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G4PenelopePhotoElectricModel.hh
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25 //
26 // $Id$
27 //
28 // Author: Luciano Pandola
29 //
30 // History:
31 // -----------
32 // 08 Jan 2010 L. Pandola 1st implementation.
33 // 25 May 2011 L. Pandola Renamed (make v2008 as default Penelope)
34 // 10 Jun 2011 L. Pandola Migrated to the new AtomDeexcitation interface
35 //
36 // -------------------------------------------------------------------
37 //
38 // Class description:
39 // Low Energy Electromagnetic Physics, Photo-electric effect
40 // with Penelope Model, version 2008
41 // -------------------------------------------------------------------
42 
43 #ifndef G4PENELOPEPHOTOELECTRICMODEL_HH
44 #define G4PENELOPEPHOTOELECTRICMODEL_HH 1
45 
46 #include "globals.hh"
47 #include "G4VEmModel.hh"
48 #include "G4DataVector.hh"
51 #include "G4VAtomDeexcitation.hh"
52 
54 class G4DynamicParticle;
56 class G4Material;
57 
59 {
60 
61 public:
62 
64  const G4String& processName ="PenPhotoElec");
65 
67 
68  virtual void Initialise(const G4ParticleDefinition*, const G4DataVector&);
69 
71  const G4ParticleDefinition*,
72  G4double kinEnergy,
73  G4double Z,
74  G4double A=0,
75  G4double cut=0,
76  G4double emax=DBL_MAX);
77 
78  virtual void SampleSecondaries(std::vector<G4DynamicParticle*>*,
79  const G4MaterialCutsCouple*,
80  const G4DynamicParticle*,
81  G4double tmin,
82  G4double maxEnergy);
83 
84  void SetVerbosityLevel(G4int lev){verboseLevel = lev;};
85  G4int GetVerbosityLevel(){return verboseLevel;};
86 
87  //testing purposes
88  size_t GetNumberOfShellXS(G4int);
90 
91 
92 protected:
94 
95 private:
98 
99  G4double SampleElectronDirection(G4double energy);
100 
101  //Intrinsic energy limits of the model: cannot be extended by the parent process
102  G4double fIntrinsicLowEnergyLimit;
103  G4double fIntrinsicHighEnergyLimit;
104 
105  G4int verboseLevel;
106  G4bool isInitialised;
107 
108  G4VAtomDeexcitation* fAtomDeexcitation;
109  const G4AtomicTransitionManager* fTransitionManager;
110 
111  void ReadDataFile(G4int Z);
112 
113  //For each Z, the PhysicsTable contains nShell+1 physics vectors
114  //with log(E) vs. log(XS)
115  //Element [0] of the table is the total XS, element [iS] is the
116  //partial cross section for shell iS-1
117  std::map<G4int,G4PhysicsTable*> *logAtomicShellXS;
118 
119  size_t SelectRandomShell(G4int Z,G4double energy);
120  G4String WriteTargetShell(size_t shellID);
121 
122 
123 };
124 
125 #endif
126