// // ******************************************************************** // * License and Disclaimer * // * * // * The Geant4 software is copyright of the Copyright Holders of * // * the Geant4 Collaboration. It is provided under the terms and * // * conditions of the Geant4 Software License, included in the file * // * LICENSE and available at http://cern.ch/geant4/license . These * // * include a list of copyright holders. * // * * // * Neither the authors of this software system, nor their employing * // * institutes,nor the agencies providing financial support for this * // * work make any representation or warranty, express or implied, * // * regarding this software system or assume any liability for its * // * use. Please see the license in the file LICENSE and URL above * // * for the full disclaimer and the limitation of liability. * // * * // * This code implementation is the result of the scientific and * // * technical work of the GEANT4 collaboration. * // * By using, copying, modifying or distributing the software (or * // * any work based on the software) you agree to acknowledge its * // * use in resulting scientific publications, and indicate your * // * acceptance of all terms of the Geant4 Software license. * // ******************************************************************** // // INCL++ intra-nuclear cascade model // Alain Boudard, CEA-Saclay, France // Joseph Cugnon, University of Liege, Belgium // Jean-Christophe David, CEA-Saclay, France // Pekka Kaitaniemi, CEA-Saclay, France, and Helsinki Institute of Physics, Finland // Sylvie Leray, CEA-Saclay, France // Davide Mancusi, CEA-Saclay, France // #define INCLXX_IN_GEANT4_MODE 1 #include "globals.hh" /** \file G4INCLCrossSectionsStrangeness.hh * \brief Multipion, mesonic Resonances and strange cross sections * * \date 1st March 2016 * \author Jason Hirtz */ #ifndef G4INCLCROSSSECTIONSSTRANGENESS_HH #define G4INCLCROSSSECTIONSSTRANGENESS_HH #include "G4INCLCrossSectionsMultiPionsAndResonances.hh" #include "G4INCLConfig.hh" //#include namespace G4INCL { /// \brief Multipion, mesonic Resonances and strange cross sections class CrossSectionsStrangeness : public CrossSectionsMultiPionsAndResonances { public: CrossSectionsStrangeness(); /// \brief second new total particle-particle cross section virtual G4double total(Particle const * const p1, Particle const * const p2); /// \brief second new elastic particle-particle cross section virtual G4double elastic(Particle const * const p1, Particle const * const p2); /// \brief correction to old cross section virtual G4double piNToxPiN(const G4int xpi, Particle const * const p1, Particle const * const p2); virtual G4double NNToxPiNN(const G4int xpi, Particle const * const p1, Particle const * const p2); /// \brief elastic scattering for Nucleon-Strange Particles cross sections virtual G4double NYelastic(Particle const * const p1, Particle const * const p2); virtual G4double NKbelastic(Particle const * const p1, Particle const * const p2); virtual G4double NKelastic(Particle const * const p1, Particle const * const p2); /// \brief Nucleon-Nucleon to Stange particles cross sections virtual G4double NNToNLK(Particle const * const p1, Particle const * const p2); virtual G4double NNToNSK(Particle const * const p1, Particle const * const p2); virtual G4double NNToNLKpi(Particle const * const p1, Particle const * const p2); virtual G4double NNToNSKpi(Particle const * const p1, Particle const * const p2); virtual G4double NNToNLK2pi(Particle const * const p1, Particle const * const p2); virtual G4double NNToNSK2pi(Particle const * const p1, Particle const * const p2); virtual G4double NNToNNKKb(Particle const * const p1, Particle const * const p2); virtual G4double NNToMissingStrangeness(Particle const * const p1, Particle const * const p2); /// \brief Nucleon-Delta to Stange particles cross sections virtual G4double NDeltaToNLK(Particle const * const p1, Particle const * const p2); virtual G4double NDeltaToNSK(Particle const * const p1, Particle const * const p2); virtual G4double NDeltaToDeltaLK(Particle const * const p1, Particle const * const p2); virtual G4double NDeltaToDeltaSK(Particle const * const p1, Particle const * const p2); virtual G4double NDeltaToNNKKb(Particle const * const p1, Particle const * const p2); /// \brief Nucleon-Pion to Strange particles cross sections virtual G4double NpiToLK(Particle const * const p1, Particle const * const p2); G4double p_pimToLK0(Particle const * const p1, Particle const * const p2); virtual G4double NpiToSK(Particle const * const p1, Particle const * const p2); G4double p_pipToSpKp(Particle const * const p1, Particle const * const p2); virtual G4double p_pimToSzKz(Particle const * const p1, Particle const * const p2); virtual G4double p_pimToSmKp(Particle const * const p1, Particle const * const p2); virtual G4double p_pizToSzKp(Particle const * const p1, Particle const * const p2); virtual G4double NpiToLKpi(Particle const * const p1, Particle const * const p2); virtual G4double NpiToSKpi(Particle const * const p1, Particle const * const p2); virtual G4double NpiToLK2pi(Particle const * const p1, Particle const * const p2); virtual G4double NpiToSK2pi(Particle const * const p1, Particle const * const p2); virtual G4double NpiToNKKb(Particle const * const p1, Particle const * const p2); virtual G4double NpiToMissingStrangeness(Particle const * const p1, Particle const * const p2); /// \brief Nucleon-Hyperon quasi-elastic cross sections virtual G4double NLToNS(Particle const * const p1, Particle const * const p2); virtual G4double NSToNL(Particle const * const p1, Particle const * const p2); virtual G4double NSToNS(Particle const * const p1, Particle const * const p2); /// \brief Nucleon-Kaon cross sections virtual G4double NKToNK(Particle const * const p1, Particle const * const p2); virtual G4double NKToNKpi(Particle const * const p1, Particle const * const p2); virtual G4double NKToNK2pi(Particle const * const p1, Particle const * const p2); /// \brief Nucleon-antiKaon cross sections virtual G4double NKbToNKb(Particle const * const p1, Particle const * const p2); virtual G4double NKbToSpi(Particle const * const p1, Particle const * const p2); virtual G4double NKbToLpi(Particle const * const p1, Particle const * const p2); virtual G4double p_kmToL_pz(Particle const * const p1, Particle const * const p2); virtual G4double NKbToS2pi(Particle const * const p1, Particle const * const p2); virtual G4double NKbToL2pi(Particle const * const p1, Particle const * const p2); virtual G4double p_kmToL_pp_pm(Particle const * const p1, Particle const * const p2); virtual G4double NKbToNKbpi(Particle const * const p1, Particle const * const p2); virtual G4double NKbToNKb2pi(Particle const * const p1, Particle const * const p2); /// \brief eta-Nucleon cross sections virtual G4double etaNToLK(Particle const * const p1, Particle const * const p2); virtual G4double etaNToSK(Particle const * const p1, Particle const * const p2); /// \brief Omega-Nucleon cross sections virtual G4double omegaNToLK(Particle const * const p1, Particle const * const p2); virtual G4double omegaNToSK(Particle const * const p1, Particle const * const p2); virtual G4double omegaNToPiPiN(Particle const * const p1, Particle const * const p2); protected: /// \brief Maximum number of outgoing pions in NN collisions static const G4int nMaxPiNN; /// \brief Maximum number of outgoing pions in piN collisions static const G4int nMaxPiPiN; /// \brief Horner coefficients for s11pz const HornerC7 s11pzHC; /// \brief Horner coefficients for s01pp const HornerC8 s01ppHC; /// \brief Horner coefficients for s01pz const HornerC4 s01pzHC; /// \brief Horner coefficients for s11pm const HornerC4 s11pmHC; /// \brief Horner coefficients for s12pm const HornerC5 s12pmHC; /// \brief Horner coefficients for s12pp const HornerC3 s12ppHC; /// \brief Horner coefficients for s12zz const HornerC4 s12zzHC; /// \brief Horner coefficients for s02pz const HornerC4 s02pzHC; /// \brief Horner coefficients for s02pm const HornerC6 s02pmHC; /// \brief Horner coefficients for s12mz const HornerC4 s12mzHC; }; } #endif