Geant4 9.6.0
Toolkit for the simulation of the passage of particles through matter
Loading...
Searching...
No Matches
G4CrossSectionHandler Class Reference

#include <G4CrossSectionHandler.hh>

+ Inheritance diagram for G4CrossSectionHandler:

Public Member Functions

 G4CrossSectionHandler ()
 
 ~G4CrossSectionHandler ()
 
- Public Member Functions inherited from G4VCrossSectionHandler
 G4VCrossSectionHandler ()
 
 G4VCrossSectionHandler (G4VDataSetAlgorithm *interpolation, G4double minE=250 *CLHEP::eV, G4double maxE=100 *CLHEP::GeV, G4int nBins=200, G4double unitE=CLHEP::MeV, G4double unitData=CLHEP::barn, G4int minZ=1, G4int maxZ=99)
 
virtual ~G4VCrossSectionHandler ()
 
void Initialise (G4VDataSetAlgorithm *interpolation=0, G4double minE=250 *CLHEP::eV, G4double maxE=100 *CLHEP::GeV, G4int numberOfBins=200, G4double unitE=CLHEP::MeV, G4double unitData=CLHEP::barn, G4int minZ=1, G4int maxZ=99)
 
G4int SelectRandomAtom (const G4MaterialCutsCouple *couple, G4double e) const
 
const G4ElementSelectRandomElement (const G4MaterialCutsCouple *material, G4double e) const
 
G4int SelectRandomShell (G4int Z, G4double e) const
 
G4VEMDataSetBuildMeanFreePathForMaterials (const G4DataVector *energyCuts=0)
 
G4double FindValue (G4int Z, G4double e) const
 
G4double FindValue (G4int Z, G4double e, G4int shellIndex) const
 
G4double ValueForMaterial (const G4Material *material, G4double e) const
 
void LoadData (const G4String &dataFile)
 
void LoadNonLogData (const G4String &dataFile)
 
void LoadShellData (const G4String &dataFile)
 
void PrintData () const
 
void Clear ()
 

Protected Member Functions

virtual std::vector< G4VEMDataSet * > * BuildCrossSectionsForMaterials (const G4DataVector &energyVector, const G4DataVector *energyCuts=0)
 
- Protected Member Functions inherited from G4VCrossSectionHandler
G4int NumberOfComponents (G4int Z) const
 
void ActiveElements ()
 
virtual std::vector< G4VEMDataSet * > * BuildCrossSectionsForMaterials (const G4DataVector &energyVector, const G4DataVector *energyCuts=0)=0
 
virtual G4VDataSetAlgorithmCreateInterpolation ()
 
const G4VDataSetAlgorithmGetInterpolation () const
 

Detailed Description

Definition at line 57 of file G4CrossSectionHandler.hh.

Constructor & Destructor Documentation

◆ G4CrossSectionHandler()

G4CrossSectionHandler::G4CrossSectionHandler ( )

Definition at line 64 of file G4CrossSectionHandler.cc.

65{ }

◆ ~G4CrossSectionHandler()

G4CrossSectionHandler::~G4CrossSectionHandler ( )

Definition at line 67 of file G4CrossSectionHandler.cc.

68{ }

Member Function Documentation

◆ BuildCrossSectionsForMaterials()

std::vector< G4VEMDataSet * > * G4CrossSectionHandler::BuildCrossSectionsForMaterials ( const G4DataVector energyVector,
const G4DataVector energyCuts = 0 
)
protectedvirtual

Implements G4VCrossSectionHandler.

Definition at line 71 of file G4CrossSectionHandler.cc.

73{
74 G4DataVector* energies;
75 G4DataVector* data;
76
77 G4DataVector* log_energies;
78 G4DataVector* log_data;
79
80 std::vector<G4VEMDataSet*>* matCrossSections = new std::vector<G4VEMDataSet*>;
81
82 const G4ProductionCutsTable* theCoupleTable=
84 size_t numOfCouples = theCoupleTable->GetTableSize();
85
86 size_t nOfBins = energyVector.size();
87 const G4VDataSetAlgorithm* interpolationAlgo = CreateInterpolation();
88
89 for (size_t mLocal=0; mLocal<numOfCouples; mLocal++)
90 {
91 const G4MaterialCutsCouple* couple = theCoupleTable->GetMaterialCutsCouple(mLocal);
92 const G4Material* material= couple->GetMaterial();
93 G4int nElements = material->GetNumberOfElements();
94 const G4ElementVector* elementVector = material->GetElementVector();
95 const G4double* nAtomsPerVolume = material->GetAtomicNumDensityVector();
96
97 G4VDataSetAlgorithm* algo = interpolationAlgo->Clone();
98
99 G4VEMDataSet* setForMat = new G4CompositeEMDataSet(algo,1.,1.);
100
101 for (G4int i=0; i<nElements; i++) {
102
103 G4int Z = (G4int) (*elementVector)[i]->GetZ();
104 G4double density = nAtomsPerVolume[i];
105
106 energies = new G4DataVector;
107 data = new G4DataVector;
108
109 log_energies = new G4DataVector;
110 log_data = new G4DataVector;
111
112
113 for (size_t bin=0; bin<nOfBins; bin++)
114 {
115 G4double e = energyVector[bin];
116 energies->push_back(e);
117 if (e==0.) e=1e-300;
118 log_energies->push_back(std::log10(e));
119 G4double cross = density*FindValue(Z,e);
120 data->push_back(cross);
121 if (cross==0.) cross=1e-300;
122 log_data->push_back(std::log10(cross));
123 }
124
125 G4VDataSetAlgorithm* algo1 = interpolationAlgo->Clone();
126
127// G4VEMDataSet* elSet = new G4EMDataSet(i,energies,data,algo1,1.,1.);
128
129 G4VEMDataSet* elSet = new G4EMDataSet(i,energies,data,log_energies,log_data,algo1,1.,1.);
130
131 setForMat->AddComponent(elSet);
132 }
133
134 matCrossSections->push_back(setForMat);
135 }
136 delete interpolationAlgo;
137 return matCrossSections;
138}
std::vector< G4Element * > G4ElementVector
double G4double
Definition: G4Types.hh:64
int G4int
Definition: G4Types.hh:66
const G4Material * GetMaterial() const
const G4ElementVector * GetElementVector() const
Definition: G4Material.hh:189
size_t GetNumberOfElements() const
Definition: G4Material.hh:185
const G4double * GetAtomicNumDensityVector() const
Definition: G4Material.hh:215
const G4MaterialCutsCouple * GetMaterialCutsCouple(G4int i) const
static G4ProductionCutsTable * GetProductionCutsTable()
G4double FindValue(G4int Z, G4double e) const
virtual G4VDataSetAlgorithm * CreateInterpolation()
virtual G4VDataSetAlgorithm * Clone() const =0
virtual void AddComponent(G4VEMDataSet *dataSet)=0

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