Geant4 10.7.0
Toolkit for the simulation of the passage of particles through matter
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G4teoCrossSection.cc
Go to the documentation of this file.
1//
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18// * This code implementation is the result of the scientific and *
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25//
26//
27//
28//
29// History:
30// -----------
31// 21 Apr 2009 ALF 1st implementation
32// 29 Apr 2009 ALF Updated Desing for Integration
33// 15 Mar 2011 ALF introduced the usage of G4AtomicShellEnumerator
34// 20 Oct 2011 ALF updated to take into account ECPSSR Form Factor
35// 09 Mar 2012 LP update methods
36// 09 Mar 2012 ALF update for M-shells Simulation
37//
38
39#include "globals.hh"
40#include "G4teoCrossSection.hh"
41#include "G4Proton.hh"
44
48
50 :G4VhShellCrossSection(nam),totalCS(0.0)
51{
52 ecpssrShellMi = nullptr;
53 if (nam == "ECPSSR_Analytical")
54 {
55 ecpssrShellK = new G4ecpssrBaseKxsModel();
56 ecpssrShellLi = new G4ecpssrBaseLixsModel();
57 }
58 else if (nam == "ECPSSR_FormFactor")
59 {
60 ecpssrShellK = new G4ecpssrFormFactorKxsModel();
61 ecpssrShellLi = new G4ecpssrFormFactorLixsModel();
62 ecpssrShellMi = new G4ecpssrFormFactorMixsModel();
63 }
64 else
65 {
66 G4cout << "G4teoCrossSection::G4teoCrossSection: ERROR "
67 << " in cross section name ECPSSR_Analytical is used"
68 << G4endl;
69 ecpssrShellK = new G4ecpssrBaseKxsModel();
70 ecpssrShellLi = new G4ecpssrBaseLixsModel();
71 }
72}
73
75{
76 delete ecpssrShellK;
77 delete ecpssrShellLi;
78 delete ecpssrShellMi;
79}
80
82 G4double incidentEnergy,
83 G4double mass,
85 const G4Material*)
86{
87 std::vector<G4double> crossSections;
88
89 crossSections.push_back( ecpssrShellK->CalculateCrossSection(Z, mass, incidentEnergy) );
90
91 crossSections.push_back( ecpssrShellLi->CalculateL1CrossSection(Z, mass, incidentEnergy) );
92 crossSections.push_back( ecpssrShellLi->CalculateL2CrossSection(Z, mass, incidentEnergy) );
93 crossSections.push_back( ecpssrShellLi->CalculateL3CrossSection(Z, mass, incidentEnergy) );
94
95 if (ecpssrShellMi) {
96
97 crossSections.push_back( ecpssrShellMi->CalculateM1CrossSection(Z, mass, incidentEnergy) );
98 crossSections.push_back( ecpssrShellMi->CalculateM2CrossSection(Z, mass, incidentEnergy) );
99 crossSections.push_back( ecpssrShellMi->CalculateM3CrossSection(Z, mass, incidentEnergy) );
100 crossSections.push_back( ecpssrShellMi->CalculateM4CrossSection(Z, mass, incidentEnergy) );
101 crossSections.push_back( ecpssrShellMi->CalculateM5CrossSection(Z, mass, incidentEnergy) );
102
103 }
104
105
106 return crossSections;
107}
108
110 G4double incidentEnergy,
111 G4double mass,
112 const G4Material*)
113{
114 G4double res = 0.0;
115 if(shell > 3 && !ecpssrShellMi) {
116 return res;
117 }
118
119 else if(shell > 8) {
120 return res;
121 }
122
123 else if(fKShell == shell)
124 {
125 res = ecpssrShellK->CalculateCrossSection(Z, mass, incidentEnergy);
126 }
127
128 else if(fL1Shell == shell)
129 {
130 res = ecpssrShellLi->CalculateL1CrossSection(Z, mass, incidentEnergy);
131 }
132
133 else if(fL2Shell == shell)
134 {
135 res = ecpssrShellLi->CalculateL2CrossSection(Z, mass, incidentEnergy);
136 }
137
138 else if(fL3Shell == shell)
139 {
140 res = ecpssrShellLi->CalculateL3CrossSection(Z, mass, incidentEnergy);
141 }
142
143 else if(fM1Shell == shell)
144 {
145 res = ecpssrShellMi->CalculateM1CrossSection(Z, mass, incidentEnergy);
146 }
147
148 else if(fM2Shell == shell)
149 {
150 res = ecpssrShellMi->CalculateM2CrossSection(Z, mass, incidentEnergy);
151 }
152
153 else if(fM3Shell == shell)
154 {
155 res = ecpssrShellMi->CalculateM3CrossSection(Z, mass, incidentEnergy);
156 }
157
158 else if(fM4Shell == shell)
159 {
160 res = ecpssrShellMi->CalculateM4CrossSection(Z, mass, incidentEnergy);
161 }
162
163 else if(fM5Shell == shell)
164 {
165 res = ecpssrShellMi->CalculateM5CrossSection(Z, mass, incidentEnergy);
166 }
167 return res;
168}
169
171 G4double incidentEnergy,
172 G4double mass,
173 G4double deltaEnergy,
174 const G4Material*)
175{
176 std::vector<G4double> crossSections =
177 GetCrossSection(Z, incidentEnergy, mass, deltaEnergy);
178
179 for (size_t i=0; i<crossSections.size(); i++ ) {
180
181 if (totalCS) {
182 crossSections[i] = crossSections[i]/totalCS;
183 }
184
185 }
186 return crossSections;
187}
188
190
191 totalCS = val;
192 // G4cout << "totalXS set to: " << val / barn << " barns" << G4endl;
193}
194
195
196
G4AtomicShellEnumerator
double G4double
Definition: G4Types.hh:83
int G4int
Definition: G4Types.hh:85
#define G4endl
Definition: G4ios.hh:57
G4GLOB_DLL std::ostream G4cout
virtual G4double CalculateCrossSection(G4int zTarget, G4double massIncident, G4double energyIncident)=0
virtual G4double CalculateL2CrossSection(G4int zTarget, G4double massIncident, G4double energyIncident)=0
virtual G4double CalculateL3CrossSection(G4int zTarget, G4double massIncident, G4double energyIncident)=0
virtual G4double CalculateL1CrossSection(G4int zTarget, G4double massIncident, G4double energyIncident)=0
virtual G4double CalculateM5CrossSection(G4int zTarget, G4double massIncident, G4double energyIncident)=0
virtual G4double CalculateM1CrossSection(G4int zTarget, G4double massIncident, G4double energyIncident)=0
virtual G4double CalculateM2CrossSection(G4int zTarget, G4double massIncident, G4double energyIncident)=0
virtual G4double CalculateM4CrossSection(G4int zTarget, G4double massIncident, G4double energyIncident)=0
virtual G4double CalculateM3CrossSection(G4int zTarget, G4double massIncident, G4double energyIncident)=0
G4double CrossSection(G4int Z, G4AtomicShellEnumerator shell, G4double incidentEnergy, G4double mass, const G4Material *mat)
std::vector< G4double > GetCrossSection(G4int Z, G4double incidentEnergy, G4double mass, G4double deltaEnergy=0, const G4Material *mat=0)
std::vector< G4double > Probabilities(G4int Z, G4double incidentEnergy, G4double mass, G4double deltaEnergy=0, const G4Material *mat=0)
void SetTotalCS(G4double)
virtual ~G4teoCrossSection()
G4teoCrossSection(const G4String &name)