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G4LowEPComptonModel.hh
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1 //
2 // ********************************************************************
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24 // ********************************************************************
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26 // *********************************************************************
27 // | |
28 // | G4LowEPComptonModel-- Geant4 Monash University |
29 // | low energy Compton scattering model. |
30 // | J. M. C. Brown, Monash University, Australia |
31 // | ## Unpolarised photons only ## |
32 // | |
33 // | |
34 // *********************************************************************
35 // | |
36 // | The following is a Geant4 class to simulate the process of |
37 // | bound electron Compton scattering. General code structure is |
38 // | based on G4LowEnergyCompton.cc and G4LivermoreComptonModel.cc. |
39 // | Algorithms for photon energy, and ejected Compton electron |
40 // | direction taken from: |
41 // | |
42 // | J. M. C. Brown, M. R. Dimmock, J. E. Gillam and D. M. Paganin, |
43 // | "A low energy bound atomic electron Compton scattering model |
44 // | for Geant4", NIMB, Vol. 338, 77-88, 2014. |
45 // | |
46 // | The author acknowledges the work of the Geant4 collaboration |
47 // | in developing the following algorithms that have been employed |
48 // | or adapeted for the present software: |
49 // | |
50 // | # sampling of photon scattering angle, |
51 // | # target element selection in composite materials, |
52 // | # target shell selection in element, |
53 // | # and sampling of bound electron momentum from Compton profiles. |
54 // | |
55 // *********************************************************************
56 // | |
57 // | History: |
58 // | -------- |
59 // | |
60 // | Nov. 2011 JMCB - First version |
61 // | Feb. 2012 JMCB - Migration to Geant4 9.5 |
62 // | Sep. 2012 JMCB - Final fixes for Geant4 9.6 |
63 // | Feb. 2013 JMCB - Geant4 9.6 FPE fix for bug 1426 |
64 // | Jan. 2015 JMCB - Migration to MT (Based on Livermore |
65 // | implementation) |
66 // | Feb. 2016 JMCB - Geant4 10.2 FPE fix for bug 1676 |
67 // | |
68 // *********************************************************************
69 
70 #ifndef G4LowEPComptonModel_h
71 #define G4LowEPComptonModel_h 1
72 
73 #include "G4VEmModel.hh"
74 #include "G4LPhysicsFreeVector.hh"
75 
78 class G4ShellData;
79 class G4DopplerProfile;
80 
82 {
83 
84 public:
85 
87  const G4String& nam = "LowEPComptonModel");
88 
89  virtual ~G4LowEPComptonModel();
90 
91  virtual void Initialise(const G4ParticleDefinition*, const G4DataVector&);
92 
93  virtual void InitialiseLocal(const G4ParticleDefinition*,
94  G4VEmModel* masterModel);
95 
96  virtual void InitialiseForElement(const G4ParticleDefinition*, G4int Z);
97 
99  G4double kinEnergy,
100  G4double Z,
101  G4double A=0,
102  G4double cut=0,
104 
105  virtual void SampleSecondaries(std::vector<G4DynamicParticle*>*,
106  const G4MaterialCutsCouple*,
107  const G4DynamicParticle*,
108  G4double tmin,
109  G4double maxEnergy);
110 
111 private:
112 
113  void ReadData(size_t Z, const char* path = 0);
114 
115  G4double ComputeScatteringFunction(G4double x, G4int Z);
116 
117  G4LowEPComptonModel & operator=(const G4LowEPComptonModel &right);
119 
120  G4bool isInitialised;
121  G4int verboseLevel;
122 
123  //G4double lowestEnergy;
124 
125  G4ParticleChangeForGamma* fParticleChange;
126  G4VAtomDeexcitation* fAtomDeexcitation;
127 
128  static G4ShellData* shellData;
129  static G4DopplerProfile* profileData;
130 
131  static G4int maxZ;
132  static G4LPhysicsFreeVector* data[100];
133 
134  static const G4double ScatFuncFitParam[101][9];
135 
136 };
137 
138 //****************************************************************************
139 
140 #endif
virtual void Initialise(const G4ParticleDefinition *, const G4DataVector &)
G4LowEPComptonModel(const G4ParticleDefinition *p=0, const G4String &nam="LowEPComptonModel")
const char * p
Definition: xmltok.h:285
virtual G4double ComputeCrossSectionPerAtom(const G4ParticleDefinition *, G4double kinEnergy, G4double Z, G4double A=0, G4double cut=0, G4double emax=DBL_MAX)
tuple x
Definition: test.py:50
int G4int
Definition: G4Types.hh:78
const XML_Char const XML_Char * data
Definition: expat.h:268
double A(double temperature)
bool G4bool
Definition: G4Types.hh:79
static const G4double emax
virtual void InitialiseLocal(const G4ParticleDefinition *, G4VEmModel *masterModel)
double G4double
Definition: G4Types.hh:76
virtual void SampleSecondaries(std::vector< G4DynamicParticle * > *, const G4MaterialCutsCouple *, const G4DynamicParticle *, G4double tmin, G4double maxEnergy)
virtual void InitialiseForElement(const G4ParticleDefinition *, G4int Z)
#define DBL_MAX
Definition: templates.hh:83