Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4HadronNucleonXsc.hh
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1//
2// ********************************************************************
3// * License and Disclaimer *
4// * *
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6// * the Geant4 Collaboration. It is provided under the terms and *
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12// * institutes,nor the agencies providing financial support for this *
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14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
16// * for the full disclaimer and the limitation of liability. *
17// * *
18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
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24// ********************************************************************
25//
26// Calculation of the total, elastic and inelastic cross-sections
27// based on parametrisations of (proton, pion, kaon, photon) nucleon
28// cross-sections and the hadron-nucleous cross-section model in
29// the framework of Glauber-Gribov approach
30//
31//
32//
33// 14.03.07 V. Grichine - first implementation
34// 04.11.11 V. Grichine - update for kaon-(p,n) xsc, vector spline
35// 21.02.12 V. Grichine - update for pion-(p,n) xsc, NS fit++, vector spline
36//
37//
38
39#ifndef G4HadronNucleonXsc_h
40#define G4HadronNucleonXsc_h
41
42#include "globals.hh"
43#include "G4Proton.hh"
44#include "G4Nucleus.hh"
46
47
50
52{
53public:
54
56 virtual ~G4HadronNucleonXsc ();
57
58 virtual
60
61 virtual
63
64 virtual
66 {G4cout << "G4HadronNucleonXsc: uses parametrisation"<<G4endl;}
67
68 void CrossSectionDescription(std::ostream&) const;
69
70 // Xsc parametrisations
71
73
75
77
79
80 // kinematics and set/get
81
82 G4double CalculateEcmValue ( const G4double , const G4double , const G4double );
83
84 G4double CalcMandelstamS( const G4double , const G4double , const G4double );
85
86 G4double GetCoulombBarrier(const G4DynamicParticle* aParticle, const G4ParticleDefinition* nucleon );
87
88 G4double GetTotalHadronNucleonXsc() { return fTotalXsc; };
89 G4double GetElasticHadronNucleonXsc() { return fElasticXsc; };
90 G4double GetInelasticHadronNucleonXsc(){ return fInelasticXsc; };
91
93
94 G4double GetKpProtonTotXscVector(G4double logEnergy){ return fKpProtonTotXscVector.Value(logEnergy); };
95 G4double GetKpNeutronTotXscVector(G4double logEnergy){ return fKpNeutronTotXscVector.Value(logEnergy); };
96 G4double GetKmProtonTotXscVector(G4double logEnergy){ return fKmProtonTotXscVector.Value(logEnergy); };
97 G4double GetKmNeutronTotXscVector(G4double logEnergy){ return fKmNeutronTotXscVector.Value(logEnergy); };
98
99private:
100
101 const G4double fUpperLimit;
102 const G4double fLowerLimit;
103
104 G4double fTotalXsc, fElasticXsc, fInelasticXsc;
105 G4double fHadronNucleonXsc;
106
107 // K-nucleon tot xsc (mb) fit data, std::log(Tkin(MeV))
108
109 static const G4double fKpProtonTotXsc[66];
110 static const G4double fKpProtonTotTkin[66];
111
112 static const G4double fKpNeutronTotXsc[75];
113 static const G4double fKpNeutronTotTkin[75];
114
115 static const G4double fKmProtonTotXsc[106];
116 static const G4double fKmProtonTotTkin[106];
117
118 static const G4double fKmNeutronTotXsc[68];
119 static const G4double fKmNeutronTotTkin[68];
120
121 G4LPhysicsFreeVector fKpProtonTotXscVector;
122 G4LPhysicsFreeVector fKpNeutronTotXscVector;
123 G4LPhysicsFreeVector fKmProtonTotXscVector;
124 G4LPhysicsFreeVector fKmNeutronTotXscVector;
125
126 G4ParticleDefinition* theGamma;
127 G4ParticleDefinition* theProton;
128 G4ParticleDefinition* theNeutron;
129 G4ParticleDefinition* theAProton;
130 G4ParticleDefinition* theANeutron;
131 G4ParticleDefinition* thePiPlus;
132 G4ParticleDefinition* thePiMinus;
133 G4ParticleDefinition* thePiZero;
134 G4ParticleDefinition* theKPlus;
135 G4ParticleDefinition* theKMinus;
136 G4ParticleDefinition* theK0S;
137 G4ParticleDefinition* theK0L;
139 G4ParticleDefinition* theAntiL;
140 G4ParticleDefinition* theSPlus;
141 G4ParticleDefinition* theASPlus;
142 G4ParticleDefinition* theSMinus;
143 G4ParticleDefinition* theASMinus;
145 G4ParticleDefinition* theAS0;
146 G4ParticleDefinition* theXiMinus;
147 G4ParticleDefinition* theXi0;
148 G4ParticleDefinition* theAXiMinus;
149 G4ParticleDefinition* theAXi0;
150 G4ParticleDefinition* theOmega;
151 G4ParticleDefinition* theAOmega;
155 G4ParticleDefinition* theHe3;
156
157};
158
159
160#endif
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
bool G4bool
Definition: G4Types.hh:67
#define G4endl
Definition: G4ios.hh:52
G4DLLIMPORT std::ostream G4cout
G4double GetKmNeutronTotXscVector(G4double logEnergy)
virtual G4bool IsApplicable(const G4DynamicParticle *aDP, const G4Element *)
virtual G4bool IsIsoApplicable(const G4DynamicParticle *aDP, G4int Z, G4int A)
G4double CalcMandelstamS(const G4double, const G4double, const G4double)
G4double GetHadronNucleonXscNS(const G4DynamicParticle *, const G4ParticleDefinition *)
void CrossSectionDescription(std::ostream &) const
G4double GetKmProtonTotXscVector(G4double logEnergy)
G4double GetHadronNucleonXscPDG(const G4DynamicParticle *, const G4ParticleDefinition *)
G4double GetInelasticHadronNucleonXsc()
G4double GetKpNeutronTotXscVector(G4double logEnergy)
G4double GetElasticHadronNucleonXsc()
virtual void DumpPhysicsTable(const G4ParticleDefinition &)
G4double GetHadronNucleonXscVU(const G4DynamicParticle *, const G4ParticleDefinition *)
G4double GetKpProtonTotXscVector(G4double logEnergy)
G4double CalculateEcmValue(const G4double, const G4double, const G4double)
G4double GetTotalHadronNucleonXsc()
G4double GetHadronNucleonXscEL(const G4DynamicParticle *, const G4ParticleDefinition *)
G4double GetCoulombBarrier(const G4DynamicParticle *aParticle, const G4ParticleDefinition *nucleon)
G4double Value(G4double theEnergy)