Import Geant4 10.4.0.beta source tree
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//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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#ifndef G4VDNAPTBMODEL_HH
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#define G4VDNAPTBMODEL_HH
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#include "G4VEmModel.hh"
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#include "G4DNACrossSectionDataSet.hh"
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#include "G4DNAMolecularMaterial.hh"
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#include "G4LogLogInterpolation.hh"
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#include "G4ParticleTable.hh"
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class G4VDNAPTBModel : public G4VEmModel
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{
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public:
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G4VDNAPTBModel(const G4String& nam, const G4String& applyToMaterial);
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virtual ~G4VDNAPTBModel();
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// ***********************
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// Initialisation
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// ***********************
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virtual void Initialise(const G4ParticleDefinition* particle,
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const G4DataVector& cuts) =0;
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G4bool IsMaterialDefine(const G4String& materialName);
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G4bool IsParticleExistingInModel(const G4String& particleName);
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G4bool IsMaterialExistingInModelForParticle(const G4String& particleName, const G4String& materialName);
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void SetHighELimit(const G4String& material, const G4String& particle, G4double lim) {fHighEnergyLimits[particle][material]=lim;}
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void SetLowELimit(const G4String& material, const G4String& particle, G4double lim) {fLowEnergyLimits[particle][material]=lim;}
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G4double GetHighELimit(const G4String& material, const G4String& particle) {return fHighEnergyLimits[particle][material];}
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G4double GetLowELimit(const G4String& material, const G4String& particle) {return fLowEnergyLimits[particle][material];}
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// ***********************
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// Runtime
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// ***********************
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virtual G4double CrossSectionPerVolume(const G4Material* material,
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const G4ParticleDefinition* p,
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G4double ekin,
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G4double emin,
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G4double emax) = 0;
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virtual void SampleSecondaries(std::vector<G4DynamicParticle*>*,
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const G4MaterialCutsCouple*,
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const G4DynamicParticle*,
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G4double tmin = 0,
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G4double tmax = DBL_MAX) = 0;
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G4double GetHighELimit(const G4Material* material) {return fHighEnergyLimitsRuntime.at(material->GetIndex() );}
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G4double GetLowELimit(const G4Material* material) {return fLowEnergyLimitsRuntime.at(material->GetIndex() );}
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void SetHighELimit(const G4Material* material, G4double lim) {fHighEnergyLimitsRuntime[material->GetIndex()]=lim;}
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void SetLowELimit(const G4Material* material, G4double lim) {fLowEnergyLimitsRuntime[material->GetIndex()]=lim;}
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protected:
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// ***********************
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// Initialisation variables
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// ***********************
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typedef std::map<G4String, std::map<G4String,G4DNACrossSectionDataSet*, std::less<G4String> > > TableMapData;
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const G4String fStringOfMaterials;
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TableMapData fTableData;
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struct MaterialData
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{
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MaterialData(const G4String& mat, const G4String& particule, const G4String& CSFile,
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const G4String& diffCSFile, G4double scaleFactor) :
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fMaterial(mat),
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fParticle(particule),
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fCSFile(CSFile),
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fDiffCSFile(diffCSFile),
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fScaleFactor(scaleFactor)
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{
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}
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G4String fMaterial; // materials that can be activated (and will be by default) within the model
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G4String fParticle; // particles that can be activated within the model
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G4String fCSFile; // cross section data files
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G4String fDiffCSFile; // differential corss section data files
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G4double fScaleFactor; // model scale factors (they could change with material)
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};
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std::vector<MaterialData> fModelMaterialData;
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// Initisation energy limits
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std::map<G4String, std::map<G4String, G4double> > fLowEnergyLimits; // List the low energy limits
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std::map<G4String, std::map<G4String, G4double> > fHighEnergyLimits; // List the high energy limits
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// ***********************
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// Runtime variables
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// ***********************
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// This vector has the same index as G4MaterialTable. If a material is within G4MaterialTable but not declared in the current model, then
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// this vector registered a nullptr.
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std::map<G4int, G4DNACrossSectionDataSet*> fTableDataRuntime;
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// We do not need the particule id since every model instance is associated to one particle
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std::map<G4int, G4double> fLowEnergyLimitsRuntime;
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std::map<G4int, G4double> fHighEnergyLimitsRuntime;
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// ***********************
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// Methods
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// ***********************
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TableMapData* GetTableData(){return &fTableData;}
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G4DNACrossSectionDataSet* GetSigmaData(const G4Material* material) {return fTableDataRuntime.at(material->GetIndex() );}
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std::vector<G4String> BuildApplyToMatVect(const G4String& materials);
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void ReadAndSaveCSFile(const G4String& materialName, const G4String& particleName, const G4String& file, G4double scaleFactor);
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G4int RandomSelectShell(G4double k, const G4Material* material);
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void AddCrossSectionData(const G4String& materialName, const G4String& particleName, const G4String& fileCS, const G4String& fileDiffCS, G4double scaleFactor);
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void AddCrossSectionData(const G4String& materialName, const G4String& particleName, const G4String& fileCS, G4double scaleFactor);
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void LoadCrossSectionData(const G4String& particleName);
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virtual void ReadDiffCSFile(const G4String& materialName,
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const G4String& particleName,
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const G4String& path,
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const G4double scaleFactor);
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void EnableForMaterialAndParticle(const G4String& materialName, const G4String& particleName);
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};
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#endif // G4VDNAPTBMODEL_HH
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