Geant4-11
G4INCLParticleSampler.hh
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25//
26// INCL++ intra-nuclear cascade model
27// Alain Boudard, CEA-Saclay, France
28// Joseph Cugnon, University of Liege, Belgium
29// Jean-Christophe David, CEA-Saclay, France
30// Pekka Kaitaniemi, CEA-Saclay, France, and Helsinki Institute of Physics, Finland
31// Sylvie Leray, CEA-Saclay, France
32// Davide Mancusi, CEA-Saclay, France
33//
34#define INCLXX_IN_GEANT4_MODE 1
35
36#include "globals.hh"
37
45#ifndef G4INCLPARTICLESAMPLER_HH_
46#define G4INCLPARTICLESAMPLER_HH_
47
51
52namespace G4INCL {
53
55
56 public:
62 ParticleSampler(const G4int A, const G4int Z, const G4int S);
63
66
68 NuclearDensity const *getDensity() const { return theDensity; }
69
72
75// assert(t==Proton || t==Neutron);
77 }
78
80 void setDensity(NuclearDensity const * const d);
81
84
86 void setRPCorrelationCoefficient(const ParticleType t, const G4double corrCoeff) {
87// assert(t==Proton || t==Neutron);
88 rpCorrelationCoefficient[t] = corrCoeff;
89 }
90
93
94 private:
95
97
99
105
111
114
117
120
122 const G4int theA;
123
125 const G4int theZ;
126
128 const G4int theS;
129
132
135
138
141
144 };
145
146}
147
148#endif // G4INCLPARTICLESAMPLER_HH_
G4double S(G4double temp)
Abstract interface to the nuclear potential.
Simple interpolation table.
double G4double
Definition: G4Types.hh:83
int G4int
Definition: G4Types.hh:85
const G4int Z[17]
const G4double A[17]
Class for interpolating the of a 1-dimensional function.
void setPotential(NuclearPotential::INuclearPotential const *const p)
Setter for thePotential.
const G4int theA
Mass number.
ParticleSamplerMethod sampleOneNeutron
Sample a list of particles.
ParticleSamplerMethod sampleOneProton
Sample a list of particles.
G4double rpCorrelationCoefficient[UnknownParticle]
Correlation coefficients for the r-p correlation.
void sampleParticlesIntoList(ThreeVector const &position, ParticleList &theList)
NuclearPotential::INuclearPotential const * getPotential() const
Getter for thePotential.
Particle * sampleOneParticleWithFuzzyRPCorrelation(const ParticleType t) const
Sample one particle with a fuzzy rp-correlation.
Particle * sampleOneParticleWithoutRPCorrelation(const ParticleType t) const
Sample one particle not taking into account the rp-correlation.
ParticleSampler(const G4int A, const G4int Z, const G4int S)
Constructor.
void setDensity(NuclearDensity const *const d)
Setter for theDensity.
void setRPCorrelationCoefficient(const ParticleType t, const G4double corrCoeff)
Setter for rpCorrelationCoefficient.
Particle * sampleOneParticleWithRPCorrelation(const ParticleType t) const
Sample one particle taking into account the rp-correlation.
NuclearDensity const * getDensity() const
Getter for theDensity.
G4double getRPCorrelationCoefficient(const ParticleType t) const
Getter for rpCorrelationCoefficient.
NuclearDensity const * theDensity
Pointer to the Cluster's NuclearDensity.
InterpolationTable const * theRCDFTable[UnknownParticle]
Array of pointers to the r-space CDF table.
const G4int theS
Strangeness number.
InterpolationTable const * thePCDFTable[UnknownParticle]
Array of pointers to the p-space CDF table.
ParticleList sampleParticles(ThreeVector const &position)
NuclearPotential::INuclearPotential const * thePotential
Pointer to the Cluster's NuclearPotential.
const G4int theZ
Charge number.
Particle *(ParticleSampler::* ParticleSamplerMethod)(const ParticleType t) const