Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4B12GEMProbability Class Reference

#include <G4B12GEMProbability.hh>

+ Inheritance diagram for G4B12GEMProbability:

Public Member Functions

 G4B12GEMProbability ()
 
 ~G4B12GEMProbability ()
 
- Public Member Functions inherited from G4GEMProbability
 G4GEMProbability (G4int anA, G4int aZ, G4double aSpin)
 
virtual ~G4GEMProbability ()
 
G4double EmissionProbability (const G4Fragment &fragment, G4double anEnergy)
 
G4int GetZ_asInt (void) const
 
G4int GetA_asInt (void) const
 
G4double GetZ (void) const
 
G4double GetA (void) const
 
G4double GetSpin (void) const
 
G4double GetNormalization (void) const
 
void SetCoulomBarrier (const G4VCoulombBarrier *aCoulombBarrierStrategy)
 
G4double GetCoulombBarrier (const G4Fragment &fragment) const
 
G4double CalcAlphaParam (const G4Fragment &) const
 
G4double CalcBetaParam (const G4Fragment &) const
 
- Public Member Functions inherited from G4VEmissionProbability
 G4VEmissionProbability ()
 
virtual ~G4VEmissionProbability ()
 
virtual G4double EmissionProbability (const G4Fragment &fragment, const G4double anEnergy)=0
 
void SetOPTxs (G4int opt)
 
void UseSICB (G4bool use)
 

Additional Inherited Members

- Protected Attributes inherited from G4GEMProbability
G4double fPlanck
 
std::vector< G4doubleExcitEnergies
 
std::vector< G4doubleExcitSpins
 
std::vector< G4doubleExcitLifetimes
 
- Protected Attributes inherited from G4VEmissionProbability
G4int OPTxs
 
G4bool useSICB
 
G4PowfG4pow
 
G4PairingCorrectionfPairCorr
 
G4EvaporationLevelDensityParametertheEvapLDPptr
 

Detailed Description

Definition at line 39 of file G4B12GEMProbability.hh.

Constructor & Destructor Documentation

◆ G4B12GEMProbability()

G4B12GEMProbability::G4B12GEMProbability ( )

Definition at line 35 of file G4B12GEMProbability.cc.

35 :
36 G4GEMProbability(12,5,1.0) // A,Z,Spin
37{
38 ExcitEnergies.push_back(953.14*keV);
39 ExcitSpins.push_back(2.0);
40 ExcitLifetimes.push_back(180.0e-15*s);
41
42 ExcitEnergies.push_back(1673.65*keV);
43 ExcitSpins.push_back(2.0);
44 ExcitLifetimes.push_back(35.0e-15*s);
45
46 ExcitEnergies.push_back(2620.8*keV);
47 ExcitSpins.push_back(1.0);
48 ExcitLifetimes.push_back(49.0e-15*s);
49
50 ExcitEnergies.push_back(3388.3*keV);
51 ExcitSpins.push_back(3.0);
52 ExcitLifetimes.push_back(fPlanck/(3.1*eV));
53
54 ExcitEnergies.push_back(3759.0*keV);
55 ExcitSpins.push_back(2.0);
56 ExcitLifetimes.push_back(fPlanck/(40*keV));
57
58 ExcitEnergies.push_back(4301*keV);
59 ExcitSpins.push_back(1.0);
60 ExcitLifetimes.push_back(fPlanck/(9*keV));
61
62 ExcitEnergies.push_back(4518*keV);
63 ExcitSpins.push_back(4.0);
64 ExcitLifetimes.push_back(fPlanck/(110*keV));
65
66 ExcitEnergies.push_back(5.00E+3*keV);
67 ExcitSpins.push_back(1.0);
68 ExcitLifetimes.push_back(fPlanck/(50*keV));
69
70 ExcitEnergies.push_back(5612*keV);
71 ExcitSpins.push_back(3.0);
72 ExcitLifetimes.push_back(fPlanck/(110*keV));
73
74 ExcitEnergies.push_back(5726*keV);
75 ExcitSpins.push_back(3.0);
76 ExcitLifetimes.push_back(fPlanck/(50*keV));
77
78 ExcitEnergies.push_back(6.6E+3*keV);
79 ExcitSpins.push_back(1.0);
80 ExcitLifetimes.push_back(fPlanck/(140*keV));
81
82 ExcitEnergies.push_back(7.67E+3*keV);
83 ExcitSpins.push_back(2.0);
84 ExcitLifetimes.push_back(fPlanck/(45*keV));
85
86 ExcitEnergies.push_back(7836*keV);
87 ExcitSpins.push_back(1.0);
88 ExcitLifetimes.push_back(fPlanck/(60*keV));
89
90 ExcitEnergies.push_back(7937*keV);
91 ExcitSpins.push_back(1.0);
92 ExcitLifetimes.push_back(fPlanck/(27*keV));
93
94 ExcitEnergies.push_back(8.24E+3*keV);
95 ExcitSpins.push_back(3.0);
96 ExcitLifetimes.push_back(fPlanck/(65*keV));
97
98 ExcitEnergies.push_back(8.58E+3*keV);
99 ExcitSpins.push_back(3.0);
100 ExcitLifetimes.push_back(fPlanck/(75*keV));
101
102 ExcitEnergies.push_back(9040*keV);
103 ExcitSpins.push_back(1.0);
104 ExcitLifetimes.push_back(fPlanck/(95*keV));
105
106 ExcitEnergies.push_back(9585*keV);
107 ExcitSpins.push_back(3.0);
108 ExcitLifetimes.push_back(fPlanck/(34*keV));
109
110 ExcitEnergies.push_back(1.275E+4*keV);
111 ExcitSpins.push_back(0.0);
112 ExcitLifetimes.push_back(fPlanck/(85*keV));
113
114 ExcitEnergies.push_back(1.482E+4*keV);
115 ExcitSpins.push_back(2.0);
116 ExcitLifetimes.push_back(fPlanck/(200*keV));
117}
std::vector< G4double > ExcitSpins
std::vector< G4double > ExcitEnergies
std::vector< G4double > ExcitLifetimes

◆ ~G4B12GEMProbability()

G4B12GEMProbability::~G4B12GEMProbability ( )

Definition at line 119 of file G4B12GEMProbability.cc.

120{}

The documentation for this class was generated from the following files: