// // ******************************************************************** // * DISCLAIMER * // * * // * The following disclaimer summarizes all the specific disclaimers * // * of contributors to this software. The specific disclaimers,which * // * govern, are listed with their locations in: * // * http://cern.ch/geant4/license * // * * // * 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. * // * * // * This code implementation is the intellectual property of the * // * GEANT4 collaboration. * // * By copying, distributing or modifying the Program (or any work * // * based on the Program) you indicate your acceptance of this * // * statement, and all its terms. * // ******************************************************************** // // // $Id: G4ExcitedXiConstructor.hh,v 1.4.4.2 2001/06/28 20:19:15 gunter Exp $ // GEANT4 tag $Name: $ // // // -------------------------------------------------------------- // GEANT 4 class implementation file // // History: first implementation, based on object model of // 10 oct 1998 H.Kurashige // --------------------------------------------------------------- #ifndef G4ExcitedXiConstructor_h #define G4ExcitedXiConstructor_h 1 #include "globals.hh" #include "G4ios.hh" #include "G4ExcitedBaryonConstructor.hh" class G4ExcitedXiConstructor: public G4ExcitedBaryonConstructor { //This class is a utility class for construction //short lived particles public: G4ExcitedXiConstructor(); virtual ~G4ExcitedXiConstructor(); protected: virtual G4bool Exist( G4int ){return true;} virtual G4int GetQuarkContents(G4int, G4int); virtual G4String GetName(G4int iIso3, G4int iState); virtual G4String GetMultipletName(G4int iState); virtual G4double GetMass(G4int iState); virtual G4double GetWidth(G4int iState); virtual G4int GetiSpin(G4int iState); virtual G4int GetiParity(G4int iState); virtual G4int GetEncodingOffset(G4int iState); virtual G4DecayTable* CreateDecayTable(const G4String& name, G4int iIso3, G4int iState, G4bool fAnti = false); private: G4DecayTable* AddXiPiMode( G4DecayTable* table, const G4String& name, G4double br, G4int iIso3, G4bool fAnti); G4DecayTable* AddXiGammaMode( G4DecayTable* table, const G4String& name, G4double br, G4int iIso3, G4bool fAnti); G4DecayTable* AddLambdaKMode( G4DecayTable* table, const G4String& name, G4double br, G4int iIso3, G4bool fAnti); G4DecayTable* AddSigmaKMode( G4DecayTable* table, const G4String& name, G4double br, G4int iIso3, G4bool fAnti); public: enum { NStates = 5 }; private: enum { XiIsoSpin = 1 }; private: static const char* name[ NStates ]; static const G4double mass[ NStates ]; static const G4double width[ NStates ]; static const G4int iSpin[ NStates ]; static const G4int iParity[ NStates ]; static const G4int encodingOffset[ NStates ]; public: enum { NumberOfDecayModes = 4 }; private: enum { XiPi=0, XiGamma=1, LambdaK=2, SigmaK=3 }; private: static const G4double bRatio[ NStates ][ NumberOfDecayModes]; }; inline G4double G4ExcitedXiConstructor::GetMass(G4int iState) { return mass[iState]; } inline G4double G4ExcitedXiConstructor::GetWidth(G4int iState) { return width[iState]; } inline G4int G4ExcitedXiConstructor::GetiSpin(G4int iState) { return iSpin[iState]; } inline G4int G4ExcitedXiConstructor::GetiParity(G4int iState) { return iParity[iState]; } inline G4int G4ExcitedXiConstructor::GetEncodingOffset(G4int iState) { return encodingOffset[iState]; } inline G4int G4ExcitedXiConstructor::GetQuarkContents(G4int iQ, G4int iIso3) { G4int quark=0; if ( iQ == 0 ){ // s-quark quark = 3; } else if ( iQ == 1 ){ // s-quark quark = 3; } else if ( iQ == 2 ){ if (iIso3 == +1) { // u-quark quark = 2; } else { // d-quark quark = 1; } } return quark; } inline G4String G4ExcitedXiConstructor::GetMultipletName(G4int iState) { return name[iState]; } inline G4String G4ExcitedXiConstructor::GetName(G4int iIso3, G4int iState) { G4String particle = name[iState]; if (iIso3 == +1) { particle += "0"; } else if (iIso3 ==-1) { particle += "-"; } return particle; } #endif