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Please see the license in the file LICENSE and URL above * 16 // * for the full disclaimer and the limitatio 16 // * for the full disclaimer and the limitation of liability. * 17 // * 17 // * * 18 // * This code implementation is the result 18 // * This code implementation is the result of the scientific and * 19 // * technical work of the GEANT4 collaboratio 19 // * technical work of the GEANT4 collaboration. * 20 // * By using, copying, modifying or distri 20 // * By using, copying, modifying or distributing the software (or * 21 // * any work based on the software) you ag 21 // * any work based on the software) you agree to acknowledge its * 22 // * use in resulting scientific publicati 22 // * use in resulting scientific publications, and indicate your * 23 // * acceptance of all terms of the Geant4 Sof 23 // * acceptance of all terms of the Geant4 Software license. * 24 // ******************************************* 24 // ******************************************************************** 25 // 25 // 26 // 26 // 27 // $Id: G4NuElNucleusNcModel.hh 90228 2015-05- 27 // $Id: G4NuElNucleusNcModel.hh 90228 2015-05-21 08:49:57Z gcosmo $ 28 // 28 // 29 // Geant4 Header : G4NuElNucleusNcModel 29 // Geant4 Header : G4NuElNucleusNcModel 30 // 30 // 31 // Author : V.Grichine 27.2.19 31 // Author : V.Grichine 27.2.19 32 // 32 // 33 // Modified: 33 // Modified: 34 // 34 // 35 // Class Description 35 // Class Description 36 // Default model for muon neutrino-nucleus neu 36 // Default model for muon neutrino-nucleus neutral current scattering; 37 // Class Description - End 37 // Class Description - End 38 38 39 #ifndef G4NuElNucleusNcModel_h 39 #ifndef G4NuElNucleusNcModel_h 40 #define G4NuElNucleusNcModel_h 1 40 #define G4NuElNucleusNcModel_h 1 41 41 42 #include "globals.hh" 42 #include "globals.hh" 43 #include "G4NeutrinoNucleusModel.hh" 43 #include "G4NeutrinoNucleusModel.hh" 44 #include "G4HadProjectile.hh" 44 #include "G4HadProjectile.hh" 45 #include "G4Nucleus.hh" 45 #include "G4Nucleus.hh" 46 #include "G4NucleiProperties.hh" 46 #include "G4NucleiProperties.hh" 47 #include "G4LorentzVector.hh" 47 #include "G4LorentzVector.hh" 48 #include "G4Threading.hh" 48 #include "G4Threading.hh" 49 49 50 class G4ParticleDefinition; 50 class G4ParticleDefinition; 51 class G4VPreCompoundModel; 51 class G4VPreCompoundModel; 52 class G4CascadeInterface; 52 class G4CascadeInterface; 53 class G4BinaryCascade; 53 class G4BinaryCascade; 54 class G4TheoFSGenerator; 54 class G4TheoFSGenerator; 55 class G4LundStringFragmentation; 55 class G4LundStringFragmentation; 56 class G4ExcitedStringDecay; 56 class G4ExcitedStringDecay; 57 class G4INCLXXInterface; 57 class G4INCLXXInterface; 58 class G4Nucleus; 58 class G4Nucleus; 59 59 60 class G4NuElNucleusNcModel : public G4Neutrino 60 class G4NuElNucleusNcModel : public G4NeutrinoNucleusModel 61 { 61 { 62 public: 62 public: 63 63 64 G4NuElNucleusNcModel(const G4String& name = << 64 G4NuElNucleusNcModel(const G4String& name = "NuMuNuclNcModel"); 65 65 66 virtual ~G4NuElNucleusNcModel(); 66 virtual ~G4NuElNucleusNcModel(); 67 67 68 virtual void InitialiseModel(); 68 virtual void InitialiseModel(); 69 69 70 virtual G4bool IsApplicable(const G4HadProje 70 virtual G4bool IsApplicable(const G4HadProjectile & aTrack, 71 G4Nucleus & targetNucleus); 71 G4Nucleus & targetNucleus); 72 72 73 virtual G4HadFinalState * ApplyYourself(cons 73 virtual G4HadFinalState * ApplyYourself(const G4HadProjectile & aTrack, 74 G4Nucleus & targetNucleus); 74 G4Nucleus & targetNucleus); 75 75 76 76 77 ////////// KR excitation kinematics //////// 77 ////////// KR excitation kinematics //////////////////// 78 78 79 void SampleLVkr(const G4HadProjectile & aTra 79 void SampleLVkr(const G4HadProjectile & aTrack, G4Nucleus & targetNucleus); 80 80 81 G4double GetMinNuElEnergy(){ return fMnumu + 81 G4double GetMinNuElEnergy(){ return fMnumu + 0.5*fMnumu*fMnumu/fM1 + 0.05*CLHEP::keV; }; // kinematics + accuracy for sqrts 82 82 83 G4double ThresholdEnergy(G4double mI, G4doub 83 G4double ThresholdEnergy(G4double mI, G4double mF, G4double mP) // for cluster decay 84 { 84 { 85 G4double w = std::sqrt(fW2); 85 G4double w = std::sqrt(fW2); 86 return w + 0.5*( (mP+mF)*(mP+mF)-(w+mI)*(w 86 return w + 0.5*( (mP+mF)*(mP+mF)-(w+mI)*(w+mI) )/mI; 87 }; 87 }; 88 88 89 virtual void ModelDescription(std::ostream&) 89 virtual void ModelDescription(std::ostream&) const; 90 90 91 private: 91 private: 92 92 93 G4ParticleDefinition* theNuE; 93 G4ParticleDefinition* theNuE; 94 // G4ParticleDefinition* theANuMu; 94 // G4ParticleDefinition* theANuMu; 95 95 96 G4double fMnumu; // = 0 for <f|-state 96 G4double fMnumu; // = 0 for <f|-state 97 97 98 G4bool fData, fMaster; // for one initialisa 98 G4bool fData, fMaster; // for one initialisation only 99 99 100 #ifdef G4MULTITHREADED 100 #ifdef G4MULTITHREADED 101 static G4Mutex numuNucleusModel; 101 static G4Mutex numuNucleusModel; 102 #endif 102 #endif 103 103 104 }; 104 }; 105 105 106 106 107 107 108 #endif 108 #endif 109 109