source: trunk/source/processes/electromagnetic/pii/include/G4PixeCrossSectionHandler.hh @ 1353

Last change on this file since 1353 was 1350, checked in by garnier, 14 years ago

update to last version 4.9.4

File size: 5.1 KB
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26//
27// $Id: G4PixeCrossSectionHandler.hh,v 1.2 2010/11/19 17:16:09 pia Exp $
28// GEANT4 tag $Name: geant4-09-04-ref-00 $
29//
30// Author: Maria Grazia Pia (Maria.Grazia.Pia@cern.ch)
31//
32// History:
33// -----------
34// 16 Jun 2008   MGP           Created on the basis of G4CrossSectionHandler
35
36// -------------------------------------------------------------------
37// Class description:
38// Cross section manager for hadron impact ionization
39// Documented in:
40// M.G. Pia et al., PIXE Simulation With Geant4,
41// IEEE Trans. Nucl. Sci., vol. 56, no. 6, pp. 3614-3649, Dec. 2009.
42
43// -------------------------------------------------------------------
44
45#ifndef G4PIXECROSSSECTIONHANDLER_HH
46#define G4PIXECROSSSECTIONHANDLER_HH 1
47
48#include "globals.hh"
49#include "G4DataVector.hh"
50#include <map>
51#include <vector>
52#include "G4MaterialCutsCouple.hh"
53
54class G4IInterpolator;
55class G4IDataSet;
56class G4Material;
57class G4Element;
58
59class G4PixeCrossSectionHandler {
60
61public:
62
63  G4PixeCrossSectionHandler();
64
65  G4PixeCrossSectionHandler(G4IInterpolator* interpolation,
66                            const G4String& modelK="ecpssr",
67                            const G4String& modelL="ecpssr",
68                            const G4String& modelM="ecpssr",
69                            G4double minE = 1*keV, G4double maxE = 0.1*GeV,
70                            G4int nBins = 200,
71                            G4double unitE = MeV, G4double unitData = barn,
72                            G4int minZ = 6, G4int maxZ = 92);
73 
74  virtual ~G4PixeCrossSectionHandler();
75
76  void Initialise(G4IInterpolator* interpolation,
77                  const G4String& modelK="ecpssr",
78                  const G4String& modelL="ecpssr",
79                  const G4String& modelM="ecpssr",
80                  G4double minE = 1*keV, G4double maxE = 0.1*GeV,
81                  G4int nBins = 200,
82                  G4double unitE = MeV, G4double unitData = barn,
83                  G4int minZ = 6, G4int maxZ = 92);
84
85  G4int SelectRandomAtom(const G4Material* material, G4double e) const;
86
87  G4int SelectRandomShell(G4int Z, G4double e) const;
88
89  G4double FindValue(G4int Z, G4double e) const;
90
91  G4double FindValue(G4int Z, G4double e, G4int shellIndex) const;
92
93  G4double ValueForMaterial(const G4Material* material, G4double e) const;
94
95  // void LoadData(const G4String& dataFile);
96
97  void LoadShellData(const G4String& dataFile);
98
99  // Ionisation cross section as in Geant4 Physics Reference Manual
100  G4double MicroscopicCrossSection(const G4ParticleDefinition* particleDef,
101                                   G4double kineticEnergy,
102                                   G4double Z,
103                                   G4double deltaCut) const;
104
105  void PrintData() const;
106
107  void Clear();
108
109private:
110
111 // Hide copy constructor and assignment operator
112  G4PixeCrossSectionHandler(const G4PixeCrossSectionHandler&);
113  G4PixeCrossSectionHandler & operator=(const G4PixeCrossSectionHandler &right);
114
115  G4int NumberOfComponents(G4int Z) const;
116
117  void ActiveElements();
118
119  void BuildForMaterials();
120  // Factory method
121  std::vector<G4IDataSet*>* BuildCrossSectionsForMaterials(const G4DataVector& energyVector);
122
123  // Factory method
124  G4IInterpolator* CreateInterpolation();
125
126  const G4IInterpolator* GetInterpolation() const { return interpolation; }
127 
128  G4IInterpolator* interpolation;
129
130  G4double eMin;
131  G4double eMax;
132  G4int nBins;
133
134  G4double unit1;
135  G4double unit2;
136
137  G4int zMin;
138  G4int zMax;
139
140  G4DataVector activeZ;
141
142  // Map of PixeShellDataSets with the shell cross sections for each element
143  std::map<G4int,G4IDataSet*,std::less<G4int> > dataMap;
144
145  // Vector of composite cross sections for each material in the MaterialTable
146  // The composite cross section is composed of cross sections for each element in material
147  std::vector<G4IDataSet*>* crossSections;
148
149  std::vector<G4String> crossModel;
150
151};
152
153#endif
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