G4TheoFSGenerator.hh

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00001 //
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00025 //
00026 //
00027 // $Id$
00028 //
00029 
00030 // Class Description
00031 // Final state production model for theoretical models of hadron inelastic
00032 // scattering in geant4;
00033 // To be used in your physics list in case you need this physics.
00034 // In this case you want to register an object of this class with 
00035 // the corresponding process.
00036 // Note: This class is part of an implementation framework. You need to
00037 // register corresponding high energy generators and transport codes to 
00038 // fill it with life; decay of strong resonances is done directly,
00039 // in case there is no residual nucleus. 
00040 // Class Description - End
00041 
00042 #ifndef G4TheoFSGenerator_h
00043 #define G4TheoFSGenerator_h 1
00044 
00045 #include "G4VIntraNuclearTransportModel.hh"
00046 #include "G4QuasiElasticChannel.hh"
00047 #include "G4HadronicInteraction.hh"
00048 #include "G4VHighEnergyGenerator.hh"
00049 #include "G4DecayStrongResonances.hh"
00050 #include "G4HadFinalState.hh"
00051 #include "G4QuasiElasticChannel.hh"
00052 #include "G4ProjectileDiffractiveChannel.hh"
00053 
00054 class G4TheoFSGenerator : public G4HadronicInteraction 
00055 
00056 {
00057   public:
00058       G4TheoFSGenerator(const G4String& name = "TheoFSGenerator");
00059       ~G4TheoFSGenerator();
00060 
00061   private:
00062       G4TheoFSGenerator(const G4TheoFSGenerator &right);
00063       const G4TheoFSGenerator & operator=(const G4TheoFSGenerator &right);
00064       int operator==(const G4TheoFSGenerator &right) const;
00065       int operator!=(const G4TheoFSGenerator &right) const;
00066 
00067   public:
00068       G4HadFinalState * ApplyYourself(const G4HadProjectile & thePrimary, G4Nucleus & theNucleus);
00069       void SetTransport(G4VIntraNuclearTransportModel *const  value);
00070       void SetHighEnergyGenerator(G4VHighEnergyGenerator *const  value);
00071       void SetQuasiElasticChannel(G4QuasiElasticChannel *const value);
00072       void SetProjectileDiffraction(G4ProjectileDiffractiveChannel *const value);
00073       virtual std::pair<G4double, G4double> GetEnergyMomentumCheckLevels() const;
00074       void ModelDescription(std::ostream& outFile) const;
00075 
00076 
00077   private:
00078       const G4VIntraNuclearTransportModel * GetTransport() const;
00079       const G4VHighEnergyGenerator * GetHighEnergyGenerator() const;
00080       const G4HadFinalState * GetFinalState() const;
00081 
00082   private: 
00083       G4VIntraNuclearTransportModel * theTransport;
00084       G4VHighEnergyGenerator * theHighEnergyGenerator;
00085       G4DecayStrongResonances theDecay;
00086       G4HadFinalState * theParticleChange;
00087       G4QuasiElasticChannel * theQuasielastic;
00088       G4ProjectileDiffractiveChannel * theProjectileDiffraction;
00089 };
00090 
00091 inline const G4VIntraNuclearTransportModel * G4TheoFSGenerator::GetTransport() const
00092 {
00093   return theTransport;
00094 }
00095 
00096 inline void G4TheoFSGenerator::SetTransport(G4VIntraNuclearTransportModel *const  value)
00097 {
00098   theTransport = value;
00099 }
00100 
00101 inline const G4VHighEnergyGenerator * G4TheoFSGenerator::GetHighEnergyGenerator() const
00102 {
00103   return theHighEnergyGenerator;
00104 }
00105 
00106 inline void G4TheoFSGenerator::SetHighEnergyGenerator(G4VHighEnergyGenerator *const  value)
00107 {
00108   theHighEnergyGenerator= value;
00109 }
00110 
00111 inline void G4TheoFSGenerator::SetQuasiElasticChannel(G4QuasiElasticChannel *const value)
00112 {
00113   theQuasielastic = value;
00114 }
00115 inline void G4TheoFSGenerator::SetProjectileDiffraction(G4ProjectileDiffractiveChannel *const value)
00116 {
00117   theProjectileDiffraction = value;
00118 }
00119 
00120 inline const G4HadFinalState * G4TheoFSGenerator::GetFinalState() const
00121 {
00122   return theParticleChange;
00123 }
00124 
00125 #endif
00126 
00127 

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