Geant4 11.1.1
Toolkit for the simulation of the passage of particles through matter
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G4B12GEMProbability.cc
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1//
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14// * regarding this software system or assume any liability for its *
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18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
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25//
26//
27// Hadronic Process: Nuclear De-excitations
28// by V. Lara (Nov 1999)
29//
30
32#include "G4SystemOfUnits.hh"
33
35 G4GEMProbability(12,5,1.0) // A,Z,Spin
36{
37 ExcitEnergies.push_back(953.14*keV);
38 ExcitSpins.push_back(2.0);
39 ExcitLifetimes.push_back(180.0e-15*s);
40
41 ExcitEnergies.push_back(1673.65*keV);
42 ExcitSpins.push_back(2.0);
43 ExcitLifetimes.push_back(35.0e-15*s);
44
45 ExcitEnergies.push_back(2620.8*keV);
46 ExcitSpins.push_back(1.0);
47 ExcitLifetimes.push_back(49.0e-15*s);
48
49 ExcitEnergies.push_back(3388.3*keV);
50 ExcitSpins.push_back(3.0);
51 ExcitLifetimes.push_back(fPlanck/(3.1*eV));
52
53 ExcitEnergies.push_back(3759.0*keV);
54 ExcitSpins.push_back(2.0);
55 ExcitLifetimes.push_back(fPlanck/(40*keV));
56
57 ExcitEnergies.push_back(4301*keV);
58 ExcitSpins.push_back(1.0);
59 ExcitLifetimes.push_back(fPlanck/(9*keV));
60
61 ExcitEnergies.push_back(4518*keV);
62 ExcitSpins.push_back(4.0);
63 ExcitLifetimes.push_back(fPlanck/(110*keV));
64
65 ExcitEnergies.push_back(5.00E+3*keV);
66 ExcitSpins.push_back(1.0);
67 ExcitLifetimes.push_back(fPlanck/(50*keV));
68
69 ExcitEnergies.push_back(5612*keV);
70 ExcitSpins.push_back(3.0);
71 ExcitLifetimes.push_back(fPlanck/(110*keV));
72
73 ExcitEnergies.push_back(5726*keV);
74 ExcitSpins.push_back(3.0);
75 ExcitLifetimes.push_back(fPlanck/(50*keV));
76
77 ExcitEnergies.push_back(6.6E+3*keV);
78 ExcitSpins.push_back(1.0);
79 ExcitLifetimes.push_back(fPlanck/(140*keV));
80
81 ExcitEnergies.push_back(7.67E+3*keV);
82 ExcitSpins.push_back(2.0);
83 ExcitLifetimes.push_back(fPlanck/(45*keV));
84
85 ExcitEnergies.push_back(7836*keV);
86 ExcitSpins.push_back(1.0);
87 ExcitLifetimes.push_back(fPlanck/(60*keV));
88
89 ExcitEnergies.push_back(7937*keV);
90 ExcitSpins.push_back(1.0);
91 ExcitLifetimes.push_back(fPlanck/(27*keV));
92
93 ExcitEnergies.push_back(8.24E+3*keV);
94 ExcitSpins.push_back(3.0);
95 ExcitLifetimes.push_back(fPlanck/(65*keV));
96
97 ExcitEnergies.push_back(8.58E+3*keV);
98 ExcitSpins.push_back(3.0);
99 ExcitLifetimes.push_back(fPlanck/(75*keV));
100
101 ExcitEnergies.push_back(9040*keV);
102 ExcitSpins.push_back(1.0);
103 ExcitLifetimes.push_back(fPlanck/(95*keV));
104
105 ExcitEnergies.push_back(9585*keV);
106 ExcitSpins.push_back(3.0);
107 ExcitLifetimes.push_back(fPlanck/(34*keV));
108
109 ExcitEnergies.push_back(1.275E+4*keV);
110 ExcitSpins.push_back(0.0);
111 ExcitLifetimes.push_back(fPlanck/(85*keV));
112
113 ExcitEnergies.push_back(1.482E+4*keV);
114 ExcitSpins.push_back(2.0);
115 ExcitLifetimes.push_back(fPlanck/(200*keV));
116}
117
119{}
120
std::vector< G4double > ExcitSpins
std::vector< G4double > ExcitEnergies
std::vector< G4double > ExcitLifetimes