Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4FluoData.hh
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1//
2// ********************************************************************
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14// * regarding this software system or assume any liability for its *
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18// * This code implementation is the result of the scientific and *
19// * technical work of the GEANT4 collaboration. *
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24// ********************************************************************
25//
26// Author: Elena Guardincerri ([email protected])
27//
28// History:
29// -----------
30// 16 Sept 2001 First committed to cvs
31//
32// -------------------------------------------------------------------
33
34// Class description:
35// Low Energy Electromagnetic Physics
36// Fluorescence data set: shell identifiers, transition probabilities,
37// transition energies
38// Further documentation available from http://www.ge.infn.it/geant4/lowE
39
40// -------------------------------------------------------------------
41
42#ifndef G4FLUODATA_HH
43#define G4FLUODATA_HH 1
44
45#include "globals.hh"
46#include <vector>
47#include <map>
48
50class G4DataVector;
51
53{
54public:
55
56 G4FluoData();
57
59
60 // The method returns the number of shells in wich a
61 // vacancy can be filled by a radiative transition
62 size_t NumberOfVacancies() const;
63
64 // Given the index of the vacancy returns its identity
65 G4int VacancyId(G4int vacancyIndex) const;
66
67 // Given the index of a vacancy returns the number of
68 //shells starting from wich an electrons can fill the vacancy
69 size_t NumberOfTransitions(G4int vacancyIndex) const;
70
71 // Given the indexes of the starting and final shells for the
72 // transition, returns the identity of the starting one
73 G4int StartShellId(G4int initIndex, G4int vacancyIndex) const;
74
75 // Given the indexes of the starting and final shells for the
76 // transition, returns the transition energy
77 G4double StartShellEnergy(G4int initIndex, G4int vacancyIndex) const;
78
79 // Given the indexes of the starting and final shells for the
80 // transition, returns the probability of this transition
81 G4double StartShellProb(G4int initIndex, G4int vacancyIndex) const;
82
83 void LoadData(G4int Z);
84
85 void PrintData();
86
87 //void BuildFluoTransitionTable();
88
89 //std::vector<G4FluoTransition*> GetFluoTransitions(G4int Z);
90 //G4FluoTransition GetFluoTransition(G4int Z, G4int shellId);
91
92private:
93
94 // Hide copy constructor and assignment operator
95 G4FluoData& operator=(const G4FluoData& right);
96 G4FluoData(const G4FluoData&);
97
98 std::map<G4int,G4DataVector*,std::less<G4int> > idMap;
99 std::map<G4int,G4DataVector*,std::less<G4int> > energyMap;
100 std::map<G4int,G4DataVector*,std::less<G4int> > probabilityMap;
101 std::vector<G4int> nInitShells;
102 G4int numberOfVacancies;
103 std::map<G4int,std::vector<G4FluoTransition*>,std::less<G4int> > fluoTransitionTable;
104};
105
106#endif
107
108
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
G4double StartShellEnergy(G4int initIndex, G4int vacancyIndex) const
Definition: G4FluoData.cc:137
size_t NumberOfTransitions(G4int vacancyIndex) const
Definition: G4FluoData.cc:93
G4int VacancyId(G4int vacancyIndex) const
Definition: G4FluoData.cc:75
void PrintData()
Definition: G4FluoData.cc:316
size_t NumberOfVacancies() const
Definition: G4FluoData.cc:70
void LoadData(G4int Z)
Definition: G4FluoData.cc:188
G4int StartShellId(G4int initIndex, G4int vacancyIndex) const
Definition: G4FluoData.cc:110
G4double StartShellProb(G4int initIndex, G4int vacancyIndex) const
Definition: G4FluoData.cc:161