Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4BertiniEvaporationChannel.hh
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25//
26//
27// Implementation of the HETC88 code into Geant4.
28// Evaporation and De-excitation parts
29// T. Lampen, Helsinki Institute of Physics, May-2000
30
31#ifndef G4BertiniEvaporationChannel_h
32#define G4BertiniEvaporationChannel_h 1
33
34#include "globals.hh"
35#include "G4DynamicParticle.hh"
36#include "G4NucleiProperties.hh"
37
39{
40public:
43
44 void setVerboseLevel( G4int verbose );
45 void setNucleusA( G4int inputA );
46 void setNucleusZ( G4int inputZ );
49 void setExcitationEnergy( G4double inputE );
50 void setQ( G4double inputQ );
51 void setPairingCorrection( G4int isCorrection );
54
55 virtual G4double getProbability() ;
56 virtual void setProbability( G4double newProb ) ;
57 virtual void calculateProbability() = 0 ;
58 virtual G4double qmFactor ();
59 virtual G4double getQ();
60 virtual G4double getCoulomb();
61 virtual G4double getThresh();
62
63 virtual G4DynamicParticle* emit() = 0;
64
65protected:
77 // G4int massInNeutronMasses;
86 G4double&,
87 G4double& );
88};
89
90
91#endif
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
void isotropicCosines(G4double &, G4double &, G4double &)
virtual void calculateProbability()=0
void setPairingCorrection(G4int isCorrection)
virtual void setProbability(G4double newProb)
virtual G4DynamicParticle * emit()=0
void setQ(G4double inputQ)
G4double cameron(G4double a, G4double z)
G4double Q(G4double a, G4double z)