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Geant4/processes/hadronic/models/de_excitation/multifragmentation/include/G4StatMFMacroNucleon.hh

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  1 //
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 25 //
 26 //
 27 // Hadronic Process: Nuclear De-excitations
 28 // by V. Lara
 29 
 30 #ifndef G4StatMFMacroNucleon_h
 31 #define G4StatMFMacroNucleon_h 1
 32 
 33 #include "G4VStatMFMacroCluster.hh"
 34 
 35 
 36 class G4StatMFMacroNucleon : public G4VStatMFMacroCluster {
 37 
 38 public:
 39 
 40   G4StatMFMacroNucleon(); 
 41 
 42   ~G4StatMFMacroNucleon();
 43   
 44   G4double CalcMeanMultiplicity(const G4double FreeVol, const G4double mu, 
 45         const G4double nu, const G4double T);
 46   
 47   inline G4double CalcZARatio(const G4double ) 
 48   { 
 49     theZARatio = 0.0;
 50     if (_ProtonMeanMultiplicity+_NeutronMeanMultiplicity > 0.0) {
 51       theZARatio = _ProtonMeanMultiplicity/
 52   (_ProtonMeanMultiplicity+_NeutronMeanMultiplicity);
 53     }
 54     return theZARatio; 
 55   }         
 56             
 57   G4double CalcEnergy(const G4double T);
 58   
 59   G4double CalcEntropy(const G4double T, const G4double FreeVol);
 60 
 61 private:
 62 
 63   // Copy constructor
 64   G4StatMFMacroNucleon(const G4StatMFMacroNucleon & right);
 65 
 66   // operators
 67   G4StatMFMacroNucleon & operator=(const G4StatMFMacroNucleon & right);
 68   G4bool operator==(const G4StatMFMacroNucleon & right) const;
 69   G4bool operator!=(const G4StatMFMacroNucleon & right) const;
 70 
 71   G4double _NeutronMeanMultiplicity;
 72   G4double _ProtonMeanMultiplicity;
 73 
 74 };
 75 
 76 #endif
 77