source: trunk/source/processes/electromagnetic/xrays/include/G4SynchrotronRadiationInMat.hh@ 1201

Last change on this file since 1201 was 1196, checked in by garnier, 16 years ago

update CVS release candidate geant4.9.3.01

File size: 6.0 KB
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[819]1//
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26//
27// $Id: G4SynchrotronRadiationInMat.hh,v 1.2 2006/06/29 19:55:45 gunter Exp $
[1196]28// GEANT4 tag $Name: geant4-09-03-cand-01 $
[819]29//
30// ------------------------------------------------------------
31// GEANT 4 class header file
32// CERN Geneva Switzerland
33//
34//
35// History:
36// 21-5-98 1 version , V. Grichine
37// 28-05-01, V.Ivanchenko minor changes to provide ANSI -wall compilation
38// 19-05-06, V.Ivanchenko rename from G4SynchrotronRadiation
39//
40//
41// ------------------------------------------------------------
42
43#ifndef G4SynchrotronRadiationInMat_h
44#define G4SynchrotronRadiationInMat_h 1
45
46#include "G4ios.hh"
47#include "globals.hh"
48#include "Randomize.hh"
49#include "G4VDiscreteProcess.hh"
50#include "G4TransportationManager.hh"
51#include "G4FieldManager.hh"
52#include "G4Field.hh"
53#include "G4ThreeVector.hh"
54#include "G4PropagatorInField.hh"
55
56#include "G4Track.hh"
57#include "G4Step.hh"
58
59
60#include "G4Gamma.hh"
61#include "G4Electron.hh"
62#include "G4Positron.hh"
63
64
65#include "G4PhysicsTable.hh"
66#include "G4PhysicsLogVector.hh"
67
68
69class G4SynchrotronRadiationInMat : public G4VDiscreteProcess
70{
71public:
72
73 G4SynchrotronRadiationInMat(const G4String& processName =
74 "SynchrotronRadiation",
75 G4ProcessType type = fElectromagnetic);
76
77 virtual ~G4SynchrotronRadiationInMat();
78
79private:
80
81 G4SynchrotronRadiationInMat & operator=(const G4SynchrotronRadiationInMat &right);
82
83 G4SynchrotronRadiationInMat(const G4SynchrotronRadiationInMat&);
84
85public: ///////////////// Post Step functions //////////////////////////
86
87 G4double GetMeanFreePath( const G4Track& track,
88 G4double previousStepSize,
89 G4ForceCondition* condition );
90
91 G4VParticleChange *PostStepDoIt( const G4Track& track,
92 const G4Step& Step );
93
94 G4double GetPhotonEnergy( const G4Track& trackData,
95 const G4Step& stepData );
96
97 G4double GetRandomEnergySR( G4double, G4double );
98
99 G4double GetProbSpectrumSRforInt( G4double );
100 G4double GetIntProbSR( G4double );
101
102 G4double GetProbSpectrumSRforEnergy( G4double );
103 G4double GetEnergyProbSR( G4double );
104
105 G4double GetIntegrandForAngleK( G4double );
106 G4double GetAngleK( G4double );
107 G4double GetAngleNumberAtGammaKsi( G4double );
108
109
110
111 G4bool IsApplicable(const G4ParticleDefinition&);
112
113 static G4double GetLambdaConst(){ return fLambdaConst; };
114 static G4double GetEnergyConst(){ return fEnergyConst; };
115
116 void SetRootNumber(G4int rn){ fRootNumber = rn; };
117 void SetVerboseLevel(G4int v){ fVerboseLevel = v; };
118 void SetKsi(G4double ksi){ fKsi = ksi; };
119 void SetEta(G4double eta){ fEta = eta; };
120 void SetPsiGamma(G4double psg){ fPsiGamma = psg; };
121 void SetOrderAngleK(G4double ord){ fOrderAngleK = ord; }; // should be 1/3 or 2/3
122
123 protected:
124
125 private:
126
127 static const G4double fLambdaConst;
128
129 static const G4double fEnergyConst;
130
131 static const G4double fIntegralProbabilityOfSR[200];
132
133
134 const G4double
135 LowestKineticEnergy; // low energy limit of the cross-section formula
136
137 const G4double
138 HighestKineticEnergy; // high energy limit of the cross-section formula
139
140 G4int TotBin; // number of bins in the tables
141
142 G4double CutInRange;
143
144 const G4ParticleDefinition* theGamma;
145 const G4ParticleDefinition* theElectron;
146 const G4ParticleDefinition* thePositron;
147
148 const G4double* GammaCutInKineticEnergy;
149 const G4double* ElectronCutInKineticEnergy;
150 const G4double* PositronCutInKineticEnergy;
151 const G4double* ParticleCutInKineticEnergy;
152
153
154 G4double GammaCutInKineticEnergyNow;
155 G4double ElectronCutInKineticEnergyNow;
156 G4double PositronCutInKineticEnergyNow;
157 G4double ParticleCutInKineticEnergyNow;
158
159 G4double fAlpha;
160 G4int fRootNumber;
161 G4double fKsi; // omega/omega_c
162 G4double fPsiGamma; // Psi-angle*gamma
163 G4double fEta; //
164 G4double fOrderAngleK; // 1/3 or 2/3
165
166
167 G4int fVerboseLevel;
168 G4PropagatorInField* fFieldPropagator;
169
170};
171
172////////////////////////// INLINE METHODS /////////////////////////////
173
174inline G4bool
175G4SynchrotronRadiationInMat::IsApplicable( const G4ParticleDefinition& particle )
176{
177
178 return ( ( &particle == (const G4ParticleDefinition *)theElectron ) ||
179 ( &particle == (const G4ParticleDefinition *)thePositron ) );
180
181 // return ( particle.GetPDGCharge() != 0.0 );
182}
183
184#endif // end of G4SynchrotronRadiationInMat.hh
185
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