Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4AdjointIonIonisationModel.hh
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1//
2// ********************************************************************
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25//
26// $Id$
27//
28/////////////////////////////////////////////////////////////////////////////////
29// Class: G4IonIonisationModel
30// Author: L. Desorgher
31// Organisation: SpaceIT GmbH
32// Contract: ESA contract 21435/08/NL/AT
33// Customer: ESA/ESTEC
34/////////////////////////////////////////////////////////////////////////////////
35//
36// CHANGE HISTORY
37// --------------
38// ChangeHistory:
39// 26th August 2009 creation by L. Desorgher
40//
41//-------------------------------------------------------------
42// Documentation:
43// Adjoint EM model for discrete reverse ion ionisation
44//
45
46#ifndef G4AdjointIonIonisationModel_h
47#define G4AdjointIonIonisationModel_h 1
48
49#include "globals.hh"
50#include "G4DynamicParticle.hh"
53#include "G4Material.hh"
54#include "G4Element.hh"
55#include "G4ElementVector.hh"
56#include "Randomize.hh"
58#include "G4VEmModel.hh"
59#include "G4Electron.hh"
60#include "G4Gamma.hh"
62#include "G4VEmAdjointModel.hh"
63class G4PhysicsTable;
64class G4Region;
67class G4Track;
69
70
72{
73
74public:
75
77
79
80
81 virtual void SampleSecondaries(const G4Track& aTrack,
82 G4bool IsScatProjToProjCase,
83 G4ParticleChange* fParticleChange);
84
85
87 G4double kinEnergyProj, // kinetic energy of the primary particle before the interaction
88 G4double kinEnergyProd, // kinetic energy of the secondary particle
89 G4double Z,
90 G4double A = 0.);
91
92 virtual void CorrectPostStepWeight(G4ParticleChange* fParticleChange,
93 G4double old_weight,
94 G4double adjointPrimKinEnergy,
95 G4double projectileKinEnergy,
96 G4bool IsScatProjToProjCase);
97
98 //Set/Get methods
99 //------------------
100
105
106 inline void SetUseOnlyBragg(G4bool aBool){use_only_bragg =aBool;}
107
108
109 void SetIon(G4ParticleDefinition* adj_ion, G4ParticleDefinition* fwd_ion);
110
111
112private: //Methods
113
114
115 void DefineProjectileProperty();
116
117 //projectile property
118 G4double mass;
119 G4double tlimit;
120 G4double spin;
121 G4double magMoment2;
122 G4double chargeSquare;
123 G4double massRatio;
124
125 G4double ratio, ratio2;
126 G4double one_plus_ratio_2;
127 G4double formfact;
128 G4double twoln10;
129 G4double bg2lim;
130 G4double taulim;
131 G4double corrFactor;
132 G4bool isIon;
133 G4double one_minus_ratio_2;
134
135 G4bool use_only_bragg;
136
137
138 G4VEmModel* theBraggIonDirectEMModel;
139 G4VEmModel* theBetheBlochDirectEMModel;
140
141
142
143
144
145
146
147};
148
149
150#endif
151
double G4double
Definition: G4Types.hh:64
bool G4bool
Definition: G4Types.hh:67
virtual G4double GetSecondAdjEnergyMinForProdToProjCase(G4double PrimAdjEnergy)
virtual G4double GetSecondAdjEnergyMaxForProdToProjCase(G4double PrimAdjEnergy)
virtual G4double GetSecondAdjEnergyMaxForScatProjToProjCase(G4double PrimAdjEnergy)
virtual G4double DiffCrossSectionPerAtomPrimToSecond(G4double kinEnergyProj, G4double kinEnergyProd, G4double Z, G4double A=0.)
virtual void SampleSecondaries(const G4Track &aTrack, G4bool IsScatProjToProjCase, G4ParticleChange *fParticleChange)
virtual G4double GetSecondAdjEnergyMinForScatProjToProjCase(G4double PrimAdjEnergy, G4double Tcut=0)
void SetIon(G4ParticleDefinition *adj_ion, G4ParticleDefinition *fwd_ion)
virtual void CorrectPostStepWeight(G4ParticleChange *fParticleChange, G4double old_weight, G4double adjointPrimKinEnergy, G4double projectileKinEnergy, G4bool IsScatProjToProjCase)