G4VEmissionProbability.hh

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00025 //
00026 //
00027 // $Id$
00028 //
00029 // Hadronic Process: Nuclear De-excitations
00030 // by V. Lara (Oct 1998) 
00031 //
00032 // Modif (03 September 2008) by J. M. Quesada for external choice of inverse 
00033 // cross section option
00034 // JMQ (06 September 2008) Also external choices have been added for 
00035 // superimposed Coulomb barrier (if useSICB is set true, by default is false) 
00036 
00037 
00038 #ifndef G4VEmissionProbability_h
00039 #define G4VEmissionProbability_h 1
00040 
00041 
00042 #include "globals.hh"
00043 #include "G4Fragment.hh"
00044 #include "G4PairingCorrection.hh"
00045 #include "G4EvaporationLevelDensityParameter.hh"
00046 #include "G4Pow.hh"
00047 
00048 class G4VEmissionProbability 
00049 {
00050 public:
00051   G4VEmissionProbability();
00052   virtual ~G4VEmissionProbability();
00053 
00054 private:  
00055   G4VEmissionProbability(const G4VEmissionProbability &right);
00056 
00057   const G4VEmissionProbability & operator=(const G4VEmissionProbability &right);
00058   G4bool operator==(const G4VEmissionProbability &right) const;
00059   G4bool operator!=(const G4VEmissionProbability &right) const;
00060   
00061 public:
00062   virtual G4double EmissionProbability(const G4Fragment & fragment, const G4double anEnergy) = 0;
00063 
00064   // for cross section selection
00065   inline void SetOPTxs(G4int opt) { OPTxs = opt; }
00066   // for superimposed Coulomb Barrier for inverse cross sections        
00067   inline void UseSICB(G4bool use) { useSICB = use; }    
00068 
00069 protected:
00070   G4int OPTxs;
00071   G4bool useSICB;
00072 
00073   G4Pow*   fG4pow;
00074   G4PairingCorrection* fPairCorr;
00075   G4EvaporationLevelDensityParameter * theEvapLDPptr;
00076 
00077 };
00078 
00079 
00080 #endif

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