ), and 25.8 16 from (α,4nγ)
    239.74E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    364.055E(γ): from (α,2nγ). Others: 363.7 5 from (36S,α2nγ) and 364.2 3 from (α,4nγ)
I(γ): weighted average of 42 8 from (36S,α2nγ), 55.5 7 from (α,2nγ), and 60 3 from (α,4nγ)
M(γ): from γ(θ,pol) and ce data in (α,4nγ), γ(θ) in (α,2nγ)
    443.317E(γ): from (α,2nγ). Others: 442.8 5 from (36S,α2nγ) and 443.3 3 from (α,4nγ)
I(γ): weighted average of 67 17 from (36S,α2nγ), 76.0 11 from (α,2nγ), and 73 5 from (α,4nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(θ,pol) and ce data (α,4nγ), γ(θ) in (α,2nγ).
    551.883E(γ): weighted average of 552.3 3 from (36S,α2nγ), 551.881 14 from (α,2nγ), and 552.2 3 from (α,4nγ). Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): from (α,2nγ). Others: 100 7 from (α,4nγ), 100 8 from (36S,α2nγ)
   3550.10    490.05E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    765.04E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    844.47E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1474.37E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
E(level)E(gamma)Comments
   3575.51    436.352E(γ): Multiply placed with undivided intensity. γ from (α,2nγ) only. Uncertainty increased by a factor of 5 in the fitting procedure, as the γ ray fits poorly
I(γ): Multiply placed with undivided intensity. γ from (α,2nγ) only
    515.47E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    623.933E(γ): from (α,2nγ). Others: 623.8 3 from (36S,α2nγ) and 624.2 3 from (α,4nγ). Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): from (α,2nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(θ,pol) and ce data (α,4nγ), γ(θ) in (α,2nγ).
   3576.43    129.94E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    312.62E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    608.9E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    870.99E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    999.54E(γ): poor fit, level-energy difference=999.22. γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   3599.301    244.41E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    381.21E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    460.01E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    647.752E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   3609.96    948.98E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1534.40E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   3661.48    886.5E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1134.21E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   3851.5    883.8E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1274.7E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   3929.64    666.15E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    961.93E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   3960.36    605.72E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    742.27E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   3992.13    416.8E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    488.671E(γ): weighted average of 489.0 5 from (36S,α2nγ), 488.671 20 from (α,2nγ), and 489.3 3 from (α,4nγ). Uncertainty increased by a factor of 4 in the fitting procedure, as the γ ray fits poorly
I(γ): weighted average of 67 17 from (36S,α2nγ), 54.3 7 from (α,2nγ), and 46 8 from (α,4nγ)
M(γ): from γ(θ,pol) and ce data in (α,4nγ), γ(θ) in (α,2nγ).
    637.47E(γ): weighted average of 637.8 5 from (36S,α2nγ), 637.44 7 from (α,2nγ), and 637.7 2 from (α,4nγ)
I(γ): from (α,4nγ). Others: 100 11 from (α,2nγ), 100 17 from (36S,α2nγ)
M(γ): from γ(θ,pol) and ce data in (α,4nγ), γ(θ) in (α,2nγ), γ(DCO) in (36S,α2nγ)
E(level)E(gamma)Comments
   4075.93    477.1E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    572.41E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    936.94E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4083.30    819.63E(γ): weighted average of 821.4 10 from (36S,α2nγ) and 819.62 7 from (α,2nγ)
I(γ): weighted average of 3.7 19 from (36S,α2nγ) and 7.1 5 from (α,2nγ)
   1023.75E(γ): unweighted average of 1024.0 1 from (36S,α2nγ), 1023.252 15 from (α,2nγ), and 1024.0 3 from (α,4nγ)
I(γ): from (α,2nγ). Other: 100 8 from (36S,α2nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(θ,pol) and ce data in (α,4nγ), γ(θ) in (α,2nγ)
   4097.38    521.86E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    728.48E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4230.56    238.351E(γ): from (α,2nγ). Others: 238.5 10 from (36S,α2nγ) and 238.2 3 from (α,4nγ). Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
I(γ): from (α,2nγ), but 6.7 33 in (36S,α2nγ) is in disagreement
    727.34E(γ): weighted average of 727.8 3 from (36S,α2nγ), 727.340 20 from (α,2nγ), and 727.7 3 from (α,4nγ). Uncertainty increased by a factor of 5 in the fitting procedure, as the γ ray fits poorly
I(γ): from (α,2nγ). Other: 100 6 from (α,4nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(θ) and ce data in (α,4nγ), γ(θ) in (α,2nγ)
   4235.82    636.54E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    660.34E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    732.46E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4235.84    152.56E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    972.13E(γ): weighted average of 973.6 10 from (36S,α2nγ), and 973.13 6 from (α,2nγ)
I(γ): from (α,2nγ), but 8 4 in (36S,α2nγ) is in disagreement
   1175.776E(γ): from (α,2nγ). Other: 1177.9 3 in (36S,α2nγ) is discrepant
I(γ): from (α,2nγ). Other: 100 8 from (36S,α2nγ)
   4248.49    673.05E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    893.77E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4315.73    740.222E(γ): from (α,2nγ). Others: 740.3 5 from (36S,α2nγ) and 740.6 3 from (α,4nγ)
I(γ): from (α,2nγ)
M(γ): from γ(θ,pol) in (α,4nγ), γ(θ) in (α,2nγ)
    812.39E(γ): poor fit, level-energy difference=812.89. γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4343.44    896.79E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1079.98E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4353.36    270.08E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    803.26E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1293.30E(γ): weighted average of 1293.9 5 from (36S,α2nγ) and 1293.30 3 from (α,2nγ)
   4381.83    935.37E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1117.99E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
E(level)E(gamma)Comments
   4408.63    178.05E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1054.01E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4503.48    419.92E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    953.38E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4663.44    433.00E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    565.7E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1160.05E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4791.59    288.08E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    438.4E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    555.69E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    708.5E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    861.93E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   1731.7E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   4798.15    806.021M(γ): Q from γ(θ) in (α,2nγ) and (α,4nγ), polarity from ce data in (α,4nγ)
   4818.58    582.82M(γ): from γ(θ) in (α,2nγ) with ΔJ=(0)
   4917.97    564.54E(γ): weighted average of 564.9 5 from (36S,α2nγ) and 564.51 15 from (α,2nγ)
I(γ): weighted average of 25 4 from (36S,α2nγ) and 24 4 from (α,2nγ)
    688.2E(γ): γ from (36S,α2nγ) only
    834.95E(γ): unweighted average of 835.2 1 from (36S,α2nγ), 834.45 8 from (α,2nγ), and 835.2 3 from (α,4nγ)
I(γ): from (α,2nγ). Other: 100 7 from (36S,α2nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(θ) and ce data in (α,4nγ), γ(θ) in (α,2nγ)
   5010.49    191.93E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    218.87E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    774.4E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    927.6E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   5066.19    750.8E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    830.39E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
    835.20E(γ): γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
E(level)E(gamma)Comments
   5126.3   1043.0E(γ): unweighted average of 1042.03 13 from (α,2nγ) and 1044.0 3 from (α,4nγ)
   5162.52    846.73E(γ): weighted average of 847.5 5 from (36S,α2nγ) and 846.71 9 from (α,2nγ)
I(γ): from (α,2nγ), but 33 8 in (36S,α2nγ) is in disagreement
    932.2E(γ): unweighted average of 932.7 3 from (36S,α2nγ), 931.72 3 from (α,2nγ), and 932.4 3 from (α,4nγ)
I(γ): from (α,2nγ). Other: 100 8 from (36S,α2nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(θ) and ce data in (α,4nγ), γ(θ) in (α,2nγ)
   5274.67    959.06E(γ): weighted average of 959.6 5 from (36S,α2nγ) and 959.03 12. Other: 962.1 3 in (α,4nγ) seems discrepant
I(γ): from (α,2nγ)
M(γ): (Q) from γ(θ) in (α,2nγ); (E2,M1) from γ(θ) and ce data in (α,4nγ)
   1043.80E(γ): poor fit, level-energy difference=1044.45. γ from (α,2nγ) only
I(γ): γ from (α,2nγ) only
   5307.2   1223.9E(γ): γ from (36S,α2nγ) only
   5713.31    795.34E(γ): weighted average of 795.5 1 from (36S,α2nγ), 795.30 5 from (α,2nγ), and 795.5 3 from (α,4nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(θ) and ce data in (α,4nγ), γ(θ) in (α,2nγ)
   5784.4    986.2E(γ): γ from (36S,α2nγ) only
   6167.2   1004.7E(γ): γ from (36S,α2nγ) only
   6283.7   1009.0E(γ): γ from (36S,α2nγ) only
   6365.2   1058.0E(γ): γ from (36S,α2nγ) only
   6714.81   1001.5E(γ): from (36S,α2nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(DCO) in (34S,2α,2nγ)
   6885.1   1100.7E(γ): γ from (36S,α2nγ) only
   7203.7   1036.5E(γ): weighted average of 1036.6 3 from (36S,α2nγ), and 1036.3 3 from (α,4nγ)
M(γ): Q from γ(DCO) in (36S,α2nγ) and γ(θ) in (α,4nγ), polarity from ce data in (α,4nγ)
   7408.6   1043.4E(γ): γ from (36S,α2nγ) only
   7827.02   1112.2E(γ): from (36S,α2nγ)
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(DCO) in (34S,2α2nγ)
   8018.2   1133.1E(γ): γ from (36S,α2nγ) only
   8450.6   1042.0E(γ): γ from (36S,α2nγ) only
   8458.7   1255.0E(γ): γ from (36S,α2nγ) only
   9057.73   1230.7M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(DCO) in (34S,2α2nγ)
   9178.8   1160.6E(γ): γ from (36S,α2nγ) only
   9673.32   6210.36E(γ): Uncertainty increased by a factor of 5 in the fitting procedure, as the γ ray fits poorly
   6602.37E(γ): Uncertainty increased by a factor of 5 in the fitting procedure, as the γ ray fits poorly
   6690.06E(γ): level-energy difference=6689.8
   7203.40E(γ): Uncertainty increased by a factor of 3 in the fitting procedure, as the γ ray fits poorly
E(level)E(gamma)Comments
   9796.7   1338.0E(γ): γ from (36S,α2nγ) only
  10378.14   1320.4E(γ): from (36S,α2nγ). γ from (36S,α2nγ) only
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(DCO) in (34S,2α2nγ)
  10403.3   1224.5E(γ): γ from (36S,α2nγ) only
  11738.5   1360.4E(γ): from (36S,α2nγ). γ from (36S,α2nγ) only
M(γ): Q from γ(DCO) in (36S,α2nγ) and (34S,2α2nγ); E2 indicated by γ(pol) in (36S,α2nγ)
  11746.3   1343.0E(γ): γ from (36S,α2nγ) only
  13170.0   1431.4E(γ): from (36S,α2nγ). γ from (36S,α2nγ) only
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(DCO) in (34S,2α2nγ)
  13309.3   1563.0E(γ): γ from (36S,α2nγ) only
  14738.2   1568.2E(γ): from (36S,α2nγ). γ from (36S,α2nγ) only
M(γ): from γ(DCO) and γ(pol) in (36S,α2nγ), γ(DCO) in (34S,2α2nγ)
  14933.3   1624.0E(γ): γ from (36S,α2nγ) only
  14938.1   1768.1E(γ): γ from (36S,α2nγ) only
  16105.8   1167.7E(γ): γ from (36S,α2nγ) only
I(γ): γ from (36S,α2nγ) only
   1367.6E(γ): γ from (36S,α2nγ) only
I(γ): γ from (36S,α2nγ) only
  16648.4   1910.2E(γ): γ from (36S,α2nγ) only
  17740.7   1092.3E(γ): γ from (36S,α2nγ) only
I(γ): γ from (36S,α2nγ) only
   1634.9E(γ): γ from (36S,α2nγ) only
I(γ): γ from (36S,α2nγ) only
  20197.7   2457.0E(γ): γ from (36S,α2nγ) only

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