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Toolkit for the simulation of the passage of particles through matter
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G4AdjointBremsstrahlungModel.hh
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26// $Id$
27//
28/////////////////////////////////////////////////////////////////////////////////
29// Class: G4AdjointBremsstrahlungModel
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// 15 June 2007 creation by L. Desorgher. Adapted from G4eBremsstrahlungModel
40// 20-10-2009 Remove all the screening effect that are not considered in the direct models blow 10 GeV. L.Desorgher
41// 4-11-2009 Implement the use of a simple biased differential cross section (C(Z)/Egamma) allowing a rapid computation of adjoint CS
42// and rapid sampling of adjoint secondaries. By this way cross section matrices are not used anymore, avoiding a rather
43// time consuming computation of adjoint brem cross section matrices for each material at initialisation. This mode is switch on/off
44// by selecting SetUseMatrix(false)/ SetUseMatrix(true) in the constructor. L.Desorgher
45//
46//
47//-------------------------------------------------------------
48// Documentation:
49// Adjoint Model for e- Bremsstrahlung
50//
51
52
53
54#ifndef G4AdjointBremsstrahlungModel_h
55#define G4AdjointBremsstrahlungModel_h 1
56#include "globals.hh"
57#include "G4VEmAdjointModel.hh"
59//#include "G4PenelopeBremsstrahlungModel.hh"
60#include "G4PhysicsTable.hh"
61#include "G4EmModelManager.hh"
62class G4Timer;
64
65{
66public:
67
71 virtual void SampleSecondaries(const G4Track& aTrack,
72 G4bool IsScatProjToProjCase,
73 G4ParticleChange* fParticleChange);
74 void RapidSampleSecondaries(const G4Track& aTrack,
75 G4bool IsScatProjToProjCase,
76 G4ParticleChange* fParticleChange);
78 const G4Material* aMaterial,
79 G4double kinEnergyProj, // kinetic energy of the primary particle before the interaction
80 G4double kinEnergyProd // kinetic energy of the secondary particle
81 );
83 const G4Material* aMaterial,
84 G4double kinEnergyProj, // kinetic energy of the primary particle before the interaction
85 G4double kinEnergyProd // kinetic energy of the secondary particle
86 );
88 const G4Material* aMaterial,
89 G4double kinEnergyProj, // kinetic energy of the primary particle before the interaction
90 G4double kinEnergyProd // kinetic energy of the secondary particle
91 );
93 G4double primEnergy,
94 G4bool IsScatProjToProjCase);
96 G4double primEnergy,
97 G4bool IsScatProjToProjCase);
98
99
100 // private void InitialiseFwdModels();
101
102
103private:
104 G4VEmModel* theDirectStdBremModel;
105 G4EmModelManager* theEmModelManagerForFwdModels;
106 G4bool isDirectModelInitialised ;
107
108 G4double highKinEnergy;
109 G4double lowKinEnergy, lastCZ;
110 std::vector<G4DataVector*> partialSumSigma;
111 std::vector<float> SigmaPerAtom;
112
113};
114
115
116#endif
double G4double
Definition: G4Types.hh:64
bool G4bool
Definition: G4Types.hh:67
virtual void SampleSecondaries(const G4Track &aTrack, G4bool IsScatProjToProjCase, G4ParticleChange *fParticleChange)
virtual G4double GetAdjointCrossSection(const G4MaterialCutsCouple *aCouple, G4double primEnergy, G4bool IsScatProjToProjCase)
G4double DiffCrossSectionPerVolumePrimToSecondApproximated2(const G4Material *aMaterial, G4double kinEnergyProj, G4double kinEnergyProd)
G4double DiffCrossSectionPerVolumePrimToSecondApproximated1(const G4Material *aMaterial, G4double kinEnergyProj, G4double kinEnergyProd)
void RapidSampleSecondaries(const G4Track &aTrack, G4bool IsScatProjToProjCase, G4ParticleChange *fParticleChange)
virtual G4double DiffCrossSectionPerVolumePrimToSecond(const G4Material *aMaterial, G4double kinEnergyProj, G4double kinEnergyProd)
virtual G4double AdjointCrossSection(const G4MaterialCutsCouple *aCouple, G4double primEnergy, G4bool IsScatProjToProjCase)