// 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: G4eEnergyLoss.hh,v 2.13 1998/12/02 16:47:13 urban Exp $ // GEANT4 tag $Name: geant4-00 $ // // $Id: // ------------------------------------------------------------ // GEANT 4 class header file // // 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 // ---------- G4eEnergyLoss physics process ----------- // by Laszlo Urban, 20 March 1997 // ************************************************************ // It is the first implementation of the new unified Energy Loss process. // It calculates the continuous energy loss for e+/e-. // Processes giving contribution to the continuous loss : // ionisation (= cont.ion.loss + delta ray production) // bremsstrahlung (= cont.loss due to sooft brems+discrete bremsstrahlung) // can be added more easily .......... // This class creates static dE/dx and range tables for e+ and e-, // which tables can be used by other processes. // ------------------------------------------------------------ // // 27.05.98 OldGetRange removed + other corrs , L.Urban // 10.09.98 cleanup // 16.10.98 public method SetStepFunction() + messenger class // ------------------------------------------------------------ #ifndef G4eEnergyLoss_h #define G4eEnergyLoss_h 1 #include "G4ios.hh" #include "globals.hh" #include "Randomize.hh" #include "G4VContinuousDiscreteProcess.hh" #include "G4Material.hh" #include "G4Element.hh" #include "G4ParticleChangeForLoss.hh" #include "globals.hh" #include "G4Track.hh" #include "G4Step.hh" #include "G4Electron.hh" #include "G4Positron.hh" #include "G4PhysicsLogVector.hh" #include "G4PhysicsLinearVector.hh" class G4EnergyLossMessenger; class G4eEnergyLoss : public G4VContinuousDiscreteProcess { public: G4eEnergyLoss(const G4String& ); ~G4eEnergyLoss(); G4bool IsApplicable(const G4ParticleDefinition&); public: void BuildDEDXTable(const G4ParticleDefinition& aParticleType); G4double GetContinuousStepLimit(const G4Track& track, G4double previousStepSize, G4double currentMinimumStep, G4double& currentSafety); G4VParticleChange* AlongStepDoIt(const G4Track& track, const G4Step& Step) ; virtual G4double GetMeanFreePath(const G4Track& track, G4double previousStepSize, G4ForceCondition* condition) = 0; virtual G4VParticleChange* PostStepDoIt(const G4Track& track, const G4Step& Step) = 0; private: void BuildRangeTable(const G4ParticleDefinition& aParticleType); void BuildInverseRangeTable(const G4ParticleDefinition& aParticleType); void BuildTimeTables(const G4ParticleDefinition& aParticleType); void BuildRangeVector(G4int materialIndex, G4PhysicsLogVector* rangeVector); void BuildLabTimeVector(G4int materialIndex, G4PhysicsLogVector* rangeVector); void BuildProperTimeVector(G4int materialIndex, G4PhysicsLogVector* rangeVector); void InvertRangeVector(G4int materialIndex, G4PhysicsLogVector* rangeVector); G4double RangeIntLin(G4PhysicsVector* physicsVector,G4int nbin); G4double RangeIntLog(G4PhysicsVector* physicsVector,G4int nbin); G4double LabTimeIntLog(G4PhysicsVector* physicsVector,G4int nbin); G4double ProperTimeIntLog(G4PhysicsVector* physicsVector,G4int nbin); void BuildRangeCoeffATable(const G4ParticleDefinition& aParticleType); void BuildRangeCoeffBTable(const G4ParticleDefinition& aParticleType); void BuildRangeCoeffCTable(const G4ParticleDefinition& aParticleType); G4double GetConstraints(const G4DynamicParticle* aParticle, G4Material* aMaterial); G4double GetLossWithFluct(const G4DynamicParticle* aParticle, G4Material* aMaterial, G4double threshold); // hide assignment operator G4eEnergyLoss (G4eEnergyLoss &); G4eEnergyLoss & operator=(const G4eEnergyLoss &right); protected: G4PhysicsTable* theLossTable; G4double ParticleMass; // heavily used private: G4PhysicsTable* theDEDXTable; G4PhysicsTable* theRangeTable; G4PhysicsTable* theInverseRangeTable; G4PhysicsTable* theLabTimeTable ; G4PhysicsTable* theProperTimeTable ; G4int CounterOfProcess; G4PhysicsTable** RecorderOfProcess; G4double fdEdx; // computed in GetConstraints G4double fRangeNow; // computed in GetConstraints G4int EnergyBinNumber; // computed in GetConstraints // (needed to compute range) G4int TotBin; // number of bins in table, // calculated in BuildPhysicTable G4double LowestKineticEnergy; G4double HighestKineticEnergy; G4double RTable,LOGRTable; // LOGRTable=log(HighestKineticEnergy- // LowestKineticEnergy)/TotBin // RTable = exp(LOGRTable) G4PhysicsTable* theRangeCoeffATable; G4PhysicsTable* theRangeCoeffBTable; G4PhysicsTable* theRangeCoeffCTable; // variables for the integration routines G4double taulow,tauhigh,ltaulow,ltauhigh; // data members to speed up the fluctuation calculation G4Material* lastMaterial; G4int imat; G4double f1Fluct,f2Fluct,e1Fluct,e2Fluct,rateFluct,ipotFluct; G4double e1LogFluct,e2LogFluct,ipotLogFluct; const G4double MaxExcitationNumber ; const G4double probLimFluct ; const long nmaxDirectFluct,nmaxCont1,nmaxCont2 ; //New ParticleChange G4ParticleChangeForLoss fParticleChange ; // // static part of the class // protected: //basic DEDX and Range tables static G4PhysicsTable* theDEDXElectronTable ; static G4PhysicsTable* theDEDXPositronTable ; static G4PhysicsTable* theRangeElectronTable ; static G4PhysicsTable* theRangePositronTable ; //inverse tables of the range tables static G4PhysicsTable* theInverseRangeElectronTable; static G4PhysicsTable* theInverseRangePositronTable; // lab and proper time tables static G4PhysicsTable* theLabTimeElectronTable ; static G4PhysicsTable* theLabTimePositronTable ; static G4PhysicsTable* theProperTimeElectronTable ; static G4PhysicsTable* theProperTimePositronTable ; //processes inherited from G4eEnergyLoss //register themselves in the static array Recorder //for electrons/positrons separately //nb of contributing processes = NbOfProcesses static G4int NbOfProcesses; static G4int CounterOfElectronProcess; static G4int CounterOfPositronProcess ; static G4PhysicsTable** RecorderOfElectronProcess; static G4PhysicsTable** RecorderOfPositronProcess; private: //for interpolation within the tables static G4PhysicsTable* theeRangeCoeffATable; static G4PhysicsTable* theeRangeCoeffBTable; static G4PhysicsTable* theeRangeCoeffCTable; static G4PhysicsTable* thepRangeCoeffATable; static G4PhysicsTable* thepRangeCoeffBTable; static G4PhysicsTable* thepRangeCoeffCTable; static G4double dRoverRange; // dRoverRange is the maximum allowed // deltarange/range in one Step static G4double finalRange; // final step before stopping static G4bool rndmStepFlag; // control the randomization of the step static G4bool EnlossFlucFlag; // control the energy loss fluctuation static G4EnergyLossMessenger* eLossMessenger; public: static void SetNbOfProcesses(G4int nb) {NbOfProcesses=nb;}; static void PlusNbOfProcesses() {NbOfProcesses++ ;}; static void MinusNbOfProcesses() {NbOfProcesses-- ;}; static G4int GetNbOfProcesses() {return NbOfProcesses;}; static void SetRndmStep (G4bool value) {rndmStepFlag = value;} static void SetEnlossFluc (G4bool value) {EnlossFlucFlag = value;} static void SetStepFunction (G4double c1, G4double c2) {dRoverRange = c1; finalRange = c2;} }; #include "G4eEnergyLoss.icc" #endif