G4NeutronHPElastic.hh

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00027 // $Id$
00028 //
00029  // Hadronic Process: High Precision low E neutron tracking
00030  // original by H.P. Wellisch, TRIUMF, 14-Feb-97
00031  // Builds and has the Cross-section data for one material.
00032  
00033 #ifndef G4NeutronHPElastic_h
00034 #define G4NeutronHPElastic_h 1
00035 
00036 // Class Description
00037 // Final state production model for a high precision (based on evaluated data
00038 // libraries) description of neutron elastic scattering below 20 MeV; 
00039 // To be used in your physics list in case you need this physics.
00040 // In this case you want to register an object of this class with 
00041 // the corresponding process.
00042 // Class Description - End
00043 
00044 #include "globals.hh"
00045 #include "G4NeutronHPChannel.hh"
00046 #include "G4HadronicInteraction.hh"
00047 
00048 class G4NeutronHPElastic : public G4HadronicInteraction
00049 {
00050   public: 
00051   
00052   G4NeutronHPElastic();
00053   
00054   ~G4NeutronHPElastic();
00055 
00056   G4HadFinalState * ApplyYourself(const G4HadProjectile& aTrack, G4Nucleus& aTargetNucleus);
00057 
00058   virtual const std::pair<G4double, G4double> GetFatalEnergyCheckLevels() const;
00059 
00060   //G4int GetNiso() {return theElastic[0].GetNiso();}
00061   G4int GetNiso() {return (*theElastic[0]).GetNiso();}
00062 
00063   void DoNotSuspend() {overrideSuspension = true;}
00064 
00065   private:
00066   
00067   G4double * xSec;
00068   //G4NeutronHPChannel * theElastic;
00069   std::vector<G4NeutronHPChannel*> theElastic;
00070   G4String dirName;
00071   G4int numEle;
00072   G4bool overrideSuspension;
00073 
00074       void addChannelForNewElement();
00075 };
00076 
00077 #endif

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