ADOPTED LEVELS, GAMMAS for 67Ge

Authors: Huo Junde, Huang Xiaolong, J.K. Tuli |  Citation: Nucl. Data Sheets 106, 159 (2005) |  Cutoff date: 1-Apr-2005 

 Full ENSDF file | Adopted Levels (PDF version) 


Q(β-)=-6071 keV 5S(n)= 9122 keV 6S(p)= 6223 keV 6Q(α)= -2870 keV 5
Reference: 2012WA38

References:
  A  67As ε decay  B  57Fe(12C,2nγ)
  C  64Zn(α,nγ), 63Cu(6Li,2nγ)  D  70Ge(3He,6He)








E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
     0ABCD 1/2- 18.9 m 3 
% ε = 100
     
    18.20 5 ABC  5/2- 13.7 µs 9      18.20 5 
  100 18 
E2
     0
1/2-
   122.58 14 A CD 3/2(-)      104.4 3 
   122.7 3 
   23.8 5 
  100.0 5 
(M1+E2)
(M1(+E2))
    18.20
     0
5/2-
1/2-
   243.61 16 A C  3/2(-)      120.8 3 
   225.4 3 
   243.6 3 
  100.0 25 
   14.9 18 
   81 3 
(M1+E2)


   122.58
    18.20
     0
3/2(-)
5/2-
1/2-
   711.55 24 A CD 5/2(-)      589.0 3 
   693.1 5 
   42
  100
(M1+E2)

   122.58
    18.20
3/2(-)
5/2-
   714.70 25   CD      471.2 3 
   592.0 3 
 
 


   243.61
   122.58
3/2(-)
3/2(-)
   751.70 6  BC  9/2+ 146 ns 4     733.50 3 
  100
M2
    18.20
5/2-
   808.13 18 A C       685.5 3 
   789.9 3 
   808.1 3 
   61 9 
   24 7 
  100 11 



   122.58
    18.20
     0
3/2(-)
5/2-
1/2-
   929.4 3   CD      217.9 3 
   807.0 10 
   911.0 5 
 
 
 



   711.55
   122.58
    18.20
5/2(-)
3/2(-)
5/2-
  1019.90 20 A C  5/2(-)      776.2 2 
   897.45 21 
   32
  100

(M1+E2)
   243.61
   122.58
3/2(-)
3/2(-)
  1080 30    D        
  1150.0 3   C       437.8 7 
  1131.9 3 
 
 


   711.55
    18.20
5/2(-)
5/2-
  1159.0 4   C      1036.4 3 
  100

   122.58
3/2(-)
  1256.7 3   C       327.5 7 
  1256.7 3 
 
 


   929.4
     0

1/2-
  1273.8 4 A C       465.0 7 
  1151.4 5 
  1274.3 10 
 
   45
  100



   808.13
   122.58
     0

3/2(-)
1/2-
E(level)
(keV)
XREFJπ(level) T1/2(level)E(γ)
(keV)
I(γ)M(γ)Final Levels
  1293.9 4 A CD     1049.6 10 
  1171.3 5 
  1294.0 5 
   19
  100
   93



   243.61
   122.58
     0
3/2(-)
3/2(-)
1/2-
  1431.8 10   C      1309.2 10 
  100

   122.58
3/2(-)
  1641.89 14  B   11/2+      890.18 12 
  100
M1+E2
   751.70
9/2+
  1652.8 4 A C       633.0 3 
  100

  1019.90
5/2(-)
  1698.4 4 A C      1576.4 7 
  1698.0 5 
 
 


   122.58
     0
3/2(-)
1/2-
  1747.29 7  B   13/2+      995.58 3 
  100
E2
   751.70
9/2+
  1900.8 4 A C       248.0 3 
  1657.0 5 
  100
   25


  1652.8
   243.61

3/2(-)
  2096.8 8 A C      1385.2 10 
  100

   711.55
5/2(-)
  2156.4 8   C      1912.8 10 
  2156.4 10 
 
 


   243.61
     0
3/2(-)
1/2-
  2218.2 10 A C      2218.2 10 
  100

     0
1/2-
  2251.3 8 A C      1443.4 10 
  2128.4 10 
 
 


   808.13
   122.58

3/2(-)
  2421.12 15  B   (13/2+)      779.23 5 
  100
(M1+E2)
  1641.89
11/2+
  2524.4 8 A C      1230.7 10 
  2280.6 10 
 
 


  1293.9
   243.61

3/2(-)
  2597.2 8   C       500.3 3 
  2474.6 10 
 
 


  2096.8
   122.58

3/2(-)
  2690 30    D        
  3074.12 10  B   (17/2+)     1326.84 9 
  100
(E2)
  1747.29
13/2+
  3603.96 10  B   (15/2-)     1856.62 9 
  100
(E1)
  1747.29
13/2+
  4313.60 11  B   (19/2-)      709.63 6 
  1239.50 9 
   77 4 
  100 11 
(E2)
(E1(+M2))
  3603.96
  3074.12
(15/2-)
(17/2+)
  4733.05 12  B   (21/2-)      419.45 4 
  100
(M1(+E2))
  4313.60
(19/2-)
  4847.98 11  B   (23/2-)      534.38 3 
  100
(E2)
  4313.60
(19/2-)

E(level): From a least-squares fit to the Eγ data

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Additional Gamma Data:















E(level)
(keV)
Jπ(level)T1/2(level)E(γ)
(keV)
MultipolarityMixing
Ratio
Conversion
Coefficient
Additional Data
    18.20 5/2- 13.7 µs 9      18.20 5 E2 364B(E2)(W.u.)=3.5 3, α=364
   122.58 3/2(-)      104.4 3 (M1+E2)4 GE0.614α=0.614
3/2(-)      122.7 3 (M1(+E2))0.85 850.17α=0.17 13
   243.61 3/2(-)      120.8 3 (M1+E2)5 GE0.361α=0.361
   711.55 5/2(-)      589.0 3 (M1+E2)-1.1 +6-23 
   751.70 9/2+ 146 ns 4     733.50 3 M2 B(M2)(W.u.)=0.0798 10
  1019.90 5/2(-)      897.45 21 (M1+E2)-1.0 +8-24 
  1641.89 11/2+      890.18 12 M1+E2+0.50 8 
  2421.12 (13/2+)      779.23 5 (M1+E2)+0.5 1 
  4313.60 (19/2-)     1239.50 9 (E1(+M2))+0.01 4 
  4733.05 (21/2-)      419.45 4 (M1(+E2))+0.02 3 

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Additional Level Data and Comments:

E(level)Jπ(level)T1/2(level)Comments
     01/2- 18.9 m 3 
% ε = 100
J=1/2 from γ(θ) and γγ(θ) in 64Zn(α,nγ), π=- from log ft=5.61 4 to 1/2-.
    18.205/2- 13.7 µs 9  J=5/2 from γ(θ) and γγ(θ) in 64Zn(α,nγ); π=- from E2 to 1/2-.
T1/2(level): From pulsed beam measurements in 64Zn(α,nγ), 63Cu(6Li,2nγ).
   122.583/2(-)   J=3/2 from γ(θ) and γγ(θ) in 64Zn(α,nγ); π=- from shell model systematics.
   243.613/2(-)   J=3/2 from γ(θ) and γγ(θ) in 64Zn(α,nγ); π=(-) from log ft=5.64 7 from (5/2-).
   711.555/2(-)   J=5/2 from γ(θ) and γγ(θ) in 64Zn(α,nγ); π=- from shell model systematics.
   751.709/2+ 146 ns 4  μ=-0.849 18 (1989Ra17), G=-0.1887 26 (1991Le34)
J=9/2 from γ(θ) and polarization studies in 57Fe(12C,2nγ); π=+ from M2 to 5/2-.
E(level): J=9/2 from γ(θ) and polarization studies in 57Fe(12C,2nγ); π=+ from M2 to 5/2-.
  1019.905/2(-)   J=5/2 from γ(θ) and γγ(θ) in 64Zn(α,nγ); π=- from shell model systematics.
  1641.8911/2+   Jπ(level): From γ(θ), polarization and excitation function data in 57Fe(12C,2nγ).
  1747.2913/2+   Jπ(level): From γ(θ), polarization and excitation function data in 57Fe(12C,2nγ).
  2421.12(13/2+)   Jπ(level): From γ(θ), polarization and excitation function data in 57Fe(12C,2nγ).
  3074.12(17/2+)   Jπ(level): From γ(θ), polarization and excitation function data in 57Fe(12C,2nγ).
  3603.96(15/2-)   Jπ(level): From γ(θ), polarization and excitation function data in 57Fe(12C,2nγ).
  4313.60(19/2-)   Jπ(level): From γ(θ), polarization and excitation function data in 57Fe(12C,2nγ).
  4733.05(21/2-)   Jπ(level): From γ(θ), polarization and excitation function data in 57Fe(12C,2nγ).
  4847.98(23/2-)   Jπ(level): From γ(θ), polarization and excitation function data in 57Fe(12C,2nγ).

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Additional Gamma Comments:

E(level)E(gamma)Comments
    18.20    18.20M(γ): from α(K)exp in 64Zn(α,nγ), 63Cu(6Li,2nγ)
   122.58   104.4M(γ): From γ(θ) and directional correlations with an oriented source in 64Zn(α,nγ) and ΔJπ
   122.7M(γ): From γ(θ) and directional correlations with an oriented source in 64Zn(α,nγ) and ΔJπ
   243.61   120.8M(γ): From γ(θ) and directional correlations with an oriented source in 64Zn(α,nγ) and ΔJπ
   243.6M(γ): From γ(θ) and directional correlations with an oriented source in 64Zn(α,nγ) and ΔJπ
   711.55   589.0M(γ): From γ(θ) and directional correlations with an oriented source in 64Zn(α,nγ) and ΔJπ
   751.70   733.50M(γ): M2 from α(K)exp in 64Zn(α,nγ).
  1019.90   897.45M(γ): From γ(θ) and directional correlations with an oriented source in 64Zn(α,nγ) and ΔJπ
  1641.89   890.18M(γ): From γ(θ) and polarization in 57Fe(12C,2nγ)
  1747.29   995.58M(γ): From γ(θ) and polarization in 57Fe(12C,2nγ)
  2421.12   779.23M(γ): From γ(θ) and polarization in 57Fe(12C,2nγ)
  3074.12  1326.84M(γ): From γ(θ) and polarization in 57Fe(12C,2nγ)
  3603.96  1856.62M(γ): From γ(θ) and polarization in 57Fe(12C,2nγ)
  4313.60   709.63M(γ): From γ(θ) and polarization in 57Fe(12C,2nγ)
  1239.50M(γ): From γ(θ) and polarization in 57Fe(12C,2nγ)
  4733.05   419.45M(γ): From γ(θ) and polarization in 57Fe(12C,2nγ)
  4847.98   534.38M(γ): From γ(θ) and polarization in 57Fe(12C,2nγ)

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