source: trunk/source/processes/hadronic/models/rpg/include/G4RPGInelastic.hh @ 962

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26// $Id: G4RPGInelastic.hh,v 1.3 2008/02/22 22:17:25 dennis Exp $
27// GEANT4 tag $Name: geant4-09-02-ref-02 $
28//
29// Author: D. H. Wright
30// Date:   26 May 2007
31//
32 
33#ifndef G4RPGInelastic_h
34#define G4RPGInelastic_h 1
35
36// Class Description:
37//
38// Base class for re-parameterized Gheisha-style models.
39
40#include "globals.hh"
41#include <vector>
42#include "G4FastVector.hh"
43#include "G4HadronicInteraction.hh"
44#include "G4ReactionProduct.hh"
45#include "Randomize.hh"
46#include "G4RPGFragmentation.hh"
47#include "G4RPGTwoCluster.hh"
48#include "G4RPGTwoBody.hh"
49#include "G4RPGStrangeProduction.hh"
50#include "G4RPGPionSuppression.hh"
51
52
53class G4RPGInelastic : public G4HadronicInteraction
54 {
55 public:  // with description
56   
57   G4RPGInelastic(const G4String& modelName = "RPGInelastic") 
58    : G4HadronicInteraction(modelName)
59   { cache = 0.0;}
60   
61   virtual ~G4RPGInelastic()
62   { }
63   
64 protected:  // with description
65   
66   G4double Pmltpc(G4int np, G4int nm, G4int nz, G4int n,
67                   G4double b, G4double c);
68
69   G4int Factorial(G4int n);
70   
71   G4bool MarkLeadingStrangeParticle(const G4ReactionProduct& currentParticle,
72                                     const G4ReactionProduct& targetParticle,
73                                     G4ReactionProduct& leadParticle);
74   
75   void SetUpPions(const G4int np, const G4int nm, const G4int nz,
76                   G4FastVector<G4ReactionProduct,256> &vec,
77                   G4int &vecLen);
78   
79   //   void Rotate(G4FastVector<G4ReactionProduct,256> &vec, G4int &vecLen);
80
81   void GetNormalizationConstant(const G4double availableEnergy,
82                                 G4double &n,
83                                 G4double &anpn);
84   
85   void CalculateMomenta(G4FastVector<G4ReactionProduct,256> &vec,
86                         G4int &vecLen,
87                         const G4HadProjectile *originalIncident,
88                         const G4DynamicParticle *originalTarget,
89                         G4ReactionProduct &modifiedOriginal,
90                         G4Nucleus &targetNucleus,
91                         G4ReactionProduct &currentParticle,
92                         G4ReactionProduct &targetParticle,
93                         G4bool &incidentHasChanged,
94                         G4bool &targetHasChanged,
95                         G4bool quasiElastic);
96   
97   void SetUpChange(G4FastVector<G4ReactionProduct,256> &vec,
98                    G4int &vecLen,
99                    G4ReactionProduct &currentParticle,
100                    G4ReactionProduct &targetParticle,
101                    G4bool &incidentHasChanged);
102
103   G4RPGFragmentation fragmentation;
104
105   G4RPGTwoCluster twoCluster;
106
107   G4RPGPionSuppression pionSuppression;
108
109   G4RPGStrangeProduction strangeProduction;
110
111   G4RPGTwoBody twoBody;
112
113   std::pair<G4int, G4double> interpolateEnergy(G4double ke) const;
114
115   G4int sampleFlat(std::vector<G4double> sigma) const;
116
117   void CheckQnums(G4FastVector<G4ReactionProduct,256> &vec,
118                   G4int &vecLen,
119                   G4ReactionProduct &currentParticle,
120                   G4ReactionProduct &targetParticle,
121                   G4double Q, G4double B, G4double S);
122
123   enum {pi0, pip, pim, kp, km, k0, k0b, pro, neu, 
124         lam, sp, s0, sm, xi0, xim, om, ap, an};
125
126   static G4ParticleDefinition* particleDef[18];
127
128 private:
129   
130   G4double cache;
131   G4ThreeVector what;
132
133   static const G4double energyScale[30];
134
135 };
136 
137#endif
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