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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 // G4PionRadiativeDecayChannel << 26 // ------------------------------------------------------------ >> 27 // GEANT 4 class header file 27 // 28 // 28 // Class decription: << 29 // History: >> 30 // 30 July 2007 P.Gumplinger >> 31 // Samples Radiative Pion Decay >> 32 // Reference: >> 33 // TRIUMF/PIENU Technote: >> 34 // "Inclusion of pi->enug in the Monte Carlo" >> 35 // by M. Blecher 29 // 36 // 30 // This class describes radiative pion decay k << 37 // ------------------------------------------------------------ 31 // Rate is for gammas > 100keV. << 38 // 32 // NOTE: it gives incorrect energy spectrum fo << 39 // 33 << 40 // 34 // Author: P.Gumplinger, 30 July 2007 << 41 // 35 // Reference: M. Blecher, TRIUMF/PIENU Technot << 42 36 // "Inclusion of pi->enug in the Mo << 43 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo.... 37 // ------------------------------------------- << 44 //....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo.... 38 #ifndef G4PionRadiativeDecayChannel_hh << 45 39 #define G4PionRadiativeDecayChannel_hh 1 << 46 #ifndef G4PionRadiativeDecayChannel_h >> 47 #define G4PionRadiativeDecayChannel_h 1 40 48 >> 49 #include "globals.hh" >> 50 #include "Randomize.hh" 41 #include "G4ThreeVector.hh" 51 #include "G4ThreeVector.hh" 42 #include "G4VDecayChannel.hh" 52 #include "G4VDecayChannel.hh" 43 #include "Randomize.hh" << 44 #include "globals.hh" << 45 53 46 class G4PionRadiativeDecayChannel : public G4V 54 class G4PionRadiativeDecayChannel : public G4VDecayChannel 47 { 55 { 48 public: << 56 // Class Decription 49 G4PionRadiativeDecayChannel(const G4String << 57 // This class describes radiative pion decay kinemtics, but 50 ~G4PionRadiativeDecayChannel() override = << 58 // gives incorrect energy spectrum for neutrino 51 << 59 52 G4DecayProducts* DecayIt(G4double) overrid << 60 public: // With Description 53 << 61 54 protected: << 62 //Constructors 55 G4PionRadiativeDecayChannel() = default; << 63 G4PionRadiativeDecayChannel(const G4String& theParentName, 56 << 64 G4double theBR); 57 // Copy constructor and assignment operato << 65 // Destructor 58 G4PionRadiativeDecayChannel(const G4PionRa << 66 virtual ~G4PionRadiativeDecayChannel(); 59 G4PionRadiativeDecayChannel& operator=(con << 67 >> 68 public: // With Description >> 69 >> 70 virtual G4DecayProducts *DecayIt(G4double); >> 71 >> 72 private: >> 73 >> 74 G4double beta; >> 75 >> 76 G4double cib; >> 77 G4double csdp; >> 78 G4double csdm; >> 79 G4double cif; >> 80 G4double cig; >> 81 >> 82 G4double xl, yl, xu, yu, d2wmax; >> 83 >> 84 G4double D2W(const G4double x, const G4double y); >> 85 60 }; 86 }; >> 87 >> 88 inline G4double G4PionRadiativeDecayChannel::D2W(const G4double x, >> 89 const G4double y) >> 90 { >> 91 G4double d2w = cib*(1.-y)*(1.+((1.-x)*(1.-x)))/((x*x)*(x+y-1.)) + >> 92 csdp*(1.-x)*((x+y-1.)*(x+y-1.)) + >> 93 csdm*(1.-x)*((1.-y)*(1.-y)) + >> 94 cif*(x-1.)*(1.-y)/x + >> 95 cig*(1.-y)*(1.-x+(x*x)/(x+y-1.))/x; >> 96 return d2w; >> 97 } 61 98 62 #endif 99 #endif 63 100