source: trunk/source/processes/electromagnetic/xrays/include/G4SynchrotronRadiation.hh @ 1007

Last change on this file since 1007 was 1007, checked in by garnier, 15 years ago

update to geant4.9.2

File size: 4.6 KB
Line 
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26//
27// $Id: G4SynchrotronRadiation.hh,v 1.4 2006/06/29 19:55:43 gunter Exp $
28// GEANT4 tag $Name: geant4-09-02 $
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//      23-05-06, H. Burkhardt: Energy spectrum from function rather than table
39//
40//
41// ------------------------------------------------------------
42
43#ifndef G4SynchrotronRadiation_h
44#define G4SynchrotronRadiation_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#include "G4Gamma.hh"
60#include "G4Electron.hh"
61#include "G4Positron.hh"
62
63
64class G4SynchrotronRadiation : public G4VDiscreteProcess
65{
66public:
67
68  G4SynchrotronRadiation(const G4String& pName = "SynRad",
69                         G4ProcessType type = fElectromagnetic);
70
71  virtual ~G4SynchrotronRadiation();
72
73  G4double GetMeanFreePath( const G4Track& track,
74                                     G4double previousStepSize,
75                                     G4ForceCondition* condition );
76
77  G4VParticleChange *PostStepDoIt( const G4Track& track,
78                                      const G4Step& Step    );
79
80  G4double GetPhotonEnergy( const G4Track& trackData,
81                               const G4Step&  stepData      );
82
83  G4double GetRandomEnergySR( G4double, G4double );
84
85  G4double InvSynFracInt(G4double x);
86  G4double Chebyshev(G4double a,G4double b,const G4double c[],G4int m,G4double x);
87  G4bool IsApplicable(const G4ParticleDefinition&);
88  void BuildPhysicsTable(const G4ParticleDefinition& );
89  void PrintInfoDefinition();
90
91private:
92
93  G4SynchrotronRadiation & operator=(const G4SynchrotronRadiation &right);
94  G4SynchrotronRadiation(const G4SynchrotronRadiation&);
95
96  G4ParticleDefinition*       theGamma;
97  const G4ParticleDefinition* theElectron;
98  const G4ParticleDefinition* thePositron;
99
100  G4double fLambdaConst;
101  G4double fEnergyConst;
102
103  G4PropagatorInField* fFieldPropagator;
104
105};
106
107//////////////////////////  INLINE METHODS  /////////////////////////////
108inline G4bool
109G4SynchrotronRadiation::IsApplicable( const G4ParticleDefinition& particle )
110{
111
112  return ( ( &particle == (const G4ParticleDefinition *)theElectron ) ||
113           ( &particle == (const G4ParticleDefinition *)thePositron )    );
114
115  // return ( particle.GetPDGCharge() != 0.0 );
116}
117
118inline G4double G4SynchrotronRadiation::Chebyshev(G4double a,G4double b,const G4double c[],G4int m,G4double x)
119{
120  G4double y;
121  G4double y2=2.0*(y=(2.0*x-a-b)/(b-a)); // Change of variable.
122  G4double d=0,dd=0;
123  for (G4int j=m-1;j>=1;j--) // Clenshaw's recurrence.
124  { G4double sv=d;
125        d=y2*d-dd+c[j];
126        dd=sv;
127  }
128  return y*d-dd+0.5*c[0];
129}
130
131#endif  // end of G4SynchrotronRadiation.hh
132
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