Geant4 10.7.0
Toolkit for the simulation of the passage of particles through matter
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G4QMDReaction.hh
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1//
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25//
26// -------------------------------------------------------------------
27// GEANT4 Class file
28//
29//
30// File name: G4QMDReaction.hh
31//
32// Author: Koi, Tatsumi ([email protected])
33//
34// Creation date: 02 April 2007
35// -----------------------------------------------------------------------------
36//
37// 081107 Add UnUseGEM (then use the default channel of G4Evaporation)
38// UseFrag (chage criterion of a inelastic reaction)
39// 090331 Change member shenXS and genspaXS object to pointer
40//
41
42#ifndef G4QMDReaction_hh
43#define G4QMDReaction_hh
44
45#include "G4QMDSystem.hh"
46#include "G4QMDCollision.hh"
47#include "G4QMDMeanField.hh"
48#include "G4QMDParticipant.hh"
49
51//#include "G4GeneralSpaceNNCrossSection.hh"
52
54
55#include "G4Evaporation.hh"
57
60
62{
63 public:
66
67 std::vector< G4QMDSystem* > GetFinalStates();
68
70 G4Nucleus & targetNucleus);
71
72 G4ExcitationHandler* GetExcitationHandler() {return excitationHandler;};
73
74 void UnUseGEM() {gem = false; setEvaporationCh();};
75 void UseFRAG() {frag = true;};
76
77 void SetTMAX(G4int i) { maxTime = i; };
78 void SetDT(G4double t) { deltaT = t; };
79 void SetEF(G4double x) { envelopF = x; };
80
81 virtual void ModelDescription(std::ostream& outFile) const;
82
83 private:
84 //copy is unexpected
85 void operator =( const G4QMDReaction& ){};
87
88 void setEvaporationCh();
89 void setHighEnergyModel();
90
91 G4QMDMeanField* meanField;
92
93 G4QMDCollision* collision;
94
95 void doCollision();
96 std::vector< G4QMDSystem* > doClusterJudgment();
97
98 G4QMDSystem* system;
99 G4double deltaT;
100 G4int maxTime;
101 G4double envelopF;
102
103 G4Evaporation* evaporation;
104 G4ExcitationHandler* excitationHandler;
105
106 // b pd_proj pd_targ z_p a_p z_t a_t plab elab
107// G4double offSetOfCollision( G4double , G4ParticleDefinition* , G4ParticleDefinition* , G4int , G4int , G4int , G4int , G4double , G4double );
108 // b pd_proj pd_targ plab elab bmax boostToCM
109
110 void calcOffSetOfCollision(G4double, const G4ParticleDefinition*,
113
114 G4double coulomb_collision_gamma_proj;
115 G4double coulomb_collision_rx_proj;
116 G4double coulomb_collision_rz_proj;
117 G4double coulomb_collision_px_proj;
118 G4double coulomb_collision_pz_proj;
119
120 G4double coulomb_collision_gamma_targ;
121 G4double coulomb_collision_rx_targ;
122 G4double coulomb_collision_rz_targ;
123 G4double coulomb_collision_px_targ;
124 G4double coulomb_collision_pz_targ;
125
126//090331
128 // G4GeneralSpaceNNCrossSection* genspaXS;
129
130 G4BGGPionElasticXS* pipElNucXS;
131 G4BGGPionElasticXS* pimElNucXS;
132 G4BGGPionInelasticXS* pipInelNucXS;
133 G4BGGPionInelasticXS* pimInelNucXS;
134
135 G4bool gem;
136 G4bool frag;
137};
138
139#endif
double G4double
Definition: G4Types.hh:83
bool G4bool
Definition: G4Types.hh:86
int G4int
Definition: G4Types.hh:85
void SetDT(G4double t)
std::vector< G4QMDSystem * > GetFinalStates()
G4HadFinalState * ApplyYourself(const G4HadProjectile &aTrack, G4Nucleus &targetNucleus)
void SetEF(G4double x)
virtual void ModelDescription(std::ostream &outFile) const
void SetTMAX(G4int i)
G4ExcitationHandler * GetExcitationHandler()