ADOPTED LEVELS, GAMMAS for 141Pr

Author: N. Nica |  Citation: Nucl. Data Sheets 187,1 (2023) |  Cutoff date: 12-Oct-2022 

 Full ENSDF file | Adopted Levels (PDF version) 


Q(β-)=-1823.0 keV 28S(n)= 9400 keV 6S(p)= 5229.3 keV 12Q(α)= -1298.6 keV 22
Reference: 2021WA16

References:
  A  141Ce β- decay  B  141Nd ε decay (2.49 H)
  C  141Nd ε decay (62.0 S)  D  145Pm α decay
  E  138Ba(7Li,4nγ)  F  139La(3He,n)
  G  139La(α,2nγ)  H  140Ce(p,p),(pol p,p) IAR
  I  140Ce(d,n)  J  140Ce(3He,d)
  K  140Ce(7Li,6He)  L  140Ce(16O,15N)
  M  141Pr(γ,γ’)  N  141Pr(γ,n),(γ,p),(E,E’)
  O  141Pr(n,n’γ)  P  141Pr(d,d’),(α,α’)
  Q  Coulomb Excitation  R  142Ce(p,2nγ)
  S  142Nd(d,3He)  T  144Nd(p,α)
  U  142Nd(E,E’p) 

General Comments:

Levels: 141Pr has 59 protons and 82 neutrons which gives no valence neutrons above n=82 closed shell but 9 valence protons above Z=50 closed shell whose excitations are responsible for high-spin states Jπ values

Levels: Possible configurations ((7Li,4nγ), 2015Li21): π(g7/2d5/2)9 up to 23/2+ and π(g7/2d5/2)7h11/22 up to 45/2+ for positive-parity states; π(g7/2d5/2)8h11/21 for negative-parity states

Q-value: S(2n)=17329 4, S(2p)=13370.1 15 (2021Wa16)










E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
      0.0ABCDE GHIJKLMNOPQRSTU 5/2+ STABLE      
    145.4434 14 ABC EFG IJK M OPQRSTU 7/2+ 1.85 ns 3     145.4433 14 
  100
M1+E2
      0.0
5/2+
   1117.67 6   C E G IJK M OP RSTU 11/2- 4.8 ns 1     972.14 10 
  1117.60 11 
  100.0 3 
   11.4 3 
M2(+E3)
E3
    145.4434
      0.0
7/2+
5/2+
   1126.83 10  B    G     M O QR    3/2+ > 188 fs    981.1 3 
  1126.50 21 
    2.77 10 
  100.00 10 
(E2)
M1+E2
    145.4434
      0.0
7/2+
5/2+
   1292.69 9  B    G     M O QR    (5/2)+ 0.33 ps +10-7    1146.90 22 
  1292.53 22 
   66.7 8 
  100.0 8 
E2
E2+M1
    145.4434
      0.0
7/2+
5/2+
   1298.71 14  B    G IJKL  OP RSTU 1/2+ 0.34 ps +22-10    1298.44 22 
  100
E2
      0.0
5/2+
   1436.12 12  B    G     M OP R    3/2+ 0.23 ps +8-5     309.36 21 
  1290.67 24 
  1436.1 3 
    2.9 15 
  100.0 15 
   88.0 15 
(E2+M1)
(E2)
(E2+M1)
   1126.83
    145.4434
      0.0
3/2+
7/2+
5/2+
   1452.36 9  BC   G     M OP R    (7/2)+ 0.31 ps +11-7    1306.63 21 
  1452.20 24 
  100.0 5 
   22.6 5 
M1+E2
(M1+E2)
    145.4434
      0.0
7/2+
5/2+
   1455.5 3       G               +     1455.5 3 
  100

      0.0
5/2+
   1457.36 10     E G     M OP R    9/2+ 0.26 ps +7-5     339.15 24 
  1311.83 22 
  1457.42 23 
    1.23 14 
  100.0 6 
   35.0 6 
(E1)
M1+E2
(E2)
   1117.67
    145.4434
      0.0
11/2-
7/2+
5/2+
   1491.9            M                
   1493.98 12     EFG       OPQR    11/2+ 0.46 ps +36-15    1348.51 22 
  100
E2
    145.4434
7/2+
   1510.3 11 ?            M                
   1520.89 10   C E G     M OP R    9/2+ 150 fs +19-16     402.87 23 
  1375.56 25 
  1520.98 22 
    2.05 11 
   11.7 3 
  100.0 3 
(E1)
(E2+M1)
E2
   1117.67
    145.4434
      0.0
11/2-
7/2+
5/2+
   1559.0 10             M             1559
  100

      0.0
5/2+
   1580.05 10  B    G     M OPQR    5/2- 0.22 ps +6-4     287.06 22 
  1434.54 25 
  1580.06 25 
    3.06 14 
  100.0 7 
   35.8 7 
(E1)
E1
(E1)
   1292.69
    145.4434
      0.0
(5/2)+
7/2+
5/2+
   1596.6 12 ?            M                
   1608.26 18  B    G IJKLM OPQRST  (3/2)+ 11.8 fs 7    1608.20 23 
  100
(E2+M1)
      0.0
5/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   1650.85 11       G     M OP R    (9/2+) 132 fs +21-17     532.6 2 
  1506.1 3 
  1651.39 23 
   12
    8.58 22 
  100.00 22 
[E1]
(E2+M1)
(E2)
   1117.67
    145.4434
      0.0
11/2-
7/2+
5/2+
   1657.07 16  B      IJ  M O  R T  1/2+ > 0.67 ps    358.17 23 
   530.03 21 
  1657.5 3 
   16.6 8 
  100.0 17 
   93.9 17 

E2
(E2)
   1298.71
   1126.83
      0.0
1/2+
3/2+
5/2+
   1666?            M                
   1767.36 13     E G       OP R    13/2+ > 0.37 ps    273.38 21 
   310.3 3 
   649.62 21 
   23.1 9 
    3.4 1 
  100.0 9 
M1+E2
(E2)
E1
   1493.98
   1457.36
   1117.67
11/2+
9/2+
11/2-
   1786.47 14             M O QR    (5/2+) 0.19 ps +5-4     494.6 3 
   658.8 3 
  1640.9 3 
  1786.40 25 
 
    4.9 3 
   46.7 11 
  100.0 11 

(E2+M1)
(E2+M1)
(E2+M1)
   1292.69
   1126.83
    145.4434
      0.0
(5/2)+
3/2+
7/2+
5/2+
   1796.21 16     E G       OP R    15/2+ 1.0 ns 1      28.9 2 
   302.6 3 
   57 2 
  100 3 
(M1)
E2
   1767.36
   1493.98
13/2+
11/2+
   1812.37 14               OP R    (9/2+) 0.8 ps +12-3     359.74 22 
  1667.13 24 
  1812.7 3 
   15.3 7 
  100.0 13 
   52.8 12 
(E2+M1)
(E2+M1)
(E2)
   1452.36
    145.4434
      0.0
(7/2)+
7/2+
5/2+
   1816            M                
   1842.14 14       G     M OP R    (7/2+) 0.70 ps +59-22     384.8 3 
   389.8 3 
  1696.6 3 
  1842.1 3 
    1.9 3 
    1.4 3 
   54.6 11 
  100.0 11 
(E2+M1)
(E2+M1)
(E2+M1)
(E2+M1)
   1457.36
   1452.36
    145.4434
      0.0
9/2+
(7/2)+
7/2+
5/2+
   1849.0 10             M             1849
  100

      0.0
5/2+
   1853.79 12       G       O  R    (11/2+) 0.8 ps +16-3     332.66 22 
   396.51 25 
  1708.7 3 
  1853.8 8 
    1.1 11 
    6.3 4 
  100.0 4 
   32 6 
(E2+M1)
(E2+M1)
(E2)

   1520.89
   1457.36
    145.4434
      0.0
9/2+
9/2+
7/2+
5/2+
   1910.49 20 ?              O           1764.5 2 ?
  1910.5 2 ?
   72
  100


    145.4434
      0.0
7/2+
5/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   1912.9 8       G     M              145.7
   795.1
 
 


   1767.36
   1117.67
13/2+
11/2-
   1943.3 11             M                
   1975.26 15             M O  R    (3/2+) 0.39 ps +19-10     394.52 25 
   523.0 3 
   848.6 3 
  1830.0 6 
  1976.0 5 
    3.7 12 
   17 1 
   65.9 17 
   57.6 15 
  100 2 
(E1)
(E2)
(E2+M1)
(E2)
(E2+M1)
   1580.05
   1452.36
   1126.83
    145.4434
      0.0
5/2-
(7/2)+
3/2+
7/2+
5/2+
   1986.08 16     E G       O  R    (13/2+) > 0.42 ps    218.67 22 
   465.41 25 
   868.4 3 
    7.5 10 
   14.9 10 
  100.0 13 
(E2+M1)
(E2)
(E1)
   1767.36
   1520.89
   1117.67
13/2+
9/2+
11/2-
   2000.27 22               O       (13/2-) 0.13 ps +11-5     882.59 21 
  100
(E2+M1)
   1117.67
11/2-
   2000.47 15   C           OP R    (9/2)- 0.22 ps +12-6     349.58 25 
   542.8 3 
   548.1 3 
   883.1 3 
  1855.2 6 
    3.1 3 
    4.5 3 
   25.7 21 
 
  100.0 3 
(E1)
(E1)
(E1)

(E1)
   1650.85
   1457.36
   1452.36
   1117.67
    145.4434
(9/2+)
9/2+
(7/2)+
11/2-
7/2+
   2003.84 23               OP R    (11/2+) 0.7 ps +10-3     545.7 3 
  1858.2 7 
    3 3 
  100.0 3 
(E2+M1)
(E2)
   1457.36
    145.4434
9/2+
7/2+
   2006.9 11             M                
   2018.12 15             M O       (3/2+) 0.40 ps +26-12     438.27 25 
   565.1 2 ?
   719.5 3 
   725.2 3 
  1872.1 4 
  2017.5 4 
    8.7 7 
 
   15.9 11 
    5.1 9 
   51.5 15 
  100.0 16 
E1

(E2+M1)
(E2+M1)
(E2)
(E2+M1)
   1580.05
   1452.36
   1298.71
   1292.69
    145.4434
      0.0
5/2-
(7/2)+
1/2+
(5/2)+
7/2+
5/2+
   2045.11 16               O       9/2+ 0.68 ps +86-25     524.1 4 
  1900.01 22 
 
  100

E2+M1
   1520.89
    145.4434
9/2+
7/2+
   2068.84 15     E G          R    17/2+      272.7 1 
   301.4 1 
  100 2 
    2.8 2 
M1+E2

   1796.21
   1767.36
15/2+
13/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2075.50 12               O       (5/2+) 0.22 ps +9-6     425.19 22 
   495.27 22 
   623.02 22 
   782.8 3 
   948.6 3 
  1929.7 4 
  2075.1 5 
    7.1 10 
   11.8 10 
   17.0 13 
   32.1 16 
  100.0 21 
   56.4 18 
   36.8 16 
(E2)
(E1)
(E2+M1)
(E2+M1)
(E2+M1)
(E2+M1)
(E2+M1)
   1650.85
   1580.05
   1452.36
   1292.69
   1126.83
    145.4434
      0.0
(9/2+)
5/2-
(7/2)+
(5/2)+
3/2+
7/2+
5/2+
   2100.91 25               O       (3/2+,5/2+) 0.17 ps +7-4     664.4 3 
   974.4 5 
  2102.0 6 
   13.7 8 
  100.0 14 
   13.5 13 
(E2+M1)
(E2+M1)
(E2+M1)
   1436.12
   1126.83
      0.0
3/2+
3/2+
5/2+
   2105.02 18             M OP R    (5/2-) 87 fs +15-11     525.3 3 
   652.7 3 
  1959.4 4 
  2104.9 5 
    8.2 10 
   24.9 10 
  100.0 18 
   67.5 18 
(E2+M1)
(E1)
(E1)
(E1)
   1580.05
   1452.36
    145.4434
      0.0
5/2-
(7/2)+
7/2+
5/2+
   2105.5 3               O       (7/2-,15/2-) 0.15 ps +49-8     987.8 3 
  100
(E2)
   1117.67
11/2-
   2106.2 7             M         (5/2-)     1961
  2106
  100 15 
  347 15 


    145.4434
      0.0
7/2+
5/2+
   2108.20 23     E G       O  R    15/2(+) > 28 fs    122.3 3 
   311.9 4 
   340.9 5 
   18.4 20 
  100 4 
   42.9 20 

(E2+M1)
(E2+M1)
   1986.08
   1796.21
   1767.36
(13/2+)
15/2+
13/2+
   2126.10 15               O  R    (11/2+) > 114 fs    272.28 22 
   604.9 3 
   631.8 3 
   669
  1008.8 3 
  1981.4 5 
   68 9 
   41 5 
   43 4 
   92
  100 6 
   32 4 
(E2+M1)
(E2+M1)
(E2+M1)
(E2+M1)
(E1)
(E2)
   1853.79
   1520.89
   1493.98
   1457.36
   1117.67
    145.4434
(11/2+)
9/2+
11/2+
9/2+
11/2-
7/2+
   2135.51 21             M O       (7/2-) 0.27 ps +11-7     678.3 3 
   682.9 4 
  1990.0 5 
  2135.5 5 
   27.2 10 
    5.0 10 
   35.6 13 
  100.0 17 
(E1)
(E1)
(E1)
(E1)
   1457.36
   1452.36
    145.4434
      0.0
9/2+
(7/2)+
7/2+
5/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2154.5 4               O       (1/2+,3/2,5/2+)      855.2 2 ?
   861.8 3 
 
 


   1298.71
   1292.69
1/2+
(5/2)+
   2171.86 25               O  R    (5/2-,7/2-,9/2-) 101 fs +18-15     520.9 3 
  2026.6 4 
    8.7 7 
  100.0 7 
(E1)
(E1)
   1650.85
    145.4434
(9/2+)
7/2+
   2178 10                P      (5/2-)        
   2188.15 20               O       (3/2+) 0.26 ps +24-9     736.0 3 
   751.9 3 
  2042.5 5 
  2188.0 6 
   61 3 
   47.9 22 
  100 3 
   33 3 
(E2)
(E2+M1)
(E2)
(E2+M1)
   1452.36
   1436.12
    145.4434
      0.0
(7/2)+
3/2+
7/2+
5/2+
   2190.36 20               O       (1/2-) > 215 fs    897.6 2 
  2044.7 7 
  2190.8 5 
 
    7 3 
  100 3 

(E3)
(M2)
   1292.69
    145.4434
      0.0
(5/2)+
7/2+
5/2+
   2205.96 21               O  R    (11/2+) 171 fs +40-28     352.7 3 
   752.7 5 
  2060.6 4 
    3.5 7 
 
  100.0 7 
(E2+M1)

(E2)
   1853.79
   1452.36
    145.4434
(11/2+)
(7/2)+
7/2+
   2228.84 14               O       (5/2+,7/2+) 0.7 ps +61-4     386.95 25 
   649.0 3 
   776.62 25 
   935.8 3 
  2082.8 5 
  2228.2 5 
    8.9 18 
  100 36 
    8.0 16 
    8.0 18 
   52 3 
   38.0 25 
(E2+M1)
(E1)
(E2+M1)
(E2+M1)
(E2+M1)
(E2+M1)
   1842.14
   1580.05
   1452.36
   1292.69
    145.4434
      0.0
(7/2+)
5/2-
(7/2)+
(5/2)+
7/2+
5/2+
   2230.3 4               O            736.3 3 
  100

   1493.98
11/2+
   2234 5             M         3/2        
   2243.15 16       G       O  R         749.17 10 
  100
D+(Q)
   1493.98
11/2+
   2247.7 4             M O       (3/2-,5/2-) 147 fs +35-25    1120.9 4 
  2247.6 5 
   12.5 18 
  100.0 18 
(E1)
(E1)
   1126.83
      0.0
3/2+
5/2+
   2254.0 18               OP      +     2254.0 18 
  100

      0.0
5/2+
   2264.49 17               O       (3/2+) 0.18 ps +10-7     684.8 3 
   812.4 4 
   828.1 3 
   965.9 4 
  2118.6 5 
  2264.0 5 
   12.0 22 
   10 3 
   18 4 
   17 3 
  100 4 
   49 3 
(E1)
(E2)
(E2+M1)
(E2+M1)
(E2)
(E2+M1)
   1580.05
   1452.36
   1436.12
   1298.71
    145.4434
      0.0
5/2-
(7/2)+
3/2+
1/2+
7/2+
5/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2267.20 18      F      M O       (1/2+) > 184 fs    291.65 25 
   975.0 3 
  2267.1 3 
    6 5 
 
  100 5 
(E2+M1)

(E2)
   1975.26
   1292.69
      0.0
(3/2+)
(5/2)+
5/2+
   2270.1 10             M             2270
  100

      0.0
5/2+
   2296.0 10             M             2296
  100

      0.0
5/2+
   2302.6 4               O       (5/2+,7/2+,9/2+) 0.25 ps +15-7    1009.2 4 
  2158.3 5 
 
  100

(E2+M1)
   1292.69
    145.4434
(5/2)+
7/2+
   2310.0 11             M                
   2315.65 20               OP      (5/2,7/2) 130 fs +35-24    1022.9 3 
  2169.9 5 
  2315.7 5 
   96 3 
   39.0 19 
  100 3 
Q+D
Q+D

   1292.69
    145.4434
      0.0
(5/2)+
7/2+
5/2+
   2336.54 21               O       (15/2-) > 28 fs    816.03 25 
  1218.3 3 
   80 11 
  100 11 
(E3)
(E2)
   1520.89
   1117.67
9/2+
11/2-
   2341.0 11             M                
   2345.87 15               O       (9/2+) 0.21 ps +26-8     559.0 3 
   851.76 23 
  1052.6 3 
  1229.8 3 
  2199.5 6 
  2345.1 6 
   51 4 
   66 4 
   90 5 
   37 7 
   55 5 
  100 6 
[E2]
(E2+M1)
(E2)
(E1)
(E2+M1)
(E2)
   1786.47
   1493.98
   1292.69
   1117.67
    145.4434
      0.0
(5/2+)
11/2+
(5/2)+
11/2-
7/2+
5/2+
   2353.7 19             M O           2353.7 19 
  100

      0.0
5/2+
   2362.85 20               O       (5/2-) 39 fs +10-8     754.64 24 
  1064.4 4 ?
  1235.7 3 
  2217.0 6 
  2362.5 6 
   16.4 14 
   15 3 
  100 3 
   12.4 14 
   39.6 19 
(E1)

(E1)
(E1)
(E1)
   1608.26
   1298.71
   1126.83
    145.4434
      0.0
(3/2)+
1/2+
3/2+
7/2+
5/2+
   2364.8 8 ?              O           1237.9 2 ?
  1246.7 2 ?
 
 


   1126.83
   1117.67
3/2+
11/2-
   2382.2 3   C           OP R    (9/2-,11/2-) 0.24 ps +28-9     861.3 3 
  1264.5 4 
  100.0 17 
   38.1 17 
(E1)
(E2+M1)
   1520.89
   1117.67
9/2+
11/2-
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2399.28 22 ?              O           1281.3 2 ?
  100

   1117.67
11/2-
   2403.13 24               O       (9/2+) 0.49 ps +85-20     945.8 3 
  2257.5 5 
  2403.2 5 
   43.2 19 
   24.7 17 
  100.0 24 
(E2+M1)
(E2+M1)
(E2)
   1457.36
    145.4434
      0.0
9/2+
7/2+
5/2+
   2419.9 3               O       (9/2+) 0.5 ps +17-2     925.9 3 
  2274.2 6 
  2419.9 6 
   39 4 
  100 8 
   69 13 
(E2+M1)
(E2+M1)
(E2)
   1493.98
    145.4434
      0.0
11/2+
7/2+
5/2+
   2453.1 3             M O       (3/2-,5/2-) 18.7 fs +35-28    1326.4 3 
  2452.7 6 
    9 8 
  100 8 
(E1)
(E1)
   1126.83
      0.0
3/2+
5/2+
   2454.20 22               O       (15/2+) > 94 fs    449.91 22 
   687.32 23 
   64 5 
  100 5 
(E2)
(E2+M1)
   2003.84
   1767.36
(11/2+)
13/2+
   2461.79 21               O       (5/2+) 136 fs +57-33     810.5 3 
  1026.2 4 
  1335.0 4 
  2462.2 6 
   23.1 22 
   21.3 20 
   24.7 20 
  100 3 
(E2)
(E2+M1)
(E2+M1)
(E2+M1)
   1650.85
   1436.12
   1126.83
      0.0
(9/2+)
3/2+
3/2+
5/2+
   2473.2 3 ?              O       (1/2-,9/2-) > 14 fs    368.16 21 
  100
(E2)
   2105.02
(5/2-)
   2480            M                
   2499.08 22 ?              O           1381.1 2 ?
  100

   1117.67
11/2-
   2499.76 25             M O       (5/2+,7/2+,9/2+) 102 fs +28-19    1046.5 4 
  2354.8 3 
   19.6 14 
  100.0 14 
(E2+M1)
(E2+M1)
   1452.36
    145.4434
(7/2)+
7/2+
   2520.15 21             M O       (3/2+) 0.2 ps +18-1     501.5 3 
  1085.0 4 
  1227.3 4 
  2374.6 7 
  2520.7 9 
   62 9 
   73 11 
   77 10 
  100 10 
   76 10 
(E2+M1)
(E2+M1)
(E2+M1)
(E2)
(E2+M1)
   2018.12
   1436.12
   1292.69
    145.4434
      0.0
(3/2+)
3/2+
(5/2)+
7/2+
5/2+
   2563.9 6             M OP      (5/2-,7/2-) 55 fs +10-8    2418.0 9 
  2564.1 7 
   49 7 
  100 7 
(E1)
(E1)
    145.4434
      0.0
7/2+
5/2+
   2580.71 16               O       (11/2+) > 13 fs    536.0 3 
   726.7 3 
  1122.9 4 
  2435.30 25 
   50 8 
   33 8 
   94 17 
  100 19 
(E2+M1)
(E2+M1)
(E2+M1)
(E2)
   2045.11
   1853.79
   1457.36
    145.4434
9/2+
(11/2+)
9/2+
7/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2583.0 6             M OP      (5/2-,7/2-,9/2-) 24 fs +7-6    2437.2 8 
  2583.3 7 
   50.4 6 
  100.0 6 
(E1)
(E1)
    145.4434
      0.0
7/2+
5/2+
   2586.1 10             M             2586
  100

      0.0
5/2+
   2601.2 6             M O       (5/2-,7/2-) 59 fs +37-20    2455.7 7 
  2601.3 8 
   41 7 
  100 7 
(E1)
(E1)
    145.4434
      0.0
7/2+
5/2+
   2603.7 6               O       (5/2-,7/2-) 28 fs +12-9    2458.7 7 
  2603.1 8 
   25 3 
  100 3 
(E1)
(E1)
    145.4434
      0.0
7/2+
5/2+
   2607.1 8               O       (1/2+) 0.12 ps +11-5    2607.1 8 
  100
(E2)
      0.0
5/2+
   2609 10                P      +        
   2611.7 5               O       (9/2+) 29 fs +5-4    1318.6 5 
  2612.4 7 
   14.3 17 
  100.0 17 
(E2)
(E2)
   1292.69
      0.0
(5/2)+
5/2+
   2623.2 4             M O       (5/2+,7/2+) 72 fs +19-14    1330.3 5 
  2477.7 7 
  2623.8 8 
   39 6 
   93 6 
  100 7 
(E2+M1)
(E2+M1)
(E2+M1)
   1292.69
    145.4434
      0.0
(5/2)+
7/2+
5/2+
   2626.7 3 ?    E G          R    (15/2-)     1509.1 3 
  100

   1117.67
11/2-
   2646.4 6             M O       (9/2+) 90 fs +25-17    2500.6 7 
  2646.9 8 
   85 6 
  100 6 
E2+M1
E2
    145.4434
      0.0
7/2+
5/2+
   2659.6 8               O       (11/2+) > 156 fs   2514.1 8 
  100
(E2)
    145.4434
7/2+
   2669.02 22               O       (9/2-,11/2-,13/2-) 42 fs +23-14    1175.2 3 
  1216.4 4 
  1551.3 4 
   20 3 
   34 5 
  100 5 
(E1)

(E2+M1)
   1493.98
   1452.36
   1117.67
11/2+
(7/2)+
11/2-
   2682.99 24               O       (5/2+) 0.22 ps +22-8     870.9 4 
  1246.1 5 
  1556.3 4 
  2537.5 11 
  2683.2 8 
   25 3 
   13.7 24 
  100 4 
   10.0 22 
   55 5 

(E2+M1)
(E2+M1)
(E2+M1)
(E2+M1)
   1812.37
   1436.12
   1126.83
    145.4434
      0.0
(9/2+)
3/2+
3/2+
7/2+
5/2+
   2692.0 10             M  P      -     2692
  100

      0.0
5/2+
   2699 5 ?            M                
   2707.9 4               O       (15/2-) 0.04 ps +12-3    1590.2 4 
  100
(E2)
   1117.67
11/2-
   2710.1 3               O       (3/2+) 0.16 ps +46-8    1411.3 3 
  1583.3 4 
   82 16 
  100 16 
(E2+M1)
(E2+M1)
   1298.71
   1126.83
1/2+
3/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2718.5 4               O       (9/2,11/2) > 159 fs   1197.5 4 
  1601.1 5 
  100 5 
   47 4 


   1520.89
   1117.67
9/2+
11/2-
   2722.4 4             M O       (3/2+) 44 fs +16-11    1271.6 5 
  1422.4 6 
  2576.0 9 
  2721.5 8 
   30 20 
   20 20 
   50 20 
  100 20 
(E2)
(E2+M1)
(E2)
(E2+M1)
   1452.36
   1298.71
    145.4434
      0.0
(7/2)+
1/2+
7/2+
5/2+
   2731.4 3               OP      (9/2+) 55 fs +23-15     877.5 4 
  1278.7 5 
  2586.6 8 
  2732.1 8 
    6 6 
   44 20 
  100 20 
   50 20 
E2+M1
E2+M1
E2+M1
E2
   1853.79
   1452.36
    145.4434
      0.0
(11/2+)
(7/2)+
7/2+
5/2+
   2739.7 4               O       (1/2-,9/2-) > 87 fs   1159.6 3 
  100
E2
   1580.05
5/2-
   2749.58 17                  R         963.1 1 
  100

   1786.47
(5/2+)
   2777.5 4               O       (9/2) 44 fs +12-9     923.8 4 
  2631.9 8 
   20 3 
  100 3 

D+Q
   1853.79
    145.4434
(11/2+)
7/2+
   2782.4 6               O       (5/2+,7/2+) 0.15 ps +10-5    2637.4 8 
  2781.8 9 
  100 5 
   52 5 
(E2+M1)
(E2+M1)
    145.4434
      0.0
7/2+
5/2+
   2782.7 3               O       (13/2+) > 51 fs    576.93 25 
  1261.1 5 
   49 22 
  100 22 
(E2+M1)
(E2)
   2205.96
   1520.89
(11/2+)
9/2+
   2786.2 10             M             2786
  100

      0.0
5/2+
   2801.77 22               O       (9/2+) 0.12 ps +16-5    1151.2 5 
  2656.0 4 
  2801.8 3 
  100 8 
   92 8 
   78 8 
(E2+M1)
(E2+M1)
(E2)
   1650.85
    145.4434
      0.0
(9/2+)
7/2+
5/2+
   2807.18 18             M O       (3/2+,5/2,7/2+) 51 fs +25-15     491.4 3 
  2662.0 4 
  2807.13 22 
   17 17 
   96 21 
  100 21 



   2315.65
    145.4434
      0.0
(5/2,7/2)
7/2+
5/2+
   2810.70 22               O       (1/2+) > 76 fs   1201.1 5 
  2810.95 23 
   85 13 
  100 13 
(E2+M1)
(E2)
   1608.26
      0.0
(3/2)+
5/2+
   2814.0 3               O       (1/2-) 24 fs +26-14    1233.1 4 
  1687.7 3 
   85 13 
  100 13 
(E2)
(E1)
   1580.05
   1126.83
5/2-
3/2+
   2820 10                P             
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2837.5 7             M O       (5/2-,7/2-) 24 fs +13-9    2692.0 9 
  2837.5 11 
  100 5 
   33 5 
(E1)
(E1)
    145.4434
      0.0
7/2+
5/2+
   2839.7 4               O       (9/2-) 56 fs +48-23    2694.2 4 
  100
(E1)
    145.4434
7/2+
   2844.7 4             M OP      (3/2-) 45 fs +90-28    1186.8 5 
  1546.6 6 
  2846.2 11 
   50 30 
   50 30 
  100 40 
(E1)
(E1)
(E1)
   1657.07
   1298.71
      0.0
1/2+
1/2+
5/2+
   2847.5 3               O       (9/2+) > 97 fs   1005.0 4 
  1354.0 5 
  1389.9 6 
  2702.8 12 
  2848.4 11 
  100 11 
   50 8 
   42 8 
   33 6 
   53 17 
(E2+M1)
(E2+M1)
(E2+M1)
(E2+M1)
(E2)
   1842.14
   1493.98
   1457.36
    145.4434
      0.0
(7/2+)
11/2+
9/2+
7/2+
5/2+
   2863.4 6               O       0.06 ps +150-4    1570.9 6 
  2716.8 15 
  100 30 
   49 30 


   1292.69
    145.4434
(5/2)+
7/2+
   2876 10                P             
   2881.6 4               O       (7/2+) > 55 fs   1028.0 5 
  1424.5 8 
  1428.5 6 
  2737.0 16 
  2882.3 11 
   92 42 
  100 50 
   81 19 
   31 15 
   81 15 

(E2+M1)
(E2+M1)
(E2+M1)
(E2+M1)
   1853.79
   1457.36
   1452.36
    145.4434
      0.0
(11/2+)
9/2+
(7/2)+
7/2+
5/2+
   2887.47 25               O       (7/2+,9/2,11/2+) > 24 fs   1075.2 5 
  1367.0 4 
  1392.8 5 
  1769.6 6 
  2742.5 17 
   86 21 
  100 21 
   82 21 
   61 36 
   32 11 





   1812.37
   1520.89
   1493.98
   1117.67
    145.4434
(9/2+)
9/2+
11/2+
11/2-
7/2+
   2896.8 7               O       (11/2+)     1439.0 8 
  2752.0 10 
   41 14 
  100 14 


   1457.36
    145.4434
9/2+
7/2+
   2927.25 20     E G        P R    19/2-      858.42 15 
  100
E1
   2068.84
17/2+
   2929.2 5               O       (5/2+,7/2+) 0.08 ps +14-4    1636.0 5 
  2785.2 11 
  2930.3 12 
  100 10 
   85 10 
   23 6 
(E2+M1)
(E2+M1)
(E2+M1)
   1292.69
    145.4434
      0.0
(5/2)+
7/2+
5/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   2941.4 6               OP          1484.2 10 
  1488.6 8 
  2796.4 14 
  2941.7 14 
   66 41 
   66 41 
   81 25 
  100 25 




   1457.36
   1452.36
    145.4434
      0.0
9/2+
(7/2)+
7/2+
5/2+
   2950.5 6             M O       (1/2+)     1514.4 6 
  2950.1 17 
  100 22 
   49 22 


   1436.12
      0.0
3/2+
5/2+
   2954.0 10             M             2954
 

      0.0
5/2+
   2962.65 24     E G               19/2+      854.6 3 
   893.7 3 
  1166.1 7 
   77 4 
  100 4 
   43 6 
(E2)
M1+E2
Q
   2108.20
   2068.84
   1796.21
15/2(+)
17/2+
15/2+
   2983.5 4             M O       (5/2-,7/2-)     2839.0 7 
  2983.0 5 
   22 13 
  100 13 


    145.4434
      0.0
7/2+
5/2+
   2986 10                P      +        
   3000.75 23               O       (11/2+)      956.0 4 
  1479.5 5 
  2855.2 3 
   60 22 
   40 22 
  100 18 



   2045.11
   1520.89
    145.4434
9/2+
9/2+
7/2+
   3016.3 5             M O       (5/2-)      941.0 5 
  1887.9 13 
  2871.0 19 
  3015.9 15 
   97 24 
   50 18 
   38 15 
  100 18 




   2075.50
   1126.83
    145.4434
      0.0
(5/2+)
3/2+
7/2+
5/2+
   3016.88 25     E G               21/2+       89.7 7 
   948.0 3 
   <4
  100.0 20 
E1
E2
   2927.25
   2068.84
19/2-
17/2+
   3018.95 22     E G               21/2- 0.2 ns 1      91.7 1 
  100
M1+E2
   2927.25
19/2-
   3034.3 6               O       (1/2+)     1734.9 7 
  1742.5 8 
  100 33 
   67 33 


   1298.71
   1292.69
1/2+
(5/2)+
   3045.5 6               O       (11/2+,9/2)     1524.6 7 
  2900.2 12 
  100 19 
   85 19 


   1520.89
    145.4434
9/2+
7/2+
   3057.0 10             M             3057
  100

      0.0
5/2+
   3064.5 5               O       (7/2+,9/2-)      960.5 6 
  1209.9 6 
  2918.4 12 
   84 55 
   79 32 
  100 21 



   2105.02
   1853.79
    145.4434
(5/2-)
(11/2+)
7/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   3075.5 9             M O       (3/2+)     1623.1 11 
  3075.4 15 
  100 38 
   92 38 


   1452.36
      0.0
(7/2)+
5/2+
   3080.0 5               O           1094.0 5 
  2934.1 17 
  100 43 
   89 43 


   1986.08
    145.4434
(13/2+)
7/2+
   3083.5 9             M O       (5/2) 0.02 eV   2938
  3083.4 14 
   56
  100


    145.4434
      0.0
7/2+
5/2+
   3114.8 12               O           2969.2 19 
  3114.8 15 
  100 25 
   49 25 


    145.4434
      0.0
7/2+
5/2+
   3128.6 5             M OP           764.6 5 
  1838.1 7 
  3128.7 16 
   53 33 
   98 25 
  100 25 



   2362.85
   1292.69
      0.0
(5/2-)
(5/2)+
5/2+
   3155.5 6             M O           1180.3 7 
  1497.7 14 
  1574.7 13 
  3011.2 12 
  3155 14 
   88 30 
   42 30 
   73 37 
  100 21 
 





   1975.26
   1657.07
   1580.05
    145.4434
      0.0
(3/2+)
1/2+
5/2-
7/2+
5/2+
   3203.3 7      F      M  P      -     3058
  3203
   16
  100 26 


    145.4434
      0.0
7/2+
5/2+
   3206.0 10             M             3206
  100

      0.0
5/2+
   3255.0 10             M             3255
  100

      0.0
5/2+
   3272.3 7             M             3127
  3272
  100
   43 7 


    145.4434
      0.0
7/2+
5/2+
   3294.0 10             M             3294
  100

      0.0
5/2+
   3324.3 7             M             3179
  3324
  100
   58 11 


    145.4434
      0.0
7/2+
5/2+
   3338.0 10             M             3338
  100

      0.0
5/2+
   3346.0 10             M             3346
  100

      0.0
5/2+
   3348.8 7             M  P      (7/2) 0.05 eV   3203
  3349
  100
   37 8 


    145.4434
      0.0
7/2+
5/2+
   3370.0 10             M             3370
  100

      0.0
5/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   3376.0 10             M             3376
  100

      0.0
5/2+
   3396.7 3     E G               21/2-      434.1 3 
  100
E1
   2962.65
19/2+
   3417.3 7             M             3272
  3417
  100
   35 7 


    145.4434
      0.0
7/2+
5/2+
   3427.3 7             M  P          3282
  3427
   41
  100 23 


    145.4434
      0.0
7/2+
5/2+
   3449.0 10             M             3449
  100

      0.0
5/2+
   3470.9 3     E G               23/2-       74.2 1 
   454.0 3 
    8.3 14 
  100.0 7 

E1
   3396.7
   3016.88
21/2-
21/2+
   3494.8 7             M             3349
  3495
  100
   85 22 


    145.4434
      0.0
7/2+
5/2+
   3508.0 10             M             3508
  100

      0.0
5/2+
   3526.6 3     E G               23/2-      507.6 3 
   509.7 3 
   73 8 
  100 50 
M1+E2
D+Q
   3018.95
   3016.88
21/2-
21/2+
   3581.0 10             M             3581
  100

      0.0
5/2+
   3585.5 4     E G               23/2+ 0.2 ns 1     568.6 3 
   622.7 7 
  100 11 
   30 4 
M1
[E2]
   3016.88
   2962.65
21/2+
19/2+
   3590 20                P             
   3643.1 10             M             3643
  100

      0.0
5/2+
   3643.3 4       G                    116.7 3 
  100

   3526.6
23/2-
   3659.1 10             M             3659
  100

      0.0
5/2+
   3706.1 10             M             3706
  100

      0.0
5/2+
   3761.1 10             M             3761
  100

      0.0
5/2+
   3773.1 10             M             3773
  100

      0.0
5/2+
   3791.1 10             M             3791
  100

      0.0
5/2+
   3812.1 10             M             3812
  100

      0.0
5/2+
   3829.1 10             M             3829
  100

      0.0
5/2+
   3879.3 7             M             3734
  3879
   82
  100 40 


    145.4434
      0.0
7/2+
5/2+
   3913.1 10             M             3913
  100

      0.0
5/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   4187.8 6     E                 (23/2+)     1170.9 5 
  100
D+Q
   3016.88
21/2+
   4296.7 5     E                 25/2(-)      711.2 7 
   825.7 7 
  1277.8 7 
  100 12 
   50.0 95 
   88 14 
D(+Q)

Q
   3585.5
   3470.9
   3018.95
23/2+
23/2-
21/2-
   4370.5 3     E G               27/2-      843.9 3 
   899.6 3 
   27.3 18 
  100.0 36 
Q
E2
   3526.6
   3470.9
23/2-
23/2-
   4381.7 5     E                 25/2(-)      796.2 7 
   910.7 7 
  1362.8 7 
   64 13 
   54 10 
  100 18 


Q
   3585.5
   3470.9
   3018.95
23/2+
23/2-
21/2-
   4430.3 5     E                 25/2(-)      903.8 5 
   959.3 7 
  100 13 
   58 8 
(D+Q)
D+Q
   3526.6
   3470.9
23/2-
23/2-
   4546.9 7     E                      116.6 5 
  100

   4430.3
25/2(-)
   4592.0 6     E                 (25/2-)     1121.0 7 
  1573.1 7 
  100 14 
   86 17 

(Q)
   3470.9
   3018.95
23/2-
21/2-
   4740.6 4     E G               27/2(-)      370.2 3 
  1269.6 3 
   17.4 48 
  100 10 

Q
   4370.5
   3470.9
27/2-
23/2-
   4826.8 5     E                 25/2(+)     1241.3 5 
  1355.8 7 
  100 15 
   51 9 
D+Q

   3585.5
   3470.9
23/2+
23/2-
   4907.0 8     E                     1380.4 7 
  100

   3526.6
23/2-
   4988.5 5     E                 29/2(-)      247.8 7 
   606.9 7 
   618.1 7 
   691.9 7 
   88 16 
   84 12 
  100 14 
   61 9 


D+Q

   4740.6
   4381.7
   4370.5
   4296.7
27/2(-)
25/2(-)
27/2-
25/2(-)
   5039.9 5     E                 29/2      299.2 5 
   669.5 5 
  100 16 
  100 12 
D+Q
D+Q
   4740.6
   4370.5
27/2(-)
27/2-
   5103.6 6     E                 31/2(-)      362.9 7 
   733.2 7 
   90 13 
  100 13 
Q
Q
   4740.6
   4370.5
27/2(-)
27/2-
   5142.5 6     E                 27/2(+)      315.7 5 
   772.0 7 
  100 16 
   51 9 
D+Q

   4826.8
   4370.5
25/2(+)
27/2-
   5747.4 9     E                 29/2(+)      604.9 7 
  100
D+Q
   5142.5
27/2(+)
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   6116.0 5             M         7/2(+) 0.052 eV 10    3490
  3775
  3806
  4109
  4511
  4657
  4822
  5970
  6115
    4.5 6 
    2.7 7 
    2.5 5 
    2.0 10 
    2.4 8 
   15.7 19 
    2.4 8 
   47.3 7 
  100.0 9 









   2626.7
   2341.0
   2310.0
   2006.9
   1608.26
   1457.36
   1292.69
    145.4434
      0.0
(15/2-)



(3/2)+
9/2+
(5/2)+
7/2+
5/2+
   6239.6 9     E                 (35/2-)     1136.0 7 
  100

   5103.6
31/2(-)
   6878.6 4             M         7/2+ 0.085 eV 10    5066
  5094
  5227
  5299
  5357
  5422
  6732
  6877
 
 
 
 
 
 
 
 







M1
   1812.37
   1786.47
   1650.85
   1580.05
   1520.89
   1457.36
    145.4434
      0.0
(9/2+)
(5/2+)
(9/2+)
5/2-
9/2+
9/2+
7/2+
5/2+
   7186.5 6             M         5/2     6066
  7042
  7188
    4.3 22 
   14.1 23 
  100.0 32 



   1117.67
    145.4434
      0.0
11/2-
7/2+
5/2+
   7255.8 5             M         5/2- 0.29 eV 3    5590?
  5659
  5823
  6124
  7111
  7256
   10.2 40 
    6.6 40 
   <8.7
   10.1 51 
   64.9 57 
  100.0 79 





E1
   1666
   1596.6
   1436.12
   1126.83
    145.4434
      0.0


3/2+
3/2+
7/2+
5/2+
   7630.7 10             M         5/2+ 0.090 eV +40-10    4841 4 
  4932 4 
  5043 4 
  5066 4 
  5108 4 
  5158 4 
  5284 4 
  5360 4 
  5397 4 
  5616 4 
  5785 4 
  5982 4 
  6050 4 
  6120 4 
  6181 4 
  6195 4 
  6339 4 
  6502 4 
  7487 4 
  7632 4 
    3.1 4 
 
    1
    1
    3.1 4 
 
    3.1 4 
    2
   16.7
    1
    5.2 6 
 
    3.1 4 
 
   18.8 2 
   15.6 2 
    1
   17.7 2 
   15.6 2 
  100 10 



















M1
   2786.2
   2699
   2586.1
   2563.9
   2520.15
   2473.2
   2345.87
   2270.1
   2234
   2018.12
   1842.14
   1650.85
   1580.05
   1510.3
   1452.36
   1436.12
   1292.69
   1126.83
    145.4434
      0.0



(5/2-,7/2-)
(3/2+)
(1/2-,9/2-)
(9/2+)

3/2
(3/2+)
(7/2+)
(9/2+)
5/2-

(7/2)+
3/2+
(5/2)+
3/2+
7/2+
5/2+
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
   7915.2 10             M         5/2+ 0.007 eV 3    7915
  100
M1
      0.0
5/2+
   8880.5 5             M         (5/2,7/2)     6937
  7036
  7228
  7370
  7588
  8735
  8883
   24.2 63 
    9.5 56 
   18.0 57 
   12.3 54 
    4 3 
   14.9 44 
  100.0 75 







   1943.3
   1842.14
   1650.85
   1510.3
   1292.69
    145.4434
      0.0

(7/2+)
(9/2+)

(5/2)+
7/2+
5/2+
   9751       H              7/2- 60 keV      
  10405       H              3/2- 84 keV      
  10882       H              1/2- 91 keV      
  11100?       H              (9/2-)        
  11251       H              (5/2)- 77 keV      
  11493?       H              (5/2-) 100 keV      

E(level): From least-squares fit to Eγ. χ2 norm =1.63 greater than χ2 critical=1.20

Jπ(level): Based on specific arguments as given in comments. Most Jπ values were adopted from the (n,n’γ) dataset based on measured γ-ray multipolarities and T1/2’s, and calculations. For levels from (α,2nγ) monotonic increase of J>9/2 with increasing E was supported by observation or non observation of crossover γ’s and excitation functions. For levels from (7Li,4nγ) deduced configurations were used in Jπ assignments

Back to top

Back to top

Additional Gamma Data:















E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
    145.4434 7/2+ 1.85 ns 3     145.4433 14 M1+E2+0.069 70.449B(E2)(W.u.)=0.35 +8-7, B(M1)(W.u.)=2.658E-3 44, α=0.449 6, α(K)=0.383 5, α(L)=0.0529 7, α(M)=0.01115 16, α(N)=0.002493 35, α(O)=0.000401 6, α(P)=2.93E-5 4
   1117.67 11/2- 4.8 ns 1     972.14 10 M2(+E3)+0.17 +9-80.00832B(E3)(W.u.)=7 +8-5, B(M2)(W.u.)=0.238 +7-10, α=0.00832 17, α(K)=0.00708 15, α(L)=0.000976 18, α(M)=0.000206 4, α(N)=4.61E-5 9, α(O)=7.44E-6 14, α(P)=5.52E-7 12
11/2- 4.8 ns 1    1117.60 11 E3 0.00345B(E3)(W.u.)=9.99 32, α=0.00345 5, α(K)=0.00290 4, α(L)=0.000434 6, α(M)=9.24E-5 13, α(N)=2.057E-5 29, α(O)=3.26E-6 5, α(P)=2.163E-7 30
   1126.83 3/2+ > 188 fs    981.1 3 (E2) 2.22×10-3B(E2)(W.u.)<2.12, α=2.22E-3 3, α(K)=0.001890 26, α(L)=0.000257 4, α(M)=5.42E-5 8, α(N)=1.208E-5 17, α(O)=1.928E-6 27, α(P)=1.357E-7 19
3/2+ > 188 fs   1126.50 21 M1+E2+0.47 60.00225B(E2)(W.u.)<8.12, B(M1)(W.u.)<0.068, α=0.00225 4, α(K)=0.00193 4, α(L)=0.000250 5, α(M)=5.24E-5 9, α(N)=1.172E-5 21, α(O)=1.895E-6 35, α(P)=1.431E-7 28
   1292.69 (5/2)+ 0.33 ps +10-7    1146.90 22 E2 1.60×10-3B(E2)(W.u.)=7.9 +22-18, α=1.60E-3 2, α(K)=0.001366 19, α(L)=0.0001819 25, α(M)=3.82E-5 5, α(N)=8.52E-6 12, α(O)=1.366E-6 19, α(P)=9.83E-8 14
(5/2)+ 0.33 ps +10-7    1292.53 22 E2+M1 0.00151α=0.00151 24, α(K)=0.00128 21, α(L)=0.000166 25, α(M)=3.5×10-5 5, α(N)=7.8E-6 12, α(O)=1.26E-6 20, α(P)=9.4E-8 17
   1298.71 1/2+ 0.34 ps +22-10    1298.44 22 E2 1.26×10-3B(E2)(W.u.)=10.3 +44-39, α=1.26E-3 2, α(K)=0.001064 15, α(L)=0.0001398 20, α(M)=2.93E-5 4, α(N)=6.54E-6 9, α(O)=1.051E-6 15, α(P)=7.67E-8 11
   1436.12 3/2+ 0.23 ps +8-5     309.36 21 (E2+M1) 0.052α=0.052 6, α(K)=0.043 6, α(L)=0.00693 30, α(M)=0.00148 9, α(N)=0.000328 16, α(O)=5.12×10-5 10, α(P)=3.1E-6 7
3/2+ 0.23 ps +8-5    1290.67 24 (E2) 1.28×10-3B(E2)(W.u.)=8.2 +23-22, α=1.28E-3 2, α(K)=0.001077 15, α(L)=0.0001415 20, α(M)=2.97E-5 4, α(N)=6.62E-6 9, α(O)=1.064E-6 15, α(P)=7.76E-8 11
3/2+ 0.23 ps +8-5    1436.1 3 (E2+M1) 0.00125α=0.00125 18, α(K)=0.00103 15, α(L)=0.000132 19, α(M)=2.8×10-5 4, α(N)=6.2E-6 9, α(O)=1.00E-6 14, α(P)=7.5E-8 12
   1452.36 (7/2)+ 0.31 ps +11-7    1306.63 21 M1+E2 0.00148α=0.00148 23, α(K)=0.00125 20, α(L)=0.000162 25, α(M)=3.4×10-5 5, α(N)=7.6E-6 12, α(O)=1.23E-6 19, α(P)=9.2E-8 16
(7/2)+ 0.31 ps +11-7    1452.20 24 (M1+E2) 0.00123α=0.00123 17, α(K)=0.00100 15, α(L)=0.000129 18, α(M)=2.7×10-5 4, α(N)=6.0E-6 8, α(O)=9.7E-7 14, α(P)=7.3E-8 12
   1457.36 9/2+ 0.26 ps +7-5     339.15 24 (E1) 0.00953B(E1)(W.u.)=2.2E-4 +6-5, α=0.00953 13, α(K)=0.00818 12, α(L)=0.001072 15, α(M)=0.0002244 32, α(N)=4.99E-5 7, α(O)=7.94E-6 11, α(P)=5.53E-7 8
9/2+ 0.26 ps +7-5    1311.83 22 M1+E2 0.00147α=0.00147 23, α(K)=0.00124 20, α(L)=0.000161 24, α(M)=3.4×10-5 5, α(N)=7.5E-6 11, α(O)=1.22E-6 19, α(P)=9.1E-8 16
9/2+ 0.26 ps +7-5    1457.42 23 (E2) 1.05×10-3B(E2)(W.u.)=1.95 +47-42, α=1.05E-3 2, α(K)=0.000850 12, α(L)=0.0001103 15, α(M)=2.309E-5 32, α(N)=5.16E-6 7, α(O)=8.30E-7 12, α(P)=6.12E-8 9
   1493.98 11/2+ 0.46 ps +36-15    1348.51 22 E2 1.18×10-3B(E2)(W.u.)=6.3 +31-26, α=1.18E-3 2, α(K)=0.000988 14, α(L)=0.0001292 18, α(M)=2.71E-5 4, α(N)=6.04E-6 8, α(O)=9.72E-7 14, α(P)=7.12E-8 10
   1520.89 9/2+ 150 fs +19-16     402.87 23 (E1) 0.00624B(E1)(W.u.)=4.6E-4 6, α=0.00624 9, α(K)=0.00536 8, α(L)=0.000698 10, α(M)=0.0001461 21, α(N)=3.25E-5 5, α(O)=5.19E-6 7, α(P)=3.66E-7 5
9/2+ 150 fs +19-16    1375.56 25 (E2+M1) 0.00135α=0.00135 20, α(K)=0.00112 17, α(L)=0.000145 21, α(M)=3.0×10-5 4, α(N)=6.8E-6 10, α(O)=1.10E-6 16, α(P)=8.2E-8 14
9/2+ 150 fs +19-16    1520.98 22 E2 9.95×10-4B(E2)(W.u.)=9.3 11, α=9.95E-4 14, α(K)=0.000783 11, α(L)=0.0001012 14, α(M)=2.119E-5 30, α(N)=4.73E-6 7, α(O)=7.62E-7 11, α(P)=5.64E-8 8
   1580.05 5/2- 0.22 ps +6-4     287.06 22 (E1) 0.01455B(E1)(W.u.)=0.00106 24, α=0.01455 21, α(K)=0.01247 18, α(L)=0.001647 23, α(M)=0.000345 5, α(N)=7.66E-5 11, α(O)=1.215E-5 17, α(P)=8.33E-7 12
5/2- 0.22 ps +6-4    1434.54 25 E1 6.31×10-4B(E1)(W.u.)=2.8E-4 6, α=6.31E-4 9, α(K)=0.000402 6, α(L)=4.99E-5 7, α(M)=1.040E-5 15, α(N)=2.323E-6 33, α(O)=3.75E-7 5, α(P)=2.84E-8 4
5/2- 0.22 ps +6-4    1580.06 25 (E1) 6.69×10-4B(E1)(W.u.)=7.4E-5 16, α=6.69E-4 9, α(K)=0.000342 5, α(L)=4.23E-5 6, α(M)=8.81E-6 12, α(N)=1.969E-6 28, α(O)=3.18E-7 4, α(P)=2.414E-8 34
   1608.26 (3/2)+ 11.8 fs 7    1608.20 23 (E2+M1) 0.00106α=0.00106 12, α(K)=0.00081 11, α(L)=0.000104 13, α(M)=2.17×10-5 27, α(N)=4.8E-6 6, α(O)=7.8E-7 10, α(P)=5.9E-8 8
   1650.85 (9/2+) 132 fs +21-17     532.6 2 [E1] 0.00326B(E1)(W.u.)=0.00125 29, α=0.00326 5, α(K)=0.00280 4, α(L)=0.000361 5, α(M)=7.54E-5 11, α(N)=1.680E-5 24, α(O)=2.69E-6 4, α(P)=1.939E-7 27
(9/2+) 132 fs +21-17    1506.1 3 (E2+M1) 0.00116α=0.00116 15, α(K)=0.00093 13, α(L)=0.000119 16, α(M)=2.49×10-5 33, α(N)=5.6E-6 8, α(O)=9.0E-7 12, α(P)=6.8E-8 10
(9/2+) 132 fs +21-17    1651.39 23 (E2) 9.13×10-4B(E2)(W.u.)=6.6 +10-9, α=9.13E-4 13, α(K)=0.000670 9, α(L)=8.60E-5 12, α(M)=1.799E-5 25, α(N)=4.02E-6 6, α(O)=6.48E-7 9, α(P)=4.83E-8 7
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   1657.07 1/2+ > 0.67 ps    530.03 21 E2 0.00964B(E2)(W.u.)<223.96, α=0.00964 14, α(K)=0.00804 11, α(L)=0.001262 18, α(M)=0.000269 4, α(N)=5.97E-5 8, α(O)=9.30E-6 13, α(P)=5.62E-7 8
1/2+ > 0.67 ps   1657.5 3 (E2) 9.10×10-4B(E2)(W.u.)<0.7, α=9.10E-4 13, α(K)=0.000665 9, α(L)=8.54E-5 12, α(M)=1.786E-5 25, α(N)=3.99E-6 6, α(O)=6.43E-7 9, α(P)=4.79E-8 7
   1767.36 13/2+ > 0.37 ps    273.38 21 M1+E2+0.08 60.0802B(E2)(W.u.)<82.72, B(M1)(W.u.)<0.54, α=0.0802 11, α(K)=0.0684 10, α(L)=0.00926 13, α(M)=0.001950 28, α(N)=0.000436 6, α(O)=7.03E-5 10, α(P)=5.21E-6 8
13/2+ > 0.37 ps    310.3 3 (E2) 0.0455α=0.0455 7, α(K)=0.0364 5, α(L)=0.00714 10, α(M)=0.001547 22, α(N)=0.000340 5, α(O)=5.13×10-5 7, α(P)=2.388E-6 34
13/2+ > 0.37 ps    649.62 21 E1 2.11×10-3B(E1)(W.u.)<0.0019, α=2.11E-3 3, α(K)=0.001816 25, α(L)=0.0002319 33, α(M)=4.84E-5 7, α(N)=1.080E-5 15, α(O)=1.733E-6 24, α(P)=1.266E-7 18
   1786.47 (5/2+) 0.19 ps +5-4     658.8 3 (E2+M1) 0.0070α=0.0070 15, α(K)=0.0060 13, α(L)=0.00082 14, α(M)=0.000173 28, α(N)=3.9×10-5 6, α(O)=6.2E-6 11, α(P)=4.4E-7 11
(5/2+) 0.19 ps +5-4    1640.9 3 (E2+M1) 0.00103α=0.00103 12, α(K)=0.00078 10, α(L)=9.9×10-5 12, α(M)=2.08E-5 25, α(N)=4.6E-6 6, α(O)=7.5E-7 9, α(P)=5.7E-8 8
(5/2+) 0.19 ps +5-4    1786.40 25 (E2+M1) 0.00095α=0.00095 9, α(K)=0.00065 7, α(L)=8.3×10-5 9, α(M)=1.73E-5 19, α(N)=3.9E-6 4, α(O)=6.3E-7 7, α(P)=4.8E-8 6
   1796.21 15/2+ 1.0 ns 1      28.9 2 (M1) 7.30B(M1)(W.u.)=0.090 +10-9, α=7.30 18, α(L)=5.76 14, α(M)=1.216 30, α(N)=0.272 7, α(O)=0.0436 11, α(P)=0.00317 8
15/2+ 1.0 ns 1     302.6 3 E2 0.0492B(E2)(W.u.)=0.89 +11-9, α=0.0492 7, α(K)=0.0392 6, α(L)=0.00780 11, α(M)=0.001693 24, α(N)=0.000372 5, α(O)=5.61E-5 8, α(P)=2.57E-6 4
   1812.37 (9/2+) 0.8 ps +12-3     359.74 22 (E2+M1) 0.034α=0.034 5, α(K)=0.028 5, α(L)=0.00437 11, α(M)=0.000931 15, α(N)=0.000207 4, α(O)=3.25×10-5 15, α(P)=2.1E-6 5
(9/2+) 0.8 ps +12-3    1667.13 24 (E2+M1) 0.00102α=0.00102 11, α(K)=0.00075 9, α(L)=9.6×10-5 12, α(M)=2.01E-5 24, α(N)=4.5E-6 5, α(O)=7.3E-7 9, α(P)=5.5E-8 8
(9/2+) 0.8 ps +12-3    1812.7 3 (E2) 8.58×10-4B(E2)(W.u.)=0.26 +16-12, α=8.58E-4 12, α(K)=0.000563 8, α(L)=7.18E-5 10, α(M)=1.500E-5 21, α(N)=3.35E-6 5, α(O)=5.41E-7 8, α(P)=4.05E-8 6
   1842.14 (7/2+) 0.70 ps +59-22     384.8 3 (E2+M1) 0.028α=0.028 5, α(K)=0.024 4, α(L)=0.00358 17, α(M)=0.000762 28, α(N)=0.000169 7, α(O)=2.66×10-5 18, α(P)=1.7E-6 4
(7/2+) 0.70 ps +59-22     389.8 3 (E2+M1) 0.027α=0.027 5, α(K)=0.023 4, α(L)=0.00345 18, α(M)=0.000733 30, α(N)=0.000163 8, α(O)=2.57×10-5 19, α(P)=1.7E-6 4
(7/2+) 0.70 ps +59-22    1696.6 3 (E2+M1) 0.00100α=0.00100 11, α(K)=0.00072 9, α(L)=9.2×10-5 11, α(M)=1.93E-5 23, α(N)=4.3E-6 5, α(O)=7.0E-7 8, α(P)=5.3E-8 7
(7/2+) 0.70 ps +59-22    1842.1 3 (E2+M1) 0.00094α=0.00094 8, α(K)=0.00061 7, α(L)=7.8×10-5 8, α(M)=1.63E-5 17, α(N)=3.6E-6 4, α(O)=5.9E-7 6, α(P)=4.5E-8 5
   1853.79 (11/2+) 0.8 ps +16-3     332.66 22 (E2+M1) 0.042α=0.042 6, α(K)=0.035 6, α(L)=0.00554 9, α(M)=0.001182 32, α(N)=0.000262 6, α(O)=4.10×10-5 9, α(P)=2.5E-6 6
(11/2+) 0.8 ps +16-3     396.51 25 (E2+M1) 0.026α=0.026 4, α(K)=0.022 4, α(L)=0.00328 19, α(M)=0.000697 33, α(N)=0.000155 8, α(O)=2.44×10-5 19, α(P)=1.6E-6 4
(11/2+) 0.8 ps +16-3    1708.7 3 (E2) 8.88×10-4B(E2)(W.u.)=0.8 +5-4, α=8.88E-4 12, α(K)=0.000628 9, α(L)=8.05E-5 11, α(M)=1.683E-5 24, α(N)=3.76E-6 5, α(O)=6.06E-7 8, α(P)=4.53E-8 6
   1975.26 (3/2+) 0.39 ps +19-10     394.52 25 (E1) 0.00657B(E1)(W.u.)=1.6E-4 +8-7, α=0.00657 9, α(K)=0.00564 8, α(L)=0.000735 10, α(M)=0.0001538 22, α(N)=3.42E-5 5, α(O)=5.46E-6 8, α(P)=3.85E-7 5
(3/2+) 0.39 ps +19-10     523.0 3 (E2) 0.00999B(E2)(W.u.)=59 +21-19, α=0.00999 14, α(K)=0.00832 12, α(L)=0.001313 19, α(M)=0.000280 4, α(N)=6.20E-5 9, α(O)=9.67E-6 14, α(P)=5.81E-7 8
(3/2+) 0.39 ps +19-10     848.6 3 (E2+M1) 0.0038α=0.0038 8, α(K)=0.0033 7, α(L)=0.00044 8, α(M)=9.2×10-5 16, α(N)=2.1E-5 4, α(O)=3.3E-6 6, α(P)=2.4E-7 6
(3/2+) 0.39 ps +19-10    1830.0 6 (E2) 8.54×10-4B(E2)(W.u.)=0.38 +13-12, α=8.54E-4 12, α(K)=0.000553 8, α(L)=7.05E-5 10, α(M)=1.473E-5 21, α(N)=3.29E-6 5, α(O)=5.31E-7 7, α(P)=3.98E-8 6
(3/2+) 0.39 ps +19-10    1976.0 5 (E2+M1) 0.00091α=0.00091 7, α(K)=0.00053 5, α(L)=6.7×10-5 6, α(M)=1.41E-5 14, α(N)=3.15E-6 31, α(O)=5.1E-7 5, α(P)=3.9E-8 4
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   1986.08 (13/2+) > 0.42 ps    218.67 22 (E2+M1) 0.1435α=0.1435 33, α(K)=0.116 9, α(L)=0.022 5, α(M)=0.0047 11, α(N)=0.00103 23, α(O)=0.000157 29, α(P)=8.1×10-6 15
(13/2+) > 0.42 ps    465.41 25 (E2) 0.01372B(E2)(W.u.)<184.46, α=0.01372 19, α(K)=0.01136 16, α(L)=0.001864 26, α(M)=0.000399 6, α(N)=8.82E-5 12, α(O)=1.366E-5 19, α(P)=7.85E-7 11
(13/2+) > 0.42 ps    868.4 3 (E1) 1.17×10-3B(E1)(W.u.)<7.49E-4, α=1.17E-3 2, α(K)=0.001006 14, α(L)=0.0001269 18, α(M)=2.65E-5 4, α(N)=5.91E-6 8, α(O)=9.51E-7 13, α(P)=7.05E-8 10
   2000.27 (13/2-) 0.13 ps +11-5     882.59 21 (E2+M1) 0.0035α=0.0035 7, α(K)=0.0030 6, α(L)=0.00040 7, α(M)=8.4×10-5 15, α(N)=1.87E-5 33, α(O)=3.0E-6 6, α(P)=2.2E-7 5
   2000.47 (9/2)- 0.22 ps +12-6     349.58 25 (E1) 0.00884B(E1)(W.u.)=0.00062 +25-21, α=0.00884 12, α(K)=0.00758 11, α(L)=0.000993 14, α(M)=0.0002078 29, α(N)=4.62E-5 7, α(O)=7.36E-6 10, α(P)=5.14E-7 7
(9/2)- 0.22 ps +12-6     542.8 3 (E1) 0.00312B(E1)(W.u.)=2.4E-4 +10-8, α=0.00312 4, α(K)=0.00269 4, α(L)=0.000345 5, α(M)=7.22E-5 10, α(N)=1.609E-5 23, α(O)=2.58E-6 4, α(P)=1.860E-7 26
(9/2)- 0.22 ps +12-6     548.1 3 (E1) 0.00306B(E1)(W.u.)=0.0013 5, α=0.00306 4, α(K)=0.00263 4, α(L)=0.000338 5, α(M)=7.06E-5 10, α(N)=1.574E-5 22, α(O)=2.521E-6 35, α(P)=1.821E-7 26
(9/2)- 0.22 ps +12-6    1855.2 6 (E1) 7.84×10-4B(E1)(W.u.)=1.3E-4 5, α=7.84E-4 11, α(K)=0.000263 4, α(L)=3.24E-5 5, α(M)=6.74E-6 9, α(N)=1.507E-6 21, α(O)=2.438E-7 34, α(P)=1.856E-8 26
   2003.84 (11/2+) 0.7 ps +10-3     545.7 3 (E2+M1) 0.0112α=0.0112 23, α(K)=0.0095 21, α(L)=0.00135 19, α(M)=0.00028 4, α(N)=6.3×10-5 9, α(O)=1.01E-5 15, α(P)=7.0E-7 18
(11/2+) 0.7 ps +10-3    1858.2 7 (E2) 8.49×10-4B(E2)(W.u.)=0.8 +7-4, α=8.49E-4 12, α(K)=0.000537 8, α(L)=6.85E-5 10, α(M)=1.430E-5 20, α(N)=3.20E-6 4, α(O)=5.16E-7 7, α(P)=3.87E-8 5
   2018.12 (3/2+) 0.40 ps +26-12     438.27 25 E1 0.00511B(E1)(W.u.)=0.00036 +16-13, α=0.00511 7, α(K)=0.00439 6, α(L)=0.000569 8, α(M)=0.0001191 17, α(N)=2.65E-5 4, α(O)=4.23E-6 6, α(P)=3.01E-7 4
(3/2+) 0.40 ps +26-12     719.5 3 (E2+M1) 0.0057α=0.0057 12, α(K)=0.0048 11, α(L)=0.00066 11, α(M)=0.000139 23, α(N)=3.1×10-5 5, α(O)=5.0E-6 9, α(P)=3.6E-7 9
(3/2+) 0.40 ps +26-12     725.2 3 (E2+M1) 0.0056α=0.0056 12, α(K)=0.0047 10, α(L)=0.00065 11, α(M)=0.000136 23, α(N)=3.0×10-5 5, α(O)=4.9E-6 9, α(P)=3.5E-7 9
(3/2+) 0.40 ps +26-12    1872.1 4 (E2) 8.47×10-4B(E2)(W.u.)=0.40 +18-14, α=8.47E-4 12, α(K)=0.000530 7, α(L)=6.75E-5 9, α(M)=1.410E-5 20, α(N)=3.15E-6 4, α(O)=5.09E-7 7, α(P)=3.82E-8 5
(3/2+) 0.40 ps +26-12    2017.5 4 (E2+M1) 0.00090α=0.00090 7, α(K)=0.00051 5, α(L)=6.5×10-5 6, α(M)=1.35E-5 13, α(N)=3.01E-6 28, α(O)=4.9E-7 5, α(P)=3.7E-8 4
   2045.11 9/2+ 0.68 ps +86-25    1900.01 22 E2+M1 0.00092α=0.00092 8, α(K)=0.00057 6, α(L)=7.3×10-5 7, α(M)=1.53E-5 16, α(N)=3.41E-6 35, α(O)=5.5E-7 6, α(P)=4.2E-8 5
   2068.84 17/2+      272.7 1 M1+E2+0.10 80.0807α=0.0807 12, α(K)=0.0688 10, α(L)=0.00933 14, α(M)=0.001965 30, α(N)=0.000439 7, α(O)=7.08×10-5 10, α(P)=5.23E-6 8
   2075.50 (5/2+) 0.22 ps +9-6     425.19 22 (E2) 0.01770B(E2)(W.u.)=115 +48-37, α=0.01770 25, α(K)=0.01456 20, α(L)=0.002473 35, α(M)=0.000531 7, α(N)=0.0001173 17, α(O)=1.806E-5 25, α(P)=9.97E-7 14
(5/2+) 0.22 ps +9-6     495.27 22 (E1) 0.00384B(E1)(W.u.)=0.00042 +16-13, α=0.00384 5, α(K)=0.00330 5, α(L)=0.000426 6, α(M)=8.92E-5 13, α(N)=1.986E-5 28, α(O)=3.18E-6 4, α(P)=2.279E-7 32
(5/2+) 0.22 ps +9-6     623.02 22 (E2+M1) 0.0081α=0.0081 17, α(K)=0.0069 15, α(L)=0.00095 15, α(M)=0.000200 31, α(N)=4.5×10-5 7, α(O)=7.1E-6 12, α(P)=5.0E-7 13
(5/2+) 0.22 ps +9-6     782.8 3 (E2+M1) 0.0046α=0.0046 10, α(K)=0.0040 9, α(L)=0.00053 9, α(M)=0.000112 19, α(N)=2.5×10-5 4, α(O)=4.0E-6 7, α(P)=2.9E-7 7
(5/2+) 0.22 ps +9-6     948.6 3 (E2+M1) 0.0030α=0.0030 6, α(K)=0.0025 5, α(L)=0.00034 6, α(M)=7.1×10-5 12, α(N)=1.58E-5 28, α(O)=2.5E-6 5, α(P)=1.9E-7 4
(5/2+) 0.22 ps +9-6    1929.7 4 (E2+M1) 0.00091α=0.00091 7, α(K)=0.00056 6, α(L)=7.1×10-5 7, α(M)=1.48E-5 15, α(N)=3.30E-6 33, α(O)=5.3E-7 5, α(P)=4.1E-8 5
(5/2+) 0.22 ps +9-6    2075.1 5 (E2+M1) 0.00090α=0.00090 6, α(K)=0.00048 4, α(L)=6.1×10-5 5, α(M)=1.27E-5 11, α(N)=2.85E-6 26, α(O)=4.6E-7 4, α(P)=3.51E-8 35
   2100.91 (3/2+,5/2+) 0.17 ps +7-4     664.4 3 (E2+M1) 0.0069α=0.0069 15, α(K)=0.0059 13, α(L)=0.00081 13, α(M)=0.000170 27, α(N)=3.8×10-5 6, α(O)=6.1E-6 11, α(P)=4.3E-7 11
(3/2+,5/2+) 0.17 ps +7-4     974.4 5 (E2+M1) 0.0028α=0.0028 5, α(K)=0.0024 5, α(L)=0.00032 5, α(M)=6.6×10-5 11, α(N)=1.48E-5 26, α(O)=2.4E-6 4, α(P)=1.8E-7 4
(3/2+,5/2+) 0.17 ps +7-4    2102.0 6 (E2+M1) 0.00090α=0.00090 6, α(K)=0.00047 4, α(L)=5.9×10-5 5, α(M)=1.24E-5 11, α(N)=2.77E-6 24, α(O)=4.5E-7 4, α(P)=3.42E-8 33
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   2105.02 (5/2-) 87 fs +15-11     525.3 3 (E2+M1) 0.0124α=0.0124 25, α(K)=0.0105 23, α(L)=0.00149 20, α(M)=0.00032 4, α(N)=7.0×10-5 9, α(O)=1.12E-5 16, α(P)=7.7E-7 19
(5/2-) 87 fs +15-11     652.7 3 (E1) 2.09×10-3B(E1)(W.u.)=0.00128 19, α=2.09E-3 3, α(K)=0.001798 25, α(L)=0.0002295 32, α(M)=4.79E-5 7, α(N)=1.069E-5 15, α(O)=1.716E-6 24, α(P)=1.253E-7 18
(5/2-) 87 fs +15-11    1959.4 4 (E1) 8.35×10-4B(E1)(W.u.)=1.89E-4 28, α=8.35E-4 12, α(K)=0.0002409 34, α(L)=2.97E-5 4, α(M)=6.17E-6 9, α(N)=1.379E-6 19, α(O)=2.232E-7 31, α(P)=1.701E-8 24
(5/2-) 87 fs +15-11    2104.9 5 (E1) 9.08×10-4B(E1)(W.u.)=1.03E-4 15, α=9.08E-4 13, α(K)=0.0002152 30, α(L)=2.64E-5 4, α(M)=5.50E-6 8, α(N)=1.230E-6 17, α(O)=1.991E-7 28, α(P)=1.520E-8 21
   2105.5 (7/2-,15/2-) 0.15 ps +49-8     987.8 3 (E2) 2.18×10-3B(E2)(W.u.)=9E1 +11-5, α=2.18E-3 3, α(K)=0.001863 26, α(L)=0.000253 4, α(M)=5.33E-5 7, α(N)=1.189E-5 17, α(O)=1.899E-6 27, α(P)=1.338E-7 19
   2108.20 15/2(+) > 28 fs    311.9 4 (E2+M1) 0.051α=0.051 6, α(K)=0.042 6, α(L)=0.00676 27, α(M)=0.00144 8, α(N)=0.000320 15, α(O)=4.99×10-5 9, α(P)=3.0E-6 7
15/2(+) > 28 fs    340.9 5 (E2+M1) 0.039α=0.039 6
   2126.10 (11/2+) > 114 fs    272.28 22 (E2+M1) 0.075α=0.075 6, α(K)=0.062 8, α(L)=0.0104 11, α(M)=0.00223 26, α(N)=0.00049 5, α(O)=7.6×10-5 5, α(P)=4.4E-6 9
(11/2+) > 114 fs    604.9 3 (E2+M1) 0.0087α=0.0087 18, α(K)=0.0074 16, α(L)=0.00103 16, α(M)=0.000216 32, α(N)=4.8×10-5 7, α(O)=7.7E-6 13, α(P)=5.4E-7 14
(11/2+) > 114 fs    631.8 3 (E2+M1) 0.0078α=0.0078 17, α(K)=0.0066 15, α(L)=0.00092 15, α(M)=0.000193 30, α(N)=4.3×10-5 7, α(O)=6.9E-6 12, α(P)=4.9E-7 12
(11/2+) > 114 fs    669(E2+M1) 0.0068α=0.0068 14, α(K)=0.0058 13, α(L)=0.00079 13, α(M)=0.000167 27, α(N)=3.7×10-5 6, α(O)=5.9E-6 11, α(P)=4.2E-7 10
(11/2+) > 114 fs   1008.8 3 (E1) 8.75×10-4B(E1)(W.u.)<6.53E-4, α=8.75E-4 12, α(K)=0.000755 11, α(L)=9.47E-5 13, α(M)=1.975E-5 28, α(N)=4.41E-6 6, α(O)=7.11E-7 10, α(P)=5.31E-8 7
(11/2+) > 114 fs   1981.4 5 (E2) 8.37×10-4B(E2)(W.u.)<0.39, α=8.37E-4 12, α(K)=0.000478 7, α(L)=6.06E-5 8, α(M)=1.266E-5 18, α(N)=2.83E-6 4, α(O)=4.57E-7 6, α(P)=3.44E-8 5
   2135.51 (7/2-) 0.27 ps +11-7     678.3 3 (E1) 1.93×10-3B(E1)(W.u.)=0.00048 +17-14, α=1.93E-3 3, α(K)=0.001658 23, α(L)=0.0002113 30, α(M)=4.41E-5 6, α(N)=9.84E-6 14, α(O)=1.580E-6 22, α(P)=1.157E-7 16
(7/2-) 0.27 ps +11-7     682.9 4 (E1) 1.90×10-3B(E1)(W.u.)=8.6E-5 +35-30, α=1.90E-3 3, α(K)=0.001635 23, α(L)=0.0002083 29, α(M)=4.35E-5 6, α(N)=9.70E-6 14, α(O)=1.558E-6 22, α(P)=1.141E-7 16
(7/2-) 0.27 ps +11-7    1990.0 5 (E1) 8.51×10-4B(E1)(W.u.)=2.5E-5 +9-7, α=8.51E-4 12, α(K)=0.0002351 33, α(L)=2.89E-5 4, α(M)=6.02E-6 8, α(N)=1.345E-6 19, α(O)=2.177E-7 30, α(P)=1.660E-8 23
(7/2-) 0.27 ps +11-7    2135.5 5 (E1) 9.24×10-4B(E1)(W.u.)=5.7E-5 +20-16, α=9.24E-4 13, α(K)=0.0002104 29, α(L)=2.59E-5 4, α(M)=5.38E-6 8, α(N)=1.202E-6 17, α(O)=1.946E-7 27, α(P)=1.486E-8 21
   2171.86 (5/2-,7/2-,9/2-) 101 fs +18-15     520.9 3 (E1) 0.00343B(E1)(W.u.)=0.00140 +27-23, α=0.00343 5, α(K)=0.00295 4, α(L)=0.000379 5, α(M)=7.93E-5 11, α(N)=1.768E-5 25, α(O)=2.83E-6 4, α(P)=2.037E-7 29
(5/2-,7/2-,9/2-) 101 fs +18-15    2026.6 4 (E1) 8.69×10-4B(E1)(W.u.)=2.73E-4 +47-41, α=8.69E-4 12, α(K)=0.0002284 32, α(L)=2.81E-5 4, α(M)=5.85E-6 8, α(N)=1.307E-6 18, α(O)=2.114E-7 30, α(P)=1.613E-8 23
   2188.15 (3/2+) 0.26 ps +24-9     736.0 3 (E2) 0.00423B(E2)(W.u.)=58 +32-25, α=0.00423 6, α(K)=0.00358 5, α(L)=0.000515 7, α(M)=0.0001089 15, α(N)=2.423E-5 34, α(O)=3.83E-6 5, α(P)=2.55E-7 4
(3/2+) 0.26 ps +24-9     751.9 3 (E2+M1) 0.0051α=0.0051 11, α(K)=0.0044 10, α(L)=0.00059 10, α(M)=0.000124 21, α(N)=2.8×10-5 5, α(O)=4.4E-6 8, α(P)=3.2E-7 8
(3/2+) 0.26 ps +24-9    2042.5 5 (E2) 8.37×10-4B(E2)(W.u.)=0.58 +31-25, α=8.37E-4 12, α(K)=0.000452 6, α(L)=5.72E-5 8, α(M)=1.195E-5 17, α(N)=2.67E-6 4, α(O)=4.32E-7 6, α(P)=3.26E-8 5
(3/2+) 0.26 ps +24-9    2188.0 6 (E2+M1) 0.00090α=0.00090 6, α(K)=0.000433 35, α(L)=5.5×10-5 4, α(M)=1.14E-5 9, α(N)=2.55E-6 21, α(O)=4.14E-7 34, α(P)=3.16E-8 29
   2190.36 (1/2-) > 215 fs   2044.7 7 (E3) 1.10×10-3α=1.10×10-3 2, α(K)=0.000790 11, α(L)=0.0001046 15, α(M)=2.197E-5 31, α(N)=4.91E-6 7, α(O)=7.90E-7 11, α(P)=5.82E-8 8
(1/2-) > 215 fs   2190.8 5 (M2) 1.36×10-3α=1.36×10-3 2, α(K)=0.000974 14, α(L)=0.0001262 18, α(M)=2.64E-5 4, α(N)=5.92E-6 8, α(O)=9.59E-7 13, α(P)=7.32E-8 10
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   2205.96 (11/2+) 171 fs +40-28     352.7 3 (E2+M1) 0.036α=0.036 5, α(K)=0.030 5, α(L)=0.00464 9, α(M)=0.000988 14, α(N)=0.000219 4, α(O)=3.44×10-5 14, α(P)=2.2E-6 5
(11/2+) 171 fs +40-28    2060.6 4 (E2) 8.37×10-4B(E2)(W.u.)=1.97 +40-37, α=8.37E-4 12, α(K)=0.000445 6, α(L)=5.63E-5 8, α(M)=1.175E-5 16, α(N)=2.63E-6 4, α(O)=4.25E-7 6, α(P)=3.20E-8 4
   2228.84 (5/2+,7/2+) 0.7 ps +61-4     386.95 25 (E2+M1) 0.028α=0.028 5, α(K)=0.023 4, α(L)=0.00352 18, α(M)=0.000749 29, α(N)=0.000166 8, α(O)=2.62×10-5 19, α(P)=1.7E-6 4
(5/2+,7/2+) 0.7 ps +61-4     649.0 3 (E1) 2.11×10-3B(E1)(W.u.)=0.0006 +9-4, α=2.11E-3 3, α(K)=0.001820 26, α(L)=0.0002323 33, α(M)=4.85E-5 7, α(N)=1.082E-5 15, α(O)=1.737E-6 24, α(P)=1.268E-7 18
(5/2+,7/2+) 0.7 ps +61-4     776.62 25 (E2+M1) 0.0047α=0.0047 10, α(K)=0.0040 9, α(L)=0.00054 10, α(M)=0.000115 20, α(N)=2.6×10-5 4, α(O)=4.1E-6 8, α(P)=3.0E-7 7
(5/2+,7/2+) 0.7 ps +61-4     935.8 3 (E2+M1) 0.0031α=0.0031 6, α(K)=0.0026 5, α(L)=0.00035 6, α(M)=7.3×10-5 13, α(N)=1.63E-5 28, α(O)=2.6E-6 5, α(P)=1.9E-7 4
(5/2+,7/2+) 0.7 ps +61-4    2082.8 5 (E2+M1) 0.00090α=0.00090 6, α(K)=0.00048 4, α(L)=6.0×10-5 5, α(M)=1.26E-5 11, α(N)=2.82E-6 25, α(O)=4.6E-7 4, α(P)=3.48E-8 34
(5/2+,7/2+) 0.7 ps +61-4    2228.2 5 (E2+M1) 0.00090α=0.00090 5, α(K)=0.000418 32, α(L)=5.3×10-5 4, α(M)=1.10E-5 9, α(N)=2.46E-6 19, α(O)=3.99E-7 32, α(P)=3.04E-8 27
   2247.7 (3/2-,5/2-) 147 fs +35-25    1120.9 4 (E1) 7.24×10-4B(E1)(W.u.)=1.35E-4 32, α=7.24E-4 10, α(K)=0.000621 9, α(L)=7.77E-5 11, α(M)=1.620E-5 23, α(N)=3.62E-6 5, α(O)=5.83E-7 8, α(P)=4.38E-8 6
(3/2-,5/2-) 147 fs +35-25    2247.6 5 (E1) 9.80×10-4B(E1)(W.u.)=1.34E-4 27, α=9.80E-4 14, α(K)=0.0001944 27, α(L)=2.386E-5 33, α(M)=4.96E-6 7, α(N)=1.109E-6 16, α(O)=1.796E-7 25, α(P)=1.373E-8 19
   2264.49 (3/2+) 0.18 ps +10-7     684.8 3 (E1) 1.89×10-3B(E1)(W.u.)=0.00025 +17-10, α=1.89E-3 3, α(K)=0.001625 23, α(L)=0.0002070 29, α(M)=4.32E-5 6, α(N)=9.64E-6 14, α(O)=1.549E-6 22, α(P)=1.134E-7 16
(3/2+) 0.18 ps +10-7     812.4 4 (E2) 0.00337B(E2)(W.u.)=10 +7-5, α=0.00337 5, α(K)=0.00286 4, α(L)=0.000402 6, α(M)=8.49E-5 12, α(N)=1.891E-5 27, α(O)=3.00E-6 4, α(P)=2.042E-7 29
(3/2+) 0.18 ps +10-7     828.1 3 (E2+M1) 0.0041α=0.0041 8, α(K)=0.0035 7, α(L)=0.00047 8, α(M)=9.8×10-5 17, α(N)=2.2E-5 4, α(O)=3.5E-6 6, α(P)=2.6E-7 6
(3/2+) 0.18 ps +10-7     965.9 4 (E2+M1) 0.0028α=0.0028 6, α(K)=0.0024 5, α(L)=0.00032 6, α(M)=6.8×10-5 12, α(N)=1.51E-5 26, α(O)=2.4E-6 4, α(P)=1.8E-7 4
(3/2+) 0.18 ps +10-7    2118.6 5 (E2) 8.39×10-4B(E2)(W.u.)=0.8 +5-3, α=8.39E-4 12, α(K)=0.000423 6, α(L)=5.34E-5 7, α(M)=1.116E-5 16, α(N)=2.494E-6 35, α(O)=4.03E-7 6, α(P)=3.05E-8 4
(3/2+) 0.18 ps +10-7    2264.0 5 (E2+M1) 0.00090α=0.00090 5, α(K)=0.000405 30, α(L)=5.1×10-5 4, α(M)=1.07E-5 8, α(N)=2.38E-6 18, α(O)=3.86E-7 30, α(P)=2.95E-8 25
   2267.20 (1/2+) > 184 fs    291.65 25 (E2+M1) 0.061α=0.061 6, α(K)=0.051 7, α(L)=0.0083 6, α(M)=0.00179 15, α(N)=0.000396 30, α(O)=6.15×10-5 26, α(P)=3.6E-6 8
(1/2+) > 184 fs   2267.1 3 (E2) 8.54×10-4B(E2)(W.u.)<1.17, α=8.54E-4 12, α(K)=0.000374 5, α(L)=4.71E-5 7, α(M)=9.84E-6 14, α(N)=2.200E-6 31, α(O)=3.56E-7 5, α(P)=2.70E-8 4
   2302.6 (5/2+,7/2+,9/2+) 0.25 ps +15-7    2158.3 5 (E2+M1) 0.00090α=0.00090 6, α(K)=0.00045 4, α(L)=5.6×10-5 5, α(M)=1.17E-5 10, α(N)=2.63E-6 22, α(O)=4.3E-7 4, α(P)=3.24E-8 30
   2336.54 (15/2-) > 28 fs    816.03 25 (E3) 0.00759α=0.00759 11, α(K)=0.00625 9, α(L)=0.001058 15, α(M)=0.0002274 32, α(N)=5.04×10-5 7, α(O)=7.86E-6 11, α(P)=4.65E-7 7
(15/2-) > 28 fs   1218.3 3 (E2) 1.42×10-3B(E2)(W.u.)<106.26, α=1.42E-3 2, α(K)=0.001209 17, α(L)=0.0001598 22, α(M)=3.35E-5 5, α(N)=7.48E-6 10, α(O)=1.201E-6 17, α(P)=8.70E-8 12
   2345.87 (9/2+) 0.21 ps +26-8     559.0 3 [E2] 0.00838B(E2)(W.u.)=1.4E2 +9-7, α=0.00838 12, α(K)=0.00701 10, α(L)=0.001082 15, α(M)=0.0002305 32, α(N)=5.11E-5 7, α(O)=7.99E-6 11, α(P)=4.92E-7 7
(9/2+) 0.21 ps +26-8     851.76 23 (E2+M1) 0.0038α=0.0038 8, α(K)=0.0033 7, α(L)=0.00044 8, α(M)=9.1×10-5 16, α(N)=2.0E-5 4, α(O)=3.3E-6 6, α(P)=2.4E-7 6
(9/2+) 0.21 ps +26-8    1052.6 3 (E2) 1.91×10-3B(E2)(W.u.)=11 +7-5, α=1.91E-3 3, α(K)=0.001630 23, α(L)=0.0002197 31, α(M)=4.62E-5 6, α(N)=1.030E-5 14, α(O)=1.647E-6 23, α(P)=1.172E-7 16
(9/2+) 0.21 ps +26-8    1229.8 3 (E1) 6.51×10-4B(E1)(W.u.)=5.9E-5 +39-29, α=6.51E-4 9, α(K)=0.000526 7, α(L)=6.56E-5 9, α(M)=1.366E-5 19, α(N)=3.05E-6 4, α(O)=4.93E-7 7, α(P)=3.71E-8 5
(9/2+) 0.21 ps +26-8    2199.5 6 (E2+M1) 0.00090α=0.00090 5, α(K)=0.000429 34, α(L)=5.4×10-5 4, α(M)=1.13E-5 9, α(N)=2.53E-6 20, α(O)=4.09E-7 34, α(P)=3.12E-8 28
(9/2+) 0.21 ps +26-8    2345.1 6 (E2) 8.66×10-4B(E2)(W.u.)=0.22 +14-10, α=8.66E-4 12, α(K)=0.000352 5, α(L)=4.43E-5 6, α(M)=9.24E-6 13, α(N)=2.067E-6 29, α(O)=3.34E-7 5, α(P)=2.54E-8 4
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   2362.85 (5/2-) 39 fs +10-8     754.64 24 (E1) 1.54×10-3B(E1)(W.u.)=0.00133 +37-29, α=1.54E-3, α(K)=0.001330 19, α(L)=0.0001688 24, α(M)=3.52E-5 5, α(N)=7.86E-6 11, α(O)=1.264E-6 18, α(P)=9.31E-8 13
(5/2-) 39 fs +10-8    1235.7 3 (E1) 6.48×10-4B(E1)(W.u.)=0.00185 +48-38, α=6.48E-4 9, α(K)=0.000522 7, α(L)=6.50E-5 9, α(M)=1.355E-5 19, α(N)=3.03E-6 4, α(O)=4.88E-7 7, α(P)=3.68E-8 5
(5/2-) 39 fs +10-8    2217.0 6 (E1) 9.65×10-4B(E1)(W.u.)=4.0E-5 +11-9, α=9.65E-4 14, α(K)=0.0001985 28, α(L)=2.437E-5 34, α(M)=5.07E-6 7, α(N)=1.133E-6 16, α(O)=1.835E-7 26, α(P)=1.402E-8 20
(5/2-) 39 fs +10-8    2362.5 6 (E1) 1.04×10-3B(E1)(W.u.)=1.05E-4 +28-22, α=1.04E-3 2, α(K)=0.0001801 25, α(L)=2.208E-5 31, α(M)=4.59E-6 6, α(N)=1.027E-6 14, α(O)=1.662E-7 23, α(P)=1.272E-8 18
   2382.2 (9/2-,11/2-) 0.24 ps +28-9     861.3 3 (E1) 1.18×10-3B(E1)(W.u.)=0.0012 +7-5, α=1.18E-3 2, α(K)=0.001022 14, α(L)=0.0001290 18, α(M)=2.69E-5 4, α(N)=6.01E-6 8, α(O)=9.67E-7 14, α(P)=7.17E-8 10
(9/2-,11/2-) 0.24 ps +28-9    1264.5 4 (E2+M1) 0.00158α=0.00158 26, α(K)=0.00135 22, α(L)=0.000175 27, α(M)=3.7×10-5 6, α(N)=8.2E-6 13, α(O)=1.32E-6 21, α(P)=9.9E-8 18
   2403.13 (9/2+) 0.49 ps +85-20     945.8 3 (E2+M1) 0.0030α=0.0030 6, α(K)=0.0026 5, α(L)=0.00034 6, α(M)=7.1×10-5 12, α(N)=1.59E-5 28, α(O)=2.6E-6 5, α(P)=1.9E-7 4
(9/2+) 0.49 ps +85-20    2257.5 5 (E2+M1) 0.00090α=0.00090 5, α(K)=0.000407 30, α(L)=5.1×10-5 4, α(M)=1.07E-5 8, α(N)=2.40E-6 18, α(O)=3.88E-7 30, α(P)=2.97E-8 25
(9/2+) 0.49 ps +85-20    2403.2 5 (E2) 8.76×10-4B(E2)(W.u.)=0.20 +14-10, α=8.76E-4 12, α(K)=0.000337 5, α(L)=4.24E-5 6, α(M)=8.84E-6 12, α(N)=1.976E-6 28, α(O)=3.20E-7 4, α(P)=2.429E-8 34
   2419.9 (9/2+) 0.5 ps +17-2     925.9 3 (E2+M1) 0.0031α=0.0031 6, α(K)=0.0027 5, α(L)=0.00036 6, α(M)=7.5×10-5 13, α(N)=1.67E-5 29, α(O)=2.7E-6 5, α(P)=2.0E-7 4
(9/2+) 0.5 ps +17-2    2274.2 6 (E2+M1) 0.00090α=0.00090 5, α(K)=0.000401 30, α(L)=5.1×10-5 4, α(M)=1.06E-5 8, α(N)=2.36E-6 18, α(O)=3.83E-7 30, α(P)=2.92E-8 24
(9/2+) 0.5 ps +17-2    2419.9 6 (E2) 8.79×10-4B(E2)(W.u.)=0.10 +7-5, α=8.79E-4 12, α(K)=0.000333 5, α(L)=4.18E-5 6, α(M)=8.73E-6 12, α(N)=1.952E-6 27, α(O)=3.16E-7 4, α(P)=2.399E-8 34
   2453.1 (3/2-,5/2-) 18.7 fs +35-28    1326.4 3 (E1) 6.26×10-4B(E1)(W.u.)=0.00047 +41-25, α=6.26E-4 9, α(K)=0.000460 6, α(L)=5.73E-5 8, α(M)=1.193E-5 17, α(N)=2.67E-6 4, α(O)=4.30E-7 6, α(P)=3.25E-8 5
(3/2-,5/2-) 18.7 fs +35-28    2452.7 6 (E1) 1.08×10-3B(E1)(W.u.)=0.00083 +14-15, α=1.08E-3 2, α(K)=0.0001701 24, α(L)=2.084E-5 29, α(M)=4.33E-6 6, α(N)=9.69E-7 14, α(O)=1.569E-7 22, α(P)=1.201E-8 17
   2454.20 (15/2+) > 94 fs    449.91 22 (E2) 0.01508α=0.01508 21, α(K)=0.01246 18, α(L)=0.002070 29, α(M)=0.000443 6, α(N)=9.81×10-5 14, α(O)=1.515E-5 21, α(P)=8.58E-7 12
(15/2+) > 94 fs    687.32 23 (E2+M1)-0.26 +14-150.00751B(E2)(W.u.)<82.27, B(M1)(W.u.)<0.45, α=0.00751 24, α(K)=0.00644 21, α(L)=0.000847 23, α(M)=0.000178 5, α(N)=3.98E-5 11, α(O)=6.42E-6 18, α(P)=4.82E-7 17
   2461.79 (5/2+) 136 fs +57-33     810.5 3 (E2) 0.00338B(E2)(W.u.)=37 +13-11, α=0.00338 5, α(K)=0.00287 4, α(L)=0.000405 6, α(M)=8.54E-5 12, α(N)=1.902E-5 27, α(O)=3.02E-6 4, α(P)=2.052E-7 29
(5/2+) 136 fs +57-33    1026.2 4 (E2+M1) 0.0025α=0.0025 5, α(K)=0.0021 4, α(L)=0.00028 5, α(M)=5.9×10-5 10, α(N)=1.31E-5 22, α(O)=2.1E-6 4, α(P)=1.56E-7 33
(5/2+) 136 fs +57-33    1335.0 4 (E2+M1) 0.00142α=0.00142 22, α(K)=0.00120 19, α(L)=0.000155 23, α(M)=3.2×10-5 5, α(N)=7.2E-6 11, α(O)=1.17E-6 18, α(P)=8.8E-8 15
(5/2+) 136 fs +57-33    2462.2 6 (E2+M1) 0.00093α=0.00093 5, α(K)=0.000343 21, α(L)=4.32×10-5 27, α(M)=9.0E-6 6, α(N)=2.02E-6 13, α(O)=3.27E-7 21, α(P)=2.50E-8 18
   2473.2 (1/2-,9/2-) > 14 fs    368.16 21 (E2) 0.0270α=0.0270 4, α(K)=0.02194 31, α(L)=0.00396 6, α(M)=0.000853 12, α(N)=0.0001882 27, α(O)=2.87×10-5 4, α(P)=1.476E-6 21
   2499.76 (5/2+,7/2+,9/2+) 102 fs +28-19    1046.5 4 (E2+M1) 0.0024α=0.0024 4, α(K)=0.0020 4, α(L)=0.00027 5, α(M)=5.6×10-5 9, α(N)=1.26E-5 21, α(O)=2.0E-6 4, α(P)=1.50E-7 31
(5/2+,7/2+,9/2+) 102 fs +28-19    2354.8 3 (E2+M1) 0.00091α=0.00091 5, α(K)=0.000375 25, α(L)=4.72×10-5 33, α(M)=9.9E-6 7, α(N)=2.20E-6 16, α(O)=3.57E-7 26, α(P)=2.73E-8 21
   2520.15 (3/2+) 0.2 ps +18-1     501.5 3 (E2+M1) 0.0140α=0.0140 28, α(K)=0.0118 25, α(L)=0.00169 21, α(M)=0.00036 4, α(N)=8.0×10-5 9, α(O)=1.27E-5 17, α(P)=8.6E-7 22
(3/2+) 0.2 ps +18-1    1085.0 4 (E2+M1) 0.0022α=0.0022 4, α(K)=0.00188 35, α(L)=0.00025 4, α(M)=5.2×10-5 9, α(N)=1.16E-5 19, α(O)=1.86E-6 32, α(P)=1.38E-7 28
(3/2+) 0.2 ps +18-1    1227.3 4 (E2+M1) 0.00168α=0.00168 28, α(K)=0.00144 25, α(L)=0.000187 29, α(M)=3.9×10-5 6, α(N)=8.7E-6 14, α(O)=1.41E-6 23, α(P)=1.05E-7 20
(3/2+) 0.2 ps +18-1    2374.6 7 (E2) 8.71×10-4B(E2)(W.u.)=0.22 +24-12, α=8.71E-4 12, α(K)=0.000345 5, α(L)=4.33E-5 6, α(M)=9.03E-6 13, α(N)=2.020E-6 28, α(O)=3.27E-7 5, α(P)=2.481E-8 35
(3/2+) 0.2 ps +18-1    2520.7 9 (E2+M1) 0.00094α=0.00094 5, α(K)=0.000328 19, α(L)=4.12×10-5 24, α(M)=8.6E-6 5, α(N)=1.92E-6 12, α(O)=3.12E-7 19, α(P)=2.39E-8 16
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   2563.9 (5/2-,7/2-) 55 fs +10-8    2418.0 9 (E1) 1.07×10-3B(E1)(W.u.)=1.06E-4 +22-20, α=1.07E-3 2, α(K)=0.0001738 24, α(L)=2.130E-5 30, α(M)=4.43E-6 6, α(N)=9.90E-7 14, α(O)=1.604E-7 22, α(P)=1.228E-8 17
(5/2-,7/2-) 55 fs +10-8    2564.1 7 (E1) 1.14×10-3B(E1)(W.u.)=1.81E-4 +32-29, α=1.14E-3 2, α(K)=0.0001591 22, α(L)=1.947E-5 27, α(M)=4.05E-6 6, α(N)=9.05E-7 13, α(O)=1.466E-7 21, α(P)=1.123E-8 16
   2580.71 (11/2+) > 13 fs    536.0 3 (E2+M1) 0.0118α=0.0118 24, α(K)=0.0100 22, α(L)=0.00141 19, α(M)=0.00030 4, α(N)=6.7×10-5 9, α(O)=1.06E-5 16, α(P)=7.3E-7 18
(11/2+) > 13 fs    726.7 3 (E2+M1) 0.0055α=0.0055 12, α(K)=0.0047 10, α(L)=0.00064 11, α(M)=0.000135 23, α(N)=3.0×10-5 5, α(O)=4.8E-6 9, α(P)=3.5E-7 8
(11/2+) > 13 fs   1122.9 4 (E2+M1) 0.0020α=0.0020 4, α(K)=0.00174 32, α(L)=0.00023 4, α(M)=4.8×10-5 8, α(N)=1.07E-5 18, α(O)=1.72E-6 29, α(P)=1.28E-7 25
(11/2+) > 13 fs   2435.30 25 (E2) 8.82×10-4B(E2)(W.u.)<5.26, α=8.82E-4 12, α(K)=0.000330 5, α(L)=4.14E-5 6, α(M)=8.63E-6 12, α(N)=1.929E-6 27, α(O)=3.12E-7 4, α(P)=2.372E-8 33
   2583.0 (5/2-,7/2-,9/2-) 24 fs +7-6    2437.2 8 (E1) 1.08×10-3B(E1)(W.u.)=2.4E-4 +8-6, α=1.08E-3 2, α(K)=0.0001718 24, α(L)=2.104E-5 29, α(M)=4.38E-6 6, α(N)=9.78E-7 14, α(O)=1.584E-7 22, α(P)=1.213E-8 17
(5/2-,7/2-,9/2-) 24 fs +7-6    2583.3 7 (E1) 1.15×10-3B(E1)(W.u.)=0.00040 +13-9, α=1.15E-3 2, α(K)=0.0001573 22, α(L)=1.925E-5 27, α(M)=4.00E-6 6, α(N)=8.95E-7 13, α(O)=1.450E-7 20, α(P)=1.111E-8 16
   2601.2 (5/2-,7/2-) 59 fs +37-20    2455.7 7 (E1) 1.08×10-3B(E1)(W.u.)=8.3E-5 +44-33, α=1.08E-3 2, α(K)=0.0001698 24, α(L)=2.080E-5 29, α(M)=4.33E-6 6, α(N)=9.67E-7 14, α(O)=1.566E-7 22, α(P)=1.199E-8 17
(5/2-,7/2-) 59 fs +37-20    2601.3 8 (E1) 1.16×10-3B(E1)(W.u.)=1.7E-4 +9-6, α=1.16E-3 2, α(K)=0.0001557 22, α(L)=1.905E-5 27, α(M)=3.96E-6 6, α(N)=8.86E-7 12, α(O)=1.434E-7 20, α(P)=1.099E-8 15
   2603.7 (5/2-,7/2-) 28 fs +12-9    2458.7 7 (E1) 1.09×10-3B(E1)(W.u.)=1.2E-4 +6-4, α=1.09E-3 2, α(K)=0.0001695 24, α(L)=2.076E-5 29, α(M)=4.32E-6 6, α(N)=9.65E-7 14, α(O)=1.563E-7 22, α(P)=1.197E-8 17
(5/2-,7/2-) 28 fs +12-9    2603.1 8 (E1) 1.16×10-3B(E1)(W.u.)=0.00040 +20-12, α=1.16E-3 2, α(K)=0.0001555 22, α(L)=1.903E-5 27, α(M)=3.96E-6 6, α(N)=8.85E-7 12, α(O)=1.433E-7 20, α(P)=1.098E-8 15
   2607.1 (1/2+) 0.12 ps +11-5    2607.1 8 (E2) 9.19×10-4B(E2)(W.u.)=0.9 +7-4, α=9.19E-4 13, α(K)=0.000292 4, α(L)=3.66E-5 5, α(M)=7.62E-6 11, α(N)=1.705E-6 24, α(O)=2.76E-7 4, α(P)=2.102E-8 29
   2611.7 (9/2+) 29 fs +5-4    1318.6 5 (E2) 1.23×10-3B(E2)(W.u.)=14.1 26, α=1.23E-3 2, α(K)=0.001033 14, α(L)=0.0001353 19, α(M)=2.84E-5 4, α(N)=6.33E-6 9, α(O)=1.018E-6 14, α(P)=7.44E-8 10
(9/2+) 29 fs +5-4    2612.4 7 (E2) 9.20×10-4B(E2)(W.u.)=3.2 5, α=9.20E-4 13, α(K)=0.000291 4, α(L)=3.64E-5 5, α(M)=7.60E-6 11, α(N)=1.699E-6 24, α(O)=2.75E-7 4, α(P)=2.095E-8 29
   2623.2 (5/2+,7/2+) 72 fs +19-14    1330.3 5 (E2+M1) 0.00143α=0.00143 22, α(K)=0.00121 19, α(L)=0.000156 23, α(M)=3.3×10-5 5, α(N)=7.3E-6 11, α(O)=1.18E-6 18, α(P)=8.8E-8 15
(5/2+,7/2+) 72 fs +19-14    2477.7 7 (E2+M1) 0.00093α=0.00093 5, α(K)=0.000339 20, α(L)=4.27×10-5 26, α(M)=8.9E-6 6, α(N)=1.99E-6 13, α(O)=3.23E-7 21, α(P)=2.47E-8 17
(5/2+,7/2+) 72 fs +19-14    2623.8 8 (E2+M1) 0.00096α=0.00096 4, α(K)=0.000304 15, α(L)=3.81×10-5 20, α(M)=7.9E-6 4, α(N)=1.78E-6 10, α(O)=2.88E-7 16, α(P)=2.21E-8 13
   2646.4 (9/2+) 90 fs +25-17    2500.6 7 E2+M1 0.00094α=0.00094 5, α(K)=0.000333 19, α(L)=4.19×10-5 25, α(M)=8.7E-6 5, α(N)=1.96E-6 12, α(O)=3.17E-7 20, α(P)=2.42E-8 16
(9/2+) 90 fs +25-17    2646.9 8 E2 9.28×10-4B(E2)(W.u.)=0.60 +15-13, α=9.28E-4 13, α(K)=0.000284 4, α(L)=3.56E-5 5, α(M)=7.42E-6 10, α(N)=1.659E-6 23, α(O)=2.69E-7 4, α(P)=2.047E-8 29
   2659.6 (11/2+) > 156 fs   2514.1 8 (E2) 8.98×10-4B(E2)(W.u.)<0.83, α=8.98E-4 13, α(K)=0.000311 4, α(L)=3.90E-5 5, α(M)=8.14E-6 11, α(N)=1.821E-6 26, α(O)=2.95E-7 4, α(P)=2.242E-8 31
   2669.02 (9/2-,11/2-,13/2-) 42 fs +23-14    1175.2 3 (E1) 6.78×10-4B(E1)(W.u.)=0.00048 +26-17, α=6.78E-4 9, α(K)=0.000570 8, α(L)=7.12E-5 10, α(M)=1.484E-5 21, α(N)=3.32E-6 5, α(O)=5.35E-7 7, α(P)=4.02E-8 6
(9/2-,11/2-,13/2-) 42 fs +23-14    1551.3 4 (E2+M1) 0.00111α=0.00111 14, α(K)=0.00087 12, α(L)=0.000112 15, α(M)=2.34×10-5 30, α(N)=5.2E-6 7, α(O)=8.5E-7 11, α(P)=6.4E-8 10
   2682.99 (5/2+) 0.22 ps +22-8    1246.1 5 (E2+M1) 0.00163α=0.00163 27, α(K)=0.00139 23, α(L)=0.000180 28, α(M)=3.8×10-5 6, α(N)=8.4E-6 13, α(O)=1.36E-6 22, α(P)=1.02E-7 19
(5/2+) 0.22 ps +22-8    1556.3 4 (E2+M1) 0.00111α=0.00111 14, α(K)=0.00087 12, α(L)=0.000111 14, α(M)=2.32×10-5 30, α(N)=5.2E-6 7, α(O)=8.4E-7 11, α(P)=6.3E-8 9
(5/2+) 0.22 ps +22-8    2537.5 11 (E2+M1) 0.00095α=0.00095 5, α(K)=0.000324 18, α(L)=4.07×10-5 24, α(M)=8.5E-6 5, α(N)=1.90E-6 11, α(O)=3.08E-7 19, α(P)=2.36E-8 15
(5/2+) 0.22 ps +22-8    2683.2 8 (E2+M1) 0.00098α=0.00098 4, α(K)=0.000291 14, α(L)=3.65×10-5 18, α(M)=7.6E-6 4, α(N)=1.70E-6 9, α(O)=2.76E-7 14, α(P)=2.11E-8 12
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   2707.9 (15/2-) 0.04 ps +12-3    1590.2 4 (E2) 9.46×10-4B(E2)(W.u.)=32 +73-21, α=9.46E-4 13, α(K)=0.000719 10, α(L)=9.27E-5 13, α(M)=1.939E-5 27, α(N)=4.33E-6 6, α(O)=6.98E-7 10, α(P)=5.18E-8 7
   2710.1 (3/2+) 0.16 ps +46-8    1411.3 3 (E2+M1) 0.00129α=0.00129 19, α(K)=0.00106 16, α(L)=0.000137 20, α(M)=2.9×10-5 4, α(N)=6.4E-6 9, α(O)=1.04E-6 15, α(P)=7.8E-8 13
(3/2+) 0.16 ps +46-8    1583.3 4 (E2+M1) 0.00108α=0.00108 13, α(K)=0.00084 11, α(L)=0.000107 14, α(M)=2.24×10-5 29, α(N)=5.0E-6 6, α(O)=8.1E-7 11, α(P)=6.1E-8 9
   2722.4 (3/2+) 44 fs +16-11    1271.6 5 (E2) 1.31×10-3B(E2)(W.u.)=13 +10-7, α=1.31E-3 2, α(K)=0.001109 16, α(L)=0.0001460 20, α(M)=3.06E-5 4, α(N)=6.83E-6 10, α(O)=1.097E-6 15, α(P)=7.99E-8 11
(3/2+) 44 fs +16-11    1422.4 6 (E2+M1) 0.00127α=0.00127 19, α(K)=0.00105 16, α(L)=0.000135 19, α(M)=2.8×10-5 4, α(N)=6.3E-6 9, α(O)=1.02E-6 15, α(P)=7.7E-8 13
(3/2+) 44 fs +16-11    2576.0 9 (E2) 9.12×10-4B(E2)(W.u.)=0.65 +31-29, α=9.12E-4 13, α(K)=0.000298 4, α(L)=3.74E-5 5, α(M)=7.79E-6 11, α(N)=1.742E-6 24, α(O)=2.82E-7 4, α(P)=2.147E-8 30
(3/2+) 44 fs +16-11    2721.5 8 (E2+M1) 0.00099α=0.00099 4, α(K)=0.000283 13, α(L)=3.55×10-5 17, α(M)=7.4E-6 4, α(N)=1.66E-6 8, α(O)=2.68E-7 13, α(P)=2.06E-8 11
   2731.4 (9/2+) 55 fs +23-15     877.5 4 E2+M1 0.0036α=0.0036 7, α(K)=0.0030 6, α(L)=0.00041 7, α(M)=8.5×10-5 15, α(N)=1.90E-5 33, α(O)=3.1E-6 6, α(P)=2.2E-7 5
(9/2+) 55 fs +23-15    1278.7 5 E2+M1 0.00155α=0.00155 25, α(K)=0.00131 22, α(L)=0.000170 26, α(M)=3.6×10-5 5, α(N)=8.0E-6 12, α(O)=1.29E-6 20, α(P)=9.6E-8 17
(9/2+) 55 fs +23-15    2586.6 8 E2+M1 0.00096α=0.00096 4, α(K)=0.000312 16, α(L)=3.92×10-5 22, α(M)=8.2E-6 5, α(N)=1.83E-6 10, α(O)=2.96E-7 17, α(P)=2.27E-8 14
(9/2+) 55 fs +23-15    2732.1 8 E2 9.49×10-4B(E2)(W.u.)=0.39 +20-17, α=9.49E-4 13, α(K)=0.000269 4, α(L)=3.36E-5 5, α(M)=7.01E-6 10, α(N)=1.567E-6 22, α(O)=2.54E-7 4, α(P)=1.936E-8 27
   2739.7 (1/2-,9/2-) > 87 fs   1159.6 3 E2 1.56×10-3B(E2)(W.u.)<71.15, α=1.56E-3 2, α(K)=0.001335 19, α(L)=0.0001777 25, α(M)=3.73E-5 5, α(N)=8.32E-6 12, α(O)=1.334E-6 19, α(P)=9.61E-8 13
   2782.4 (5/2+,7/2+) 0.15 ps +10-5    2637.4 8 (E2+M1) 0.00097α=0.00097 4, α(K)=0.000301 15, α(L)=3.77×10-5 20, α(M)=7.9E-6 4, α(N)=1.76E-6 9, α(O)=2.85E-7 16, α(P)=2.19E-8 13
(5/2+,7/2+) 0.15 ps +10-5    2781.8 9 (E2+M1) 0.00100α=0.00100 4, α(K)=0.000271 11, α(L)=3.40×10-5 15, α(M)=7.09E-6 32, α(N)=1.59E-6 7, α(O)=2.57E-7 12, α(P)=1.97E-8 10
   2782.7 (13/2+) > 51 fs    576.93 25 (E2+M1) 0.0098α=0.0098 20, α(K)=0.0083 18, α(L)=0.00116 17, α(M)=0.000245 35, α(N)=5.5×10-5 8, α(O)=8.7E-6 14, α(P)=6.1E-7 15
(13/2+) > 51 fs   1261.1 5 (E2) 1.33×10-3B(E2)(W.u.)<65.31, α=1.33E-3 2, α(K)=0.001128 16, α(L)=0.0001486 21, α(M)=3.12E-5 4, α(N)=6.95E-6 10, α(O)=1.117E-6 16, α(P)=8.12E-8 11
   2801.77 (9/2+) 0.12 ps +16-5    1151.2 5 (E2+M1) 0.00193α=0.00193 34, α(K)=0.00165 30, α(L)=0.000216 35, α(M)=4.5×10-5 7, α(N)=1.01E-5 16, α(O)=1.63E-6 27, α(P)=1.21E-7 24
(9/2+) 0.12 ps +16-5    2656.0 4 (E2+M1) 0.00097α=0.00097 4, α(K)=0.000297 14, α(L)=3.72×10-5 19, α(M)=7.8E-6 4, α(N)=1.74E-6 9, α(O)=2.81E-7 15, α(P)=2.16E-8 12
(9/2+) 0.12 ps +16-5    2801.8 3 (E2) 9.67×10-4B(E2)(W.u.)=0.18 +14-9, α=9.67E-4 14, α(K)=0.000258 4, α(L)=3.21E-5 5, α(M)=6.70E-6 9, α(N)=1.498E-6 21, α(O)=2.426E-7 34, α(P)=1.853E-8 26
   2810.70 (1/2+) > 76 fs   1201.1 5 (E2+M1) 0.00176α=0.00176 30, α(K)=0.00150 26, α(L)=0.000196 31, α(M)=4.1×10-5 6, α(N)=9.2E-6 15, α(O)=1.48E-6 24, α(P)=1.10E-7 21
(1/2+) > 76 fs   2810.95 23 (E2) 9.70×10-4B(E2)(W.u.)<0.59, α=9.70E-4 14, α(K)=0.000256 4, α(L)=3.20E-5 4, α(M)=6.66E-6 9, α(N)=1.490E-6 21, α(O)=2.412E-7 34, α(P)=1.842E-8 26
   2814.0 (1/2-) 24 fs +26-14    1233.1 4 (E2) 1.39×10-3B(E2)(W.u.)=9E1 +12-5, α=1.39E-3 2, α(K)=0.001180 17, α(L)=0.0001558 22, α(M)=3.27E-5 5, α(N)=7.29E-6 10, α(O)=1.170E-6 16, α(P)=8.49E-8 12
(1/2-) 24 fs +26-14    1687.7 3 (E1) 7.09×10-4B(E1)(W.u.)=0.0012 +15-6, α=7.09E-4 10, α(K)=0.000307 4, α(L)=3.79E-5 5, α(M)=7.89E-6 11, α(N)=1.762E-6 25, α(O)=2.85E-7 4, α(P)=2.165E-8 30
   2837.5 (5/2-,7/2-) 24 fs +13-9    2692.0 9 (E1) 1.20×10-3B(E1)(W.u.)=0.00040 +24-14, α=1.20E-3 2, α(K)=0.0001479 21, α(L)=1.809E-5 25, α(M)=3.76E-6 5, α(N)=8.41E-7 12, α(O)=1.362E-7 19, α(P)=1.045E-8 15
(5/2-,7/2-) 24 fs +13-9    2837.5 11 (E1) 1.27×10-3B(E1)(W.u.)=1.1E-4 +7-4, α=1.27E-3 2, α(K)=0.0001369 19, α(L)=1.672E-5 23, α(M)=3.48E-6 5, α(N)=7.77E-7 11, α(O)=1.259E-7 18, α(P)=9.66E-9 14
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   2839.7 (9/2-) 56 fs +48-23    2694.2 4 (E1) 1.20×10-3B(E1)(W.u.)=0.00023 +16-10, α=1.20E-3 2, α(K)=0.0001478 21, α(L)=1.807E-5 25, α(M)=3.76E-6 5, α(N)=8.40E-7 12, α(O)=1.361E-7 19, α(P)=1.043E-8 15
   2844.7 (3/2-) 45 fs +90-28    1186.8 5 (E1) 6.71×10-4B(E1)(W.u.)=0.0008 +15-6, α=6.71E-4 9, α(K)=0.000561 8, α(L)=7.00E-5 10, α(M)=1.458E-5 20, α(N)=3.26E-6 5, α(O)=5.25E-7 7, α(P)=3.95E-8 6
(3/2-) 45 fs +90-28    1546.6 6 (E1) 6.59×10-4B(E1)(W.u.)=0.0004 +7-3, α=6.59E-4 9, α(K)=0.000354 5, α(L)=4.39E-5 6, α(M)=9.14E-6 13, α(N)=2.042E-6 29, α(O)=3.30E-7 5, α(P)=2.501E-8 35
(3/2-) 45 fs +90-28    2846.2 11 (E1) 1.27×10-3B(E1)(W.u.)=0.00012 +19-8, α=1.27E-3 2, α(K)=0.0001362 19, α(L)=1.665E-5 23, α(M)=3.46E-6 5, α(N)=7.74E-7 11, α(O)=1.253E-7 18, α(P)=9.62E-9 13
   2847.5 (9/2+) > 97 fs   1005.0 4 (E2+M1) 0.0026α=0.0026 5, α(K)=0.0022 4, α(L)=0.00029 5, α(M)=6.2×10-5 11, α(N)=1.38E-5 24, α(O)=2.2E-6 4, α(P)=1.64E-7 35
(9/2+) > 97 fs   1354.0 5 (E2+M1) 0.00139α=0.00139 21, α(K)=0.00116 18, α(L)=0.000150 22, α(M)=3.1×10-5 5, α(N)=7.0E-6 10, α(O)=1.13E-6 17, α(P)=8.5E-8 15
(9/2+) > 97 fs   1389.9 6 (E2+M1) 0.00132α=0.00132 19, α(K)=0.00110 17, α(L)=0.000142 20, α(M)=3.0×10-5 4, α(N)=6.6E-6 10, α(O)=1.07E-6 16, α(P)=8.0E-8 13
(9/2+) > 97 fs   2702.8 12 (E2+M1) 0.00098α=0.00098 4, α(K)=0.000287 13, α(L)=3.60×10-5 18, α(M)=7.5E-6 4, α(N)=1.68E-6 8, α(O)=2.72E-7 14, α(P)=2.08E-8 11
(9/2+) > 97 fs   2848.4 11 (E2) 9.80×10-4B(E2)(W.u.)<0.19, α=9.80E-4 14, α(K)=0.0002503 35, α(L)=3.12E-5 4, α(M)=6.51E-6 9, α(N)=1.455E-6 20, α(O)=2.356E-7 33, α(P)=1.800E-8 25
   2881.6 (7/2+) > 55 fs   1424.5 8 (E2+M1) 0.00127α=0.00127 18, α(K)=0.00104 16, α(L)=0.000134 19, α(M)=2.8×10-5 4, α(N)=6.3E-6 9, α(O)=1.02E-6 15, α(P)=7.6E-8 12
(7/2+) > 55 fs   1428.5 6 (E2+M1) 0.00126α=0.00126 18, α(K)=0.00104 15, α(L)=0.000134 19, α(M)=2.8×10-5 4, α(N)=6.3E-6 9, α(O)=1.01E-6 15, α(P)=7.6E-8 12
(7/2+) > 55 fs   2737.0 16 (E2+M1) 0.00099α=0.00099 4, α(K)=0.000280 12, α(L)=3.51×10-5 17, α(M)=7.32E-6 35, α(N)=1.64E-6 8, α(O)=2.65E-7 13, α(P)=2.03E-8 11
(7/2+) > 55 fs   2882.3 11 (E2+M1) 0.00103α=0.00103 4, α(K)=0.000254 9, α(L)=3.17×10-5 13, α(M)=6.62E-6 27, α(N)=1.48E-6 6, α(O)=2.40E-7 10, α(P)=1.84E-8 8
   2927.25 19/2-      858.42 15 E1 1.19×10-3α=1.19×10-3 2, α(K)=0.001029 14, α(L)=0.0001298 18, α(M)=2.71E-5 4, α(N)=6.05E-6 8, α(O)=9.73E-7 14, α(P)=7.21E-8 10
   2929.2 (5/2+,7/2+) 0.08 ps +14-4    1636.0 5 (E2+M1) 0.00104α=0.00104 12, α(K)=0.00078 10, α(L)=0.000100 12, α(M)=2.09×10-5 26, α(N)=4.7E-6 6, α(O)=7.6E-7 10, α(P)=5.7E-8 8
(5/2+,7/2+) 0.08 ps +14-4    2785.2 11 (E2+M1) 0.00100α=0.00100 4, α(K)=0.000271 11, α(L)=3.39×10-5 15, α(M)=7.07E-6 32, α(N)=1.58E-6 7, α(O)=2.57E-7 12, α(P)=1.97E-8 10
(5/2+,7/2+) 0.08 ps +14-4    2930.3 12 (E2+M1) 0.00104α=0.00104 4, α(K)=0.000246 8, α(L)=3.07×10-5 11, α(M)=6.41E-6 24, α(N)=1.43E-6 5, α(O)=2.33E-7 9, α(P)=1.78E-8 8
   2962.65 19/2+      854.6 3 (E2) 0.00300α=0.00300 4, α(K)=0.00255 4, α(L)=0.000356 5, α(M)=7.50×10-5 11, α(N)=1.671E-5 23, α(O)=2.66E-6 4, α(P)=1.826E-7 26
19/2+      893.7 3 M1+E2 0.0034α=0.0034 7, α(K)=0.0029 6, α(L)=0.00039 7, α(M)=8.1×10-5 14, α(N)=1.82E-5 32, α(O)=2.9E-6 5, α(P)=2.1E-7 5
   3016.88 21/2+       89.7 7 E1 0.338α=0.338 9, α(K)=0.287 7, α(L)=0.0410 11, α(M)=0.00859 23, α(N)=0.00189 5, α(O)=0.000290 8, α(P)=1.68×10-5 4
21/2+      948.0 3 E2 2.39×10-3α=2.39×10-3 3, α(K)=0.002034 29, α(L)=0.000279 4, α(M)=5.87E-5 8, α(N)=1.307E-5 18, α(O)=2.085E-6 29, α(P)=1.460E-7 20
   3018.95 21/2- 0.2 ns 1      91.7 1 M1+E21.7 62.58B(M1)(W.u.)=0.010 +15-5, α=2.58 24, α(K)=1.516 35, α(L)=0.83 17, α(M)=0.19 4, α(N)=0.040 8, α(O)=0.0057 11, α(P)=8.7×10-5 6
   3396.7 21/2-      434.1 3 E1 0.00522α=0.00522 7, α(K)=0.00449 6, α(L)=0.000583 8, α(M)=0.0001218 17, α(N)=2.71×10-5 4, α(O)=4.33E-6 6, α(P)=3.08E-7 4
   3470.9 23/2-      454.0 3 E1 0.00470α=0.00470 7, α(K)=0.00404 6, α(L)=0.000523 7, α(M)=0.0001094 15, α(N)=2.437×10-5 34, α(O)=3.89E-6 5, α(P)=2.78E-7 4
   3526.6 23/2-      507.6 3 M1+E2 0.0135α=0.0135 27, α(K)=0.0115 25, α(L)=0.00164 20, α(M)=0.00035 4, α(N)=7.7×10-5 9, α(O)=1.23E-5 17, α(P)=8.4E-7 21
E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
   3585.5 23/2+ 0.2 ns 1     568.6 3 M1 0.01224B(M1)(W.u.)=0.00046 +38-16, α=0.01224 17, α(K)=0.01049 15, α(L)=0.001382 19, α(M)=0.000290 4, α(N)=6.49×10-5 9, α(O)=1.048E-5 15, α(P)=7.89E-7 11
23/2+ 0.2 ns 1     622.7 7 [E2] 0.00636B(E2)(W.u.)=0.16 +14-6, α=0.00636 9, α(K)=0.00534 8, α(L)=0.000801 11, α(M)=0.0001700 24, α(N)=3.77E-5 5, α(O)=5.93E-6 8, α(P)=3.78E-7 5
   4370.5 27/2-      899.6 3 E2 0.00268α=0.00268 4, α(K)=0.002278 32, α(L)=0.000315 4, α(M)=6.63×10-5 9, α(N)=1.478E-5 21, α(O)=2.354E-6 33, α(P)=1.633E-7 23
   7915.2 5/2+ 0.007 eV 3    7915M1 B(M1)(W.u.)=0.0007 3

Back to top

Additional Level Data and Comments:

E(level)Jπ(level)T1/2(level)Comments
      0.05/2+ STABLE μ=+4.2754 5 (1982Ma31,2014StZZ), Q=-0.077 6 (1994Ii01,2016St14)
<r2>1/2: 4.8919 fm 50 (2013An02, compilation); 5.19 fm 22 in (e,e’p) (1993La16).
    145.44347/2+ 1.85 ns 3  μ=+2.95 9 (2014StZZ)
Radius(rms)=5.21 fm 20 in (e,e’p) (1993La16).
   1117.6711/2- 4.8 ns 1  μ=+6.2 4 (1984Go12,2014StZZ)
Radius(rms)=5.64 fm 22 in (e,e’p) (1993La16).
   1126.833/2+ > 188 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1292.69(5/2)+ 0.33 ps +10-7  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1298.711/2+ 0.34 ps +22-10  Radius(rms)=4.93 fm 24 in (e,e’p) (1993La16).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1436.123/2+ 0.23 ps +8-5  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1452.36(7/2)+ 0.31 ps +11-7  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1457.369/2+ 0.26 ps +7-5  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1493.9811/2+ 0.46 ps +36-15  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1520.899/2+ 150 fs +19-16  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1580.055/2- 0.22 ps +6-4  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1608.26(3/2)+ 11.8 fs 7  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1650.85(9/2+) 132 fs +21-17  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1657.071/2+ > 0.67 ps T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1767.3613/2+ > 0.37 ps T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1786.47(5/2+) 0.19 ps +5-4  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1812.37(9/2+) 0.8 ps +12-3  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1842.14(7/2+) 0.70 ps +59-22  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1853.79(11/2+) 0.8 ps +16-3  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1975.26(3/2+) 0.39 ps +19-10  XREF: M(1981).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   1986.08(13/2+) > 0.42 ps T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2000.27(13/2-) 0.13 ps +11-5  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2000.47(9/2)- 0.22 ps +12-6  E(level): Possible member of h11/2~#2+ multiplet (n,n’γ).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2003.84(11/2+) 0.7 ps +10-3  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
E(level)Jπ(level)T1/2(level)Comments
   2018.12(3/2+) 0.40 ps +26-12  XREF: M(2016).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2045.119/2+ 0.68 ps +86-25  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2075.50(5/2+) 0.22 ps +9-6  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2100.91(3/2+,5/2+) 0.17 ps +7-4  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2105.02(5/2-) 87 fs +15-11  E(level): Possible member of h11/2~#2+ multiplet (n,n’γ).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2105.5(7/2-,15/2-) 0.15 ps +49-8  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2108.2015/2(+) > 28 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2126.10(11/2+) > 114 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2135.51(7/2-) 0.27 ps +11-7  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2171.86(5/2-,7/2-,9/2-) 101 fs +18-15  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2188.15(3/2+) 0.26 ps +24-9  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2190.36(1/2-) > 215 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2205.96(11/2+) 171 fs +40-28  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2228.84(5/2+,7/2+) 0.7 ps +61-4  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2247.7(3/2-,5/2-) 147 fs +35-25  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2264.49(3/2+) 0.18 ps +10-7  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2267.20(1/2+) > 184 fs XREF: F(2280)M(2272).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2302.6(5/2+,7/2+,9/2+) 0.25 ps +15-7  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2315.65(5/2,7/2) 130 fs +35-24  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2336.54(15/2-) > 28 fs E(level): Possible member of h11/2~#2+ multiplet (n,n’γ).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2345.87(9/2+) 0.21 ps +26-8  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2362.85(5/2-) 39 fs +10-8  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2382.2(9/2-,11/2-) 0.24 ps +28-9  E(level): Possible member of h11/2~#2+ multiplet (n,n’γ).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2403.13(9/2+) 0.49 ps +85-20  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2419.9(9/2+) 0.5 ps +17-2  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
E(level)Jπ(level)T1/2(level)Comments
   2453.1(3/2-,5/2-) 18.7 fs +35-28  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2454.20(15/2+) > 94 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2461.79(5/2+) 136 fs +57-33  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2473.2(1/2-,9/2-) > 14 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2499.76(5/2+,7/2+,9/2+) 102 fs +28-19  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2520.15(3/2+) 0.2 ps +18-1  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2563.9(5/2-,7/2-) 55 fs +10-8  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2580.71(11/2+) > 13 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2583.0(5/2-,7/2-,9/2-) 24 fs +7-6  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2601.2(5/2-,7/2-) 59 fs +37-20  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2603.7(5/2-,7/2-) 28 fs +12-9  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2607.1(1/2+) 0.12 ps +11-5  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2611.7(9/2+) 29 fs +5-4  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2623.2(5/2+,7/2+) 72 fs +19-14  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2646.4(9/2+) 90 fs +25-17  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2659.6(11/2+) > 156 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2669.02(9/2-,11/2-,13/2-) 42 fs +23-14  E(level): Possible member of h11/2~#2+ multiplet (n,n’γ).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2682.99(5/2+) 0.22 ps +22-8  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2692.0-   XREF: p(2984).
   2707.9(15/2-) 0.04 ps +12-3  E(level): Possible member of h11/2~#2+ multiplet (n,n’γ).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2710.1(3/2+) 0.16 ps +46-8  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2718.5(9/2,11/2) > 159 fs E(level): Possible member of h11/2~#2+ multiplet (n,n’γ).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2722.4(3/2+) 44 fs +16-11  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2731.4(9/2+) 55 fs +23-15  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2739.7(1/2-,9/2-) > 87 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
E(level)Jπ(level)T1/2(level)Comments
   2777.5(9/2) 44 fs +12-9  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2782.4(5/2+,7/2+) 0.15 ps +10-5  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2782.7(13/2+) > 51 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2801.77(9/2+) 0.12 ps +16-5  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2807.18(3/2+,5/2,7/2+) 51 fs +25-15  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2810.70(1/2+) > 76 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2814.0(1/2-) 24 fs +26-14  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2837.5(5/2-,7/2-) 24 fs +13-9  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2839.7(9/2-) 56 fs +48-23  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2844.7(3/2-) 45 fs +90-28  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2847.5(9/2+) > 97 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2863.4 0.06 ps +150-4  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2881.6(7/2+) > 55 fs T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2887.47(7/2+,9/2,11/2+) > 24 fs E(level): Possible member of h11/2~#2+ multiplet (n,n’γ).
T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   2929.2(5/2+,7/2+) 0.08 ps +14-4  T1/2(level): From (n,n’γ) (2008Sc17, DSAM).
   4187.8(23/2+)   Possible configuration=π(g7/2d5/2)9~# ν(f7/2h11/2-1) in (7Li,4nγ) (2015Li21).
   97517/2- 60 keV Jπ(level): L in (p,p), analogs to the lowest states in 141Ce.
  104053/2- 84 keV Jπ(level): L in (p,p), analogs to the lowest states in 141Ce.
  108821/2- 91 keV Jπ(level): L in (p,p), analogs to the lowest states in 141Ce.
  11100(9/2-)   Jπ(level): L in (p,p), analogs to the lowest states in 141Ce.
  11251(5/2)- 77 keV Jπ(level): L in (p,p), analogs to the lowest states in 141Ce.
  11493(5/2-) 100 keV Jπ(level): L in (p,p), analogs to the lowest states in 141Ce.

Back to top

Additional Gamma Comments:

E(level)E(gamma)Comments
   1117.67    972.14E(γ): from (α,2nγ)
   1117.60E(γ): from (α,2nγ)
I(γ): from (n,n’γ). Other: 10.5 12 (α,2nγ) (1975Fr18)
   1126.83    981.1I(γ): from (n,n’γ). Other: 2.7 3 (ε decay (2.49 h))
   1455.5   1455.5E(γ): from (α,2nγ)
   1493.98   1348.51E(γ): placed at 1494 level in Coul. ex. data
   1559.0   1559E(γ): from (γ,γ,)
   1650.85    532.6I(γ): from (γ,γ,)
   1767.36    649.62M(γ): from (α,2nγ)
   1849.0   1849E(γ): from (γ,γ,)
   1910.49   1764.5I(γ): Iγ(1910γ)/Iγ(1765γ)=42/58 (n,n’γ) (1994De56)
   1910.5I(γ): Iγ(1910γ)/Iγ(1765γ)=42/58 (n,n’γ) (1994De56)
   1912.9    145.7E(γ): from (α,2nγ)
    795.1E(γ): from (α,2nγ)
   2106.2   1961E(γ): from (γ,γ,)
   2106E(γ): from (γ,γ,)
   2108.20    311.9M(γ): from (n,n’γ)
    340.9M(γ): from (n,n’γ)
   2126.10    669I(γ): this γ ray is not resolved by 2008Sc17 in (n,n’γ) due to a background line and the branching ratio relative to 632γ was taken by the authors from 1994De56.
   2315.65   1022.9M(γ): (E2+M1) (n,n’γ) (2008Sc17)
   2169.9M(γ): (E2+M1) (n,n’γ) (2008Sc17)
   2345.87    559.0M(γ): (E2+M1) in (n,n’γ) 2008Sc17 but based on assigned spins it is rather ΔJ=2 γ
   2362.85   1064.4M(γ): M2 γ based on ΔJπ(levels) gives B(M2)(W.u.)=1.8×103 +10-7 exceeding RUL=1
   2626.7   1509.1E(γ): from (α,2nγ)
   2669.02   1216.4M(γ): (E3) from 2008Sc17 in (n,n’γ) greatly exeeds RUL limits and is not adopted here
   2682.99    870.9M(γ): (E2+M1) from (n,n’γ) but (E2) based on ΔJ from level scheme
E(level)E(gamma)Comments
   2749.58    963.1E(γ): from (p,2nγ)
   2881.6   1028.0M(γ): (E2+M1) from (n,n’γ) but (E2) based on ΔJ from level scheme
   2927.25    858.42E(γ): from (p,2nγ)
   2954.0   2954E(γ): from (γ,γ,)
   3526.6    507.6M(γ): D+Q, ΔJ=1 γ in (7Li,4nγ) (ADO ratio, 2015Li21); E2, ΔJ=2 γ in (α,2nγ) (α(K)exp, α(L)exp, angular correlations). ΔJ=1 γ sustained by D+Q, ΔJ=1 509.7γ decaying this level and ultimately by (α,2nγ) data with very mixed M1+E2 γ, which is adopted here.
    509.7M(γ): D+Q, ΔJ=1 γ in (7Li,4nγ)
   3585.5    568.6M(γ): from (α,2nγ)
   3643.1   3643E(γ): from (γ,γ,)
   4370.5    843.9M(γ): from (7Li,4nγ)
   4740.6   1269.6M(γ): from (7Li,4nγ)

Back to top