source: trunk/source/processes/electromagnetic/lowenergy/include/G4Penelope08GammaConversionModel.hh @ 1350

Last change on this file since 1350 was 1347, checked in by garnier, 14 years ago

geant4 tag 9.4

File size: 4.5 KB
Line 
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26// $Id: G4Penelope08GammaConversionModel.hh,v 1.1 2010/03/17 14:19:04 pandola Exp $
27// GEANT4 tag $Name: geant4-09-04-ref-00 $
28//
29// Author: Luciano Pandola
30//
31// History:
32// -----------
33// 13 Jan 2010   L. Pandola  First implementation
34//
35// -------------------------------------------------------------------
36//
37// Class description:
38// Low Energy Electromagnetic Physics, Gamma Conversion
39// with Penelope Model, version 2008
40// -------------------------------------------------------------------
41
42#ifndef G4PENELOPE08GAMMACONVERSIONMODEL_HH
43#define G4PENELOPE08GAMMACONVERSIONMODEL_HH 1
44
45#include "globals.hh"
46#include "G4VEmModel.hh"
47#include "G4DataVector.hh"
48#include "G4ParticleChangeForGamma.hh"
49
50class G4ParticleDefinition;
51class G4DynamicParticle;
52class G4MaterialCutsCouple;
53class G4Material;
54class G4PhysicsFreeVector;
55
56class G4Penelope08GammaConversionModel : public G4VEmModel
57{
58
59public:
60 
61  G4Penelope08GammaConversionModel(const G4ParticleDefinition* p=0,
62                         const G4String& processName ="PenConversion");
63 
64  virtual ~G4Penelope08GammaConversionModel();
65
66  virtual void Initialise(const G4ParticleDefinition*, const G4DataVector&);
67
68  virtual G4double ComputeCrossSectionPerAtom(
69                                              const G4ParticleDefinition*,
70                                              G4double kinEnergy,
71                                              G4double Z,
72                                              G4double A=0,
73                                              G4double cut=0,
74                                              G4double emax=DBL_MAX);
75
76  virtual void SampleSecondaries(std::vector<G4DynamicParticle*>*,
77                                 const G4MaterialCutsCouple*,
78                                 const G4DynamicParticle*,
79                                 G4double tmin,
80                                 G4double maxEnergy);
81
82  void SetVerbosityLevel(G4int lev){verboseLevel = lev;};
83  G4int GetVerbosityLevel(){return verboseLevel;};
84
85protected:
86  G4ParticleChangeForGamma* fParticleChange;
87
88private:
89  G4Penelope08GammaConversionModel & operator=(const 
90                                               G4Penelope08GammaConversionModel &right);
91  G4Penelope08GammaConversionModel(const G4Penelope08GammaConversionModel&);
92
93
94  //Intrinsic energy limits of the model: cannot be extended by the parent process
95  G4double fIntrinsicLowEnergyLimit;
96  G4double fIntrinsicHighEnergyLimit;
97
98  //Use a quicker sampling algorithm if E < smallEnergy
99  G4double fSmallEnergy; 
100
101  std::map<const G4int,G4PhysicsFreeVector*> *logAtomicCrossSection;
102  void ReadDataFile(const G4int Z);
103
104  void InitializeScreeningRadii();
105  G4double fAtomicScreeningRadius[99];
106
107  void InitializeScreeningFunctions(const G4Material*);
108  //Effective (scalar) properties attached to materials:
109  // effective charge
110  std::map<const G4Material*,G4double> *fEffectiveCharge;
111  // 2/Rs (Rs = screening radius), BCB array in Penelope
112  std::map<const G4Material*,G4double> *fMaterialInvScreeningRadius;
113  // Parameters of screening functions
114  std::map<const G4Material*,std::pair<G4double,G4double> > *fScreeningFunction;
115
116  std::pair<G4double,G4double> GetScreeningFunctions(G4double); 
117
118
119  G4int verboseLevel;
120  G4bool isInitialised;
121};
122
123#endif
124
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