Geant4 11.1.1
Toolkit for the simulation of the passage of particles through matter
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G4PenelopeOscillator.hh
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1//
2// ********************************************************************
3// * License and Disclaimer *
4// * *
5// * The Geant4 software is copyright of the Copyright Holders of *
6// * the Geant4 Collaboration. It is provided under the terms and *
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14// * regarding this software system or assume any liability for its *
15// * use. Please see the license in the file LICENSE and URL above *
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17// * *
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//
27// Author: Luciano Pandola
28//
29// History:
30// -----------
31// 18 Dec 2008 L. Pandola First implementation
32//
33//
34// -------------------------------------------------------------------
35//
36// Class description:
37// Class designed to contain data of atomic oscillators that are used by
38// several Penelope models. Objects of G4PenelopeOscillators are managed
39// by a dedicated G4PenelopeOscillatorManager.
40// -------------------------------------------------------------------
41
42#ifndef G4PENELOPEOSCILLATOR_HH
43#define G4PENELOPEOSCILLATOR_HH 1
44
45#include "globals.hh"
46
48{
49 public:
50 explicit G4PenelopeOscillator();
52
54
55 //I need to overload the following operators: > < == =
60
61 //Setters and getters
62 G4double GetHartreeFactor() {return fHartreeFactor;};
63 void SetHartreeFactor(G4double hf) {fHartreeFactor = hf;};
64 //
65 G4double GetIonisationEnergy() {return fIonisationEnergy;};
66 void SetIonisationEnergy(G4double ie) {fIonisationEnergy = ie;};
67 //
68 G4double GetResonanceEnergy() const {return fResonanceEnergy;};
69 void SetResonanceEnergy(G4double re) {fResonanceEnergy = re;};
70 //
71 G4double GetOscillatorStrength() {return fOscillatorStrength;};
72 void SetOscillatorStrength(G4double ostr) {fOscillatorStrength=ostr;};
73 //
74 G4int GetShellFlag() {return fShellFlag;};
75 void SetShellFlag(G4int theflag) {fShellFlag=theflag;};
76 //
77 G4double GetParentZ() {return fParentZ;};
78 void SetParentZ(G4double parZ) {fParentZ = parZ;};
79 //
80 G4int GetParentShellID() {return fParentShellID;};
81 void SetParentShellID(G4int psID) {fParentShellID = psID;};
82 //
83 G4double GetCutoffRecoilResonantEnergy(){return fCutoffRecoilResonantEnergy;};
84 void SetCutoffRecoilResonantEnergy(G4double ene){fCutoffRecoilResonantEnergy = ene;};
85
86private:
87 G4double fHartreeFactor;
88 G4double fIonisationEnergy;
89 G4double fResonanceEnergy;
90 G4double fOscillatorStrength;
91 G4double fParentZ;
92 G4double fCutoffRecoilResonantEnergy;
93 G4int fParentShellID; //necessary for interface to AtomicDeexcitationManager
94 G4int fShellFlag;
95};
96
98{
99public:
101 const G4PenelopeOscillator& right)
102 {return ((left.GetResonanceEnergy() < right.GetResonanceEnergy()) ? 1 : 0);};
103};
104
105#endif
106
double G4double
Definition: G4Types.hh:83
bool G4bool
Definition: G4Types.hh:86
int G4int
Definition: G4Types.hh:85
G4bool operator<(const G4PenelopeOscillator &) const
G4bool operator>(const G4PenelopeOscillator &) const
void SetIonisationEnergy(G4double ie)
void SetShellFlag(G4int theflag)
G4PenelopeOscillator & operator=(const G4PenelopeOscillator &)
G4double GetResonanceEnergy() const
G4bool operator==(const G4PenelopeOscillator &) const
G4double GetCutoffRecoilResonantEnergy()
void SetParentShellID(G4int psID)
void SetParentZ(G4double parZ)
void SetOscillatorStrength(G4double ostr)
void SetHartreeFactor(G4double hf)
void SetResonanceEnergy(G4double re)
void SetCutoffRecoilResonantEnergy(G4double ene)
G4int operator()(const G4PenelopeOscillator &left, const G4PenelopeOscillator &right)