Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4INCLParticleSampler.hh
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25//
26// INCL++ intra-nuclear cascade model
27// Pekka Kaitaniemi, CEA and Helsinki Institute of Physics
28// Davide Mancusi, CEA
29// Alain Boudard, CEA
30// Sylvie Leray, CEA
31// Joseph Cugnon, University of Liege
32//
33// INCL++ revision: v5.1.8
34//
35#define INCLXX_IN_GEANT4_MODE 1
36
37#include "globals.hh"
38
39/** \file G4INCLParticleSampler.hh
40 * \brief Class for sampling particles in a nucleus
41 *
42 * \date 18 July 2012
43 * \author Davide Mancusi
44 */
45
46#ifndef G4INCLPARTICLESAMPLER_HH_
47#define G4INCLPARTICLESAMPLER_HH_
48
51
52namespace G4INCL {
53
55
56 public:
57 /** \brief Constructor.
58 *
59 * \param A the mass number
60 * \param Z the charge number
61 * \param rCDFTable the interpolation table for the inverse CDF in r-space
62 * \param pCDFTable the interpolation table for the inverse CDF in p-space
63 */
64 ParticleSampler(const G4int A, const G4int Z, InverseInterpolationTable const * const rCDFTable, InverseInterpolationTable const * const pCDFTable);
65
66 /// \brief Destructor
68
69 /// \brief Getter for theDensity
70 NuclearDensity const *getDensity() const { return theDensity; }
71
72 /// \brief Getter for thePotential
73 NuclearPotential::INuclearPotential const *getPotential() const { return thePotential; }
74
75 /// \brief Setter for theDensity
76 void setDensity(NuclearDensity const * const d);
77
78 /// \brief Setter for thePotential
80
82
83 private:
84
85 void updateSampleOneParticleMethod();
86
87 typedef Particle *(ParticleSampler::*ParticleSamplerMethod)(const ParticleType t) const;
88 /** \brief Sample a list of particles.
89 *
90 * This method is a pointer to the method that does the real work.
91 */
92 ParticleSamplerMethod sampleOneParticle;
93
94 /// \brief Sample one particle taking into account the rp-correlation
95 Particle *sampleOneParticleWithRPCorrelation(const ParticleType t) const;
96
97 /// \brief Sample one particle not taking into account the rp-correlation
98 Particle *sampleOneParticleWithoutRPCorrelation(const ParticleType t) const;
99
100 /// \brief Mass number
101 const G4int theA;
102
103 /// \brief Charge number
104 const G4int theZ;
105
106 /// \brief Pointer to the r-space CDF table
107 InverseInterpolationTable const *theRCDFTable;
108
109 /// \brief Pointer to the p-space CDF table
110 InverseInterpolationTable const *thePCDFTable;
111
112 /// \brief Pointer to the Cluster's NuclearDensity
113 NuclearDensity const *theDensity;
114
115 /// \brief Pointer to the Cluster's NuclearPotential
116 NuclearPotential::INuclearPotential const *thePotential;
117 };
118
119}
120
121#endif // G4INCLPARTICLESAMPLER_HH_
Abstract interface to the nuclear potential.
int G4int
Definition: G4Types.hh:66
Class for interpolating the inverse of a 1-dimensional function.
void setPotential(NuclearPotential::INuclearPotential const *const p)
Setter for thePotential.
NuclearPotential::INuclearPotential const * getPotential() const
Getter for thePotential.
void setDensity(NuclearDensity const *const d)
Setter for theDensity.
NuclearDensity const * getDensity() const
Getter for theDensity.
ParticleList sampleParticles(ThreeVector const &position) const
std::list< G4INCL::Particle * > ParticleList