Geant4 10.7.0
Toolkit for the simulation of the passage of particles through matter
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G4TransitionRadiation.hh
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1//
2// ********************************************************************
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5// * The Geant4 software is copyright of the Copyright Holders of *
6// * the Geant4 Collaboration. It is provided under the terms and *
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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 *
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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//
27// G4TransitionRadiation -- header file
28//
29// Class for description of transition radiation generated
30// by charged particle crossed interface between material 1
31// and material 2 (1 -> 2). Transition radiation could be of kind:
32// - optical back
33// - optical forward
34// - X-ray forward (for relativistic case Tkin/mass >= 10^2)
35//
36// GEANT 4 class header file --- Copyright CERN 1995
37// CERB Geneva Switzerland
38//
39// for information related to this code, please, contact
40// CERN, CN Division, ASD Group
41// History:
42// 18.12.97, V. Grichine ([email protected])
43// 02.02.00, V.Grichine, new data fEnergy and fVarAngle for double
44// numerical integration in inherited classes
45// 03.06.03, V.Ivanchenko fix compilation warnings
46// 28.07.05, P.Gumplinger add G4ProcessType to constructor
47
48#ifndef G4TransitionRadiation_h
49#define G4TransitionRadiation_h
50
51
52#include "G4VDiscreteProcess.hh"
53#include "G4Material.hh"
54
56{
57public:
58
59 explicit G4TransitionRadiation( const G4String& processName = "TR",
61
62 virtual ~G4TransitionRadiation() ;
63
64 // Methods
65
66 G4bool IsApplicable(const G4ParticleDefinition& aParticleType) override;
67
69 G4ForceCondition* condition) override;
70
71 virtual G4VParticleChange* PostStepDoIt(const G4Track&,
72 const G4Step&) override;
73
74 virtual
76 G4double varAngle ) const = 0 ;
77
79 G4double energy2,
80 G4double varAngle ) const ;
81
83 G4double varAngle1,
84 G4double varAngle2 ) const ;
85
87 G4double varAngle2 ) const ;
88
90 G4double energy2 ) const ;
91
92
93
94 // Access functions
95
96protected :
97
98 G4int fMatIndex1 ; // index of the 1st material
99 G4int fMatIndex2 ; // index of the 2nd material
100
101 // private :
102
106
107 // Local constants
108 static const G4int fSympsonNumber ; // Accuracy of Sympson integration 10
109 static const G4int fGammaNumber ; // = 15
110 static const G4int fPointNumber ; // = 100
111
112 G4double fMinEnergy ; // min TR energy
113 G4double fMaxEnergy ; // max TR energy
114 G4double fMaxTheta ; // max theta of TR quanta
115
116 G4double fSigma1 ; // plasma energy Sq of matter1
117 G4double fSigma2 ; // plasma energy Sq of matter2
118
119private:
120
121// Operators
122 G4TransitionRadiation(const G4TransitionRadiation& right) = delete;
124 operator=(const G4TransitionRadiation& right) = delete;
125
126};
127
128#endif // G4TransitionRadiation_h
G4double condition(const G4ErrorSymMatrix &m)
G4ForceCondition
G4ProcessType
@ fElectromagnetic
double G4double
Definition: G4Types.hh:83
bool G4bool
Definition: G4Types.hh:86
int G4int
Definition: G4Types.hh:85
Definition: G4Step.hh:62
static const G4int fGammaNumber
G4double EnergyIntegralDistribution(G4double energy1, G4double energy2) const
static const G4int fPointNumber
G4double IntegralOverAngle(G4double energy, G4double varAngle1, G4double varAngle2) const
virtual G4VParticleChange * PostStepDoIt(const G4Track &, const G4Step &) override
virtual G4double SpectralAngleTRdensity(G4double energy, G4double varAngle) const =0
G4bool IsApplicable(const G4ParticleDefinition &aParticleType) override
G4double IntegralOverEnergy(G4double energy1, G4double energy2, G4double varAngle) const
static const G4int fSympsonNumber
G4double AngleIntegralDistribution(G4double varAngle1, G4double varAngle2) const
virtual G4double GetMeanFreePath(const G4Track &, G4double, G4ForceCondition *condition) override