Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
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G4teoCrossSection Class Reference

#include <G4teoCrossSection.hh>

+ Inheritance diagram for G4teoCrossSection:

Public Member Functions

 G4teoCrossSection (const G4String &name)
 
virtual ~G4teoCrossSection ()
 
std::vector< G4doubleGetCrossSection (G4int Z, G4double incidentEnergy, G4double mass, G4double deltaEnergy=0, const G4Material *mat=0)
 
G4double CrossSection (G4int Z, G4AtomicShellEnumerator shell, G4double incidentEnergy, G4double mass, const G4Material *mat)
 
std::vector< G4doubleProbabilities (G4int Z, G4double incidentEnergy, G4double mass, G4double deltaEnergy=0, const G4Material *mat=0)
 
void SetTotalCS (G4double)
 
- Public Member Functions inherited from G4VhShellCrossSection
 G4VhShellCrossSection (const G4String &xname="")
 
virtual ~G4VhShellCrossSection ()
 
G4int SelectRandomShell (G4int Z, G4double incidentEnergy, G4double mass, G4double deltaEnergy, const G4Material *mat)
 
virtual std::vector< G4doubleGetCrossSection (G4int Z, G4double incidentEnergy, G4double mass, G4double deltaEnergy, const G4Material *mat)=0
 
virtual G4double CrossSection (G4int Z, G4AtomicShellEnumerator shell, G4double incidentEnergy, G4double mass, const G4Material *mat)=0
 
virtual std::vector< G4doubleProbabilities (G4int Z, G4double incidentEnergy, G4double mass, G4double deltaEnergy, const G4Material *mat)=0
 
virtual void SetTotalCS (G4double)
 
const G4StringGetName () const
 

Detailed Description

Definition at line 56 of file G4teoCrossSection.hh.

Constructor & Destructor Documentation

◆ G4teoCrossSection()

G4teoCrossSection::G4teoCrossSection ( const G4String name)

Definition at line 50 of file G4teoCrossSection.cc.

51 :G4VhShellCrossSection(nam),totalCS(0.0),ecpssrShellK(0),ecpssrShellLi(0), ecpssrShellMi(0)
52{
53
54 if (nam == "Analytical")
55 {
56 ecpssrShellK = new G4ecpssrBaseKxsModel();
57 ecpssrShellLi = new G4ecpssrBaseLixsModel();
58 }
59 else if (nam == "ECPSSR_FormFactor")
60 {
61 ecpssrShellK = new G4ecpssrFormFactorKxsModel();
62 ecpssrShellLi = new G4ecpssrFormFactorLixsModel();
63 ecpssrShellMi = new G4ecpssrFormFactorMixsModel();
64 }
65 else { G4cout << "ERROR" << G4endl;}
66
67
68}
#define G4endl
Definition: G4ios.hh:52
G4DLLIMPORT std::ostream G4cout

◆ ~G4teoCrossSection()

G4teoCrossSection::~G4teoCrossSection ( )
virtual

Definition at line 70 of file G4teoCrossSection.cc.

71{
72 delete ecpssrShellK;
73 delete ecpssrShellLi;
74 if (ecpssrShellMi) {delete ecpssrShellMi;}
75}

Member Function Documentation

◆ CrossSection()

G4double G4teoCrossSection::CrossSection ( G4int  Z,
G4AtomicShellEnumerator  shell,
G4double  incidentEnergy,
G4double  mass,
const G4Material mat 
)
virtual

Implements G4VhShellCrossSection.

Definition at line 105 of file G4teoCrossSection.cc.

109{
110 G4double res = 0.0;
111 if(shell > 3 && !ecpssrShellMi) {
112 return res;
113 }
114
115 else if(shell > 8) {
116 return res;
117 }
118
119 else if(fKShell == shell)
120 {
121 res = ecpssrShellK->CalculateCrossSection(Z, mass, incidentEnergy);
122 }
123
124 else if(fL1Shell == shell)
125 {
126 res = ecpssrShellLi->CalculateL1CrossSection(Z, mass, incidentEnergy);
127 }
128
129 else if(fL2Shell == shell)
130 {
131 res = ecpssrShellLi->CalculateL2CrossSection(Z, mass, incidentEnergy);
132 }
133
134 else if(fL3Shell == shell)
135 {
136 res = ecpssrShellLi->CalculateL3CrossSection(Z, mass, incidentEnergy);
137 }
138
139 else if(fM1Shell == shell)
140 {
141 res = ecpssrShellLi->CalculateL3CrossSection(Z, mass, incidentEnergy);
142 }
143
144 else if(fM2Shell == shell)
145 {
146 res = ecpssrShellLi->CalculateL3CrossSection(Z, mass, incidentEnergy);
147 }
148
149 else if(fM3Shell == shell)
150 {
151 res = ecpssrShellLi->CalculateL3CrossSection(Z, mass, incidentEnergy);
152 }
153
154 else if(fM4Shell == shell)
155 {
156 res = ecpssrShellLi->CalculateL3CrossSection(Z, mass, incidentEnergy);
157 }
158
159 else if(fM5Shell == shell)
160 {
161 res = ecpssrShellLi->CalculateL3CrossSection(Z, mass, incidentEnergy);
162 }
163 return res;
164}
double G4double
Definition: G4Types.hh:64
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

◆ GetCrossSection()

std::vector< G4double > G4teoCrossSection::GetCrossSection ( G4int  Z,
G4double  incidentEnergy,
G4double  mass,
G4double  deltaEnergy = 0,
const G4Material mat = 0 
)
virtual

Implements G4VhShellCrossSection.

Definition at line 77 of file G4teoCrossSection.cc.

82{
83 std::vector<G4double> crossSections;
84
85 crossSections.push_back( ecpssrShellK->CalculateCrossSection(Z, mass, incidentEnergy) );
86
87 crossSections.push_back( ecpssrShellLi->CalculateL1CrossSection(Z, mass, incidentEnergy) );
88 crossSections.push_back( ecpssrShellLi->CalculateL2CrossSection(Z, mass, incidentEnergy) );
89 crossSections.push_back( ecpssrShellLi->CalculateL3CrossSection(Z, mass, incidentEnergy) );
90
91 if (ecpssrShellMi) {
92
93 crossSections.push_back( ecpssrShellMi->CalculateM1CrossSection(Z, mass, incidentEnergy) );
94 crossSections.push_back( ecpssrShellMi->CalculateM2CrossSection(Z, mass, incidentEnergy) );
95 crossSections.push_back( ecpssrShellMi->CalculateM3CrossSection(Z, mass, incidentEnergy) );
96 crossSections.push_back( ecpssrShellMi->CalculateM4CrossSection(Z, mass, incidentEnergy) );
97 crossSections.push_back( ecpssrShellMi->CalculateM5CrossSection(Z, mass, incidentEnergy) );
98
99 }
100
101
102 return crossSections;
103}
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

Referenced by Probabilities().

◆ Probabilities()

std::vector< G4double > G4teoCrossSection::Probabilities ( G4int  Z,
G4double  incidentEnergy,
G4double  mass,
G4double  deltaEnergy = 0,
const G4Material mat = 0 
)
virtual

Implements G4VhShellCrossSection.

Definition at line 166 of file G4teoCrossSection.cc.

171{
172 std::vector<G4double> crossSections =
173 GetCrossSection(Z, incidentEnergy, mass, deltaEnergy);
174
175 for (size_t i=0; i<crossSections.size(); i++ ) {
176
177 if (totalCS) {
178 crossSections[i] = crossSections[i]/totalCS;
179 }
180
181 }
182 return crossSections;
183}
std::vector< G4double > GetCrossSection(G4int Z, G4double incidentEnergy, G4double mass, G4double deltaEnergy=0, const G4Material *mat=0)

◆ SetTotalCS()

void G4teoCrossSection::SetTotalCS ( G4double  val)
virtual

Reimplemented from G4VhShellCrossSection.

Definition at line 185 of file G4teoCrossSection.cc.

185 {
186
187 totalCS = val;
188 // G4cout << "totalXS set to: " << val / barn << " barns" << G4endl;
189}

The documentation for this class was generated from the following files: