G4DNARuddIonisationModel.hh

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00026 // $Id$
00027 //
00028 
00029 #ifndef G4DNARuddIonisationModel_h
00030 #define G4DNARuddIonisationModel_h 1
00031 
00032 #include "G4VEmModel.hh"
00033 #include "G4ParticleChangeForGamma.hh"
00034 #include "G4ProductionCutsTable.hh"
00035 
00036 #include "G4DNAGenericIonsManager.hh"
00037 #include "G4DNACrossSectionDataSet.hh"
00038 #include "G4Electron.hh"
00039 #include "G4Proton.hh"
00040 #include "G4LogLogInterpolation.hh"
00041 
00042 #include "G4DNAWaterIonisationStructure.hh"
00043 #include "G4VAtomDeexcitation.hh"
00044 #include "G4NistManager.hh"
00045 
00046 class G4DNARuddIonisationModel : public G4VEmModel
00047 {
00048 
00049 public:
00050 
00051   G4DNARuddIonisationModel(const G4ParticleDefinition* p = 0, 
00052                            const G4String& nam = "DNARuddIonisationModel");
00053 
00054   virtual ~G4DNARuddIonisationModel();
00055 
00056   virtual void Initialise(const G4ParticleDefinition*, const G4DataVector&);
00057 
00058   virtual G4double CrossSectionPerVolume(  const G4Material* material,
00059                                            const G4ParticleDefinition* p,
00060                                            G4double ekin,
00061                                            G4double emin,
00062                                            G4double emax);
00063 
00064   virtual void SampleSecondaries(std::vector<G4DynamicParticle*>*,
00065                                  const G4MaterialCutsCouple*,
00066                                  const G4DynamicParticle*,
00067                                  G4double tmin,
00068                                  G4double maxEnergy);
00069 
00070 protected:
00071 
00072   G4ParticleChangeForGamma* fParticleChangeForGamma;
00073 
00074 private:
00075   // Water density table
00076   const std::vector<G4double>* fpWaterDensity;
00077 
00078   //deexcitation manager to produce fluo photns and e-
00079   G4VAtomDeexcitation*      fAtomDeexcitation;
00080 
00081   std::map<G4String,G4double,std::less<G4String> > lowEnergyLimit;
00082   std::map<G4String,G4double,std::less<G4String> > highEnergyLimit;
00083 
00084   G4double lowEnergyLimitForZ1; 
00085   G4double lowEnergyLimitForZ2; 
00086   G4double lowEnergyLimitOfModelForZ1; 
00087   G4double lowEnergyLimitOfModelForZ2; 
00088   G4double killBelowEnergyForZ1; 
00089   G4double killBelowEnergyForZ2; 
00090 
00091   G4bool isInitialised;
00092   G4int verboseLevel;
00093   
00094   // Cross section
00095 
00096   typedef std::map<G4String,G4String,std::less<G4String> > MapFile;
00097   MapFile tableFile;
00098 
00099   typedef std::map<G4String,G4DNACrossSectionDataSet*,std::less<G4String> > MapData;
00100   MapData tableData;
00101   
00102   // Final state
00103   
00104   G4DNAWaterIonisationStructure waterStructure;
00105 
00106   G4double RandomizeEjectedElectronEnergy(G4ParticleDefinition* particleDefinition, 
00107                                           G4double incomingParticleEnergy, 
00108                                           G4int shell);
00109 
00110   void RandomizeEjectedElectronDirection(G4ParticleDefinition* particleDefinition, 
00111                                          G4double incomingParticleEnergy, 
00112                                          G4double outgoingParticleEnergy, 
00113                                          G4double & cosTheta, 
00114                                          G4double & phi);
00115    
00116   G4double  DifferentialCrossSection(G4ParticleDefinition* particleDefinition, 
00117                                    G4double k, 
00118                                    G4double energyTransfer, 
00119                                    G4int shell);
00120 
00121   G4double CorrectionFactor(G4ParticleDefinition* particleDefinition, G4double k);
00122 
00123   G4double S_1s(G4double t, 
00124                 G4double energyTransferred, 
00125                 G4double slaterEffectiveChg, 
00126                 G4double shellNumber);
00127 
00128   G4double S_2s(G4double t, 
00129                 G4double energyTransferred, 
00130                 G4double slaterEffectiveChg, 
00131                 G4double shellNumber);
00132 
00133 
00134   G4double S_2p(G4double t, 
00135                 G4double energyTransferred, 
00136                 G4double slaterEffectiveChg, 
00137                 G4double shellNumber);
00138 
00139   G4double R(G4double t, 
00140              G4double energyTransferred, 
00141              G4double slaterEffectiveChg, 
00142              G4double shellNumber) ;
00143 
00144   G4double slaterEffectiveCharge[3];
00145   G4double sCoefficient[3];
00146   
00147   // Partial cross section
00148   
00149   G4double PartialCrossSection(const G4Track& track);
00150                         
00151   G4double Sum(G4double energy, const G4String& particle);
00152 
00153   G4int RandomSelect(G4double energy,const G4String& particle );
00154   
00155   //
00156    
00157   G4DNARuddIonisationModel & operator=(const  G4DNARuddIonisationModel &right);
00158   G4DNARuddIonisationModel(const  G4DNARuddIonisationModel&);
00159 
00160 };
00161 
00162 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo....
00163 
00164 #endif

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