// This code implementation is the intellectual property of // the RD44 GEANT4 collaboration. // // By copying, distributing or modifying the Program (or any work // based on the Program) you indicate your acceptance of this statement, // and all its terms. // // $Id: G4IeBremsstrahlung.hh,v 2.4 1998/10/29 13:56:48 urban Exp $ // GEANT4 tag $Name: geant4-00 $ // // $Id: // ------------------------------------------------------------ // GEANT 4 class header file // CERN Geneva Switzerland // // For information related to this code contact: // CERN, IT Division, ASD group // History: first implementation, based on object model of // 2nd December 1995, G.Cosmo // ------------ G4IeBremsstrahlung physics process ------ // by Michel Maire, 24 July 1996 // ************************************************************ // 1-10-96 : new type G4OrderedTable; ComputePartialSumSigma() // 20/03/97: new energy loss+ionisation+brems scheme, L.Urban // ------------------------------------------------------------ // ************************************************************ // It is the first implementation of the BREMSSTRAHLUNG // PROCESS. ( photons + continuous energy loss) // using an INTEGRAL APPROACH instead of the differential // one used in the standard implementation . // ************************************************************ // by Laszlo Urban, 23 June 1998 // ------------------------------------------------------------ // 28/10/98: small changes, cleanup L.Urban #ifndef G4IeBremsstrahlung_h #define G4IeBremsstrahlung_h 1 #include "G4ios.hh" #include "globals.hh" #include "Randomize.hh" #include "G4IeEnergyLoss.hh" #include "G4EnergyLossTables.hh" #include "G4Track.hh" #include "G4Step.hh" #include "G4Gamma.hh" #include "G4Electron.hh" #include "G4Positron.hh" #include "G4OrderedTable.hh" #include "G4PhysicsTable.hh" #include "G4PhysicsLogVector.hh" class G4IeBremsstrahlung : public G4IeEnergyLoss { public: G4IeBremsstrahlung(const G4String& processName = "IeBrems"); ~G4IeBremsstrahlung(); G4bool IsApplicable(const G4ParticleDefinition&); void SetPhysicsTableBining(G4double lowE, G4double highE, G4int nBins); void PrintInfoDefinition(); void BuildPhysicsTable(const G4ParticleDefinition& ParticleType); void BuildLossTable(const G4ParticleDefinition& ParticleType); void BuildLambdaTable(const G4ParticleDefinition& ParticleType); G4double GetMeanFreePath(const G4Track& track, G4double previousStepSize, G4ForceCondition* condition ); G4VParticleChange *PostStepDoIt(const G4Track& track, const G4Step& step); G4double PostStepGetPhysicalInteractionLength( const G4Track& track, G4double previousStepSize, G4ForceCondition* condition); protected: inline G4double ComputeMeanFreePath( const G4ParticleDefinition* ParticleType, G4double KineticEnergy, const G4Material* aMaterial); void ComputePartialSumSigma( const G4ParticleDefinition* ParticleType, G4double KineticEnergy, const G4Material* aMaterial); virtual G4double ComputeMicroscopicCrossSection( const G4ParticleDefinition* ParticleType, G4double KineticEnergy, G4double AtomicNumber, G4double GammaEnergyCut); private: G4IeBremsstrahlung & operator=(const G4IeBremsstrahlung &right); G4IeBremsstrahlung(const G4IeBremsstrahlung&); G4double ComputeBremLoss(G4double Z,G4double natom,G4double T, G4double Cut,G4double x); G4double ComputeXYPolynomial(G4double x,G4double y,G4int xSize, G4int ySize,const G4double coeff[]); G4double ComputePositronCorrFactorLoss( G4double AtomicNumber, G4double KineticEnergy, G4double GammaEnergyCut); G4double ComputePositronCorrFactorSigma( G4double AtomicNumber, G4double KineticEnergy, G4double GammaEnergyCut); G4Element* SelectRandomAtom(G4Material* aMaterial) const; G4double ScreenFunction1(G4double ScreenVariable); G4double ScreenFunction2(G4double ScreenVariable); void BuildNlambdaTable(const G4ParticleDefinition& aParticleType) ; void BuildNlambdaVector(const G4ParticleDefinition& aParticleType, G4int materialIndex, G4PhysicsLogVector* nlambdaVector) ; void BuildInverseNlambdaTable( const G4ParticleDefinition& aParticleType) ; void InvertNlambdaVector(const G4ParticleDefinition& aParticleType, G4int materialIndex, G4PhysicsLogVector* nlambdaVector) ; void BuildCoeffATable(const G4ParticleDefinition& aParticleType) ; void BuildCoeffBTable(const G4ParticleDefinition& aParticleType) ; void BuildCoeffCTable(const G4ParticleDefinition& aParticleType) ; void TestOfInversion(const G4ParticleDefinition& aParticleType, G4int printflag) ; private: G4PhysicsTable* theMeanFreePathTable ; G4PhysicsTable* theNlambdaTable; G4PhysicsTable* theInverseNlambdaTable; G4PhysicsTable* theCoeffATable; G4PhysicsTable* theCoeffBTable; G4PhysicsTable* theCoeffCTable; G4OrderedTable PartialSumSigma; G4double LowestKineticEnergy; G4double HighestKineticEnergy; G4int TotBin; G4double RTable ; G4double CutInRange; const G4Gamma* theGamma; const G4Electron* theElectron; const G4Positron* thePositron; const G4double* GammaCutInKineticEnergy; G4double GammaCutInKineticEnergyNow; G4int NumberOfBuildPhysicsTableCalls ; }; #include "G4IeBremsstrahlung.icc" #endif