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geant4/source/processes/electromagnetic/lowenergy/include/G4CrossSectionDataSet.hh
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2018-12-07 15:15:39 +01:00

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//
// ********************************************************************
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// * technical work of the GEANT4 collaboration. *
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//
//
//
// Author: Riccardo Capra <capra@ge.infn.it>
//
// History:
// -----------
// 30 Jun 2005 RC Created
// 14 Oct 2007 MGP Removed inheritance from concrete class G4ShellEMDataSet
// 15 Jul 2009 N.A.Karakatsanis New methods added for loading logarithmic data
// to enhance computing performance of interpolation
//
// -------------------------------------------------------------------
// Class description:
// Low Energy Electromagnetic Physics
// Data set for an electromagnetic physics process
// A strategy pattern is used to encapsulate algorithms for data interpolation
// Further documentation available from http://www.ge.infn.it/geant4/lowE
// -------------------------------------------------------------------
#ifndef G4CrossSectionDataSet_HH
#define G4CrossSectionDataSet_HH 1
#include <CLHEP/Units/SystemOfUnits.h>
#include "G4ShellEMDataSet.hh"
class G4CrossSectionDataSet : public G4VEMDataSet
{
public:
G4CrossSectionDataSet(G4VDataSetAlgorithm* algo,
G4double xUnit=CLHEP::MeV,
G4double dataUnit=CLHEP::barn);
virtual ~G4CrossSectionDataSet();
virtual G4double FindValue(G4double e, G4int componentId=0) const;
virtual void PrintData(void) const;
virtual const G4VEMDataSet* GetComponent(G4int componentId) const
{ return components[componentId]; }
virtual void AddComponent(G4VEMDataSet* dataSet)
{ components.push_back(dataSet); }
virtual size_t NumberOfComponents(void) const
{ return components.size(); }
virtual const G4DataVector& GetEnergies(G4int componentId) const
{ return GetComponent(componentId)->GetEnergies(0); }
virtual const G4DataVector& GetData(G4int componentId) const
{ return GetComponent(componentId)->GetData(0); }
virtual const G4DataVector& GetLogEnergies(G4int componentId) const
{ return GetComponent(componentId)->GetLogEnergies(0); }
virtual const G4DataVector& GetLogData(G4int componentId) const
{ return GetComponent(componentId)->GetLogData(0); }
virtual void SetEnergiesData(G4DataVector* x, G4DataVector* values, G4int componentId);
virtual void SetLogEnergiesData(G4DataVector* x,
G4DataVector* values,
G4DataVector* log_x,
G4DataVector* log_values,
G4int componentId);
virtual G4bool LoadData(const G4String & argFileName);
virtual G4bool LoadNonLogData(const G4String & argFileName);
virtual G4bool SaveData(const G4String & argFileName) const;
virtual G4double RandomSelect(G4int /*componentId */) const { return -1.; };
// void CleanUpComponents();
private:
G4String FullFileName(const G4String & argFileName) const;
// Hide copy constructor and assignment operator
G4CrossSectionDataSet();
G4CrossSectionDataSet(const G4CrossSectionDataSet & copy);
G4CrossSectionDataSet& operator=(const G4CrossSectionDataSet & right);
std::vector<G4VEMDataSet*> components; // Owned pointers
G4int z;
G4VDataSetAlgorithm* algorithm; // Owned pointer
G4double unitEnergies;
G4double unitData;
G4double GetUnitEnergies() const { return unitEnergies; }
G4double GetUnitData() const { return unitData; }
const G4VDataSetAlgorithm* GetAlgorithm() const { return algorithm; }
void CleanUpComponents(void);
};
#endif /* G4CrossSectionDataSet_HH */