// // ******************************************************************** // * 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. * // ******************************************************************** // // G4IsotopeProperty // // Class description: // // G4IsotopeProperty contains properties of an isotope // Author: H.Kurashige, 5 October 1999 // -------------------------------------------------------------------- #ifndef G4IsotopeProperty_hh #define G4IsotopeProperty_hh 1 #include "G4Ions.hh" #include "globals.hh" class G4DecayTable; class G4IsotopeProperty { public: // Constructor & destructor G4IsotopeProperty() = default; virtual ~G4IsotopeProperty(); G4IsotopeProperty(const G4IsotopeProperty& right); G4IsotopeProperty& operator=(G4IsotopeProperty& right); // Equality operators G4bool operator==(const G4IsotopeProperty& right) const; G4bool operator!=(const G4IsotopeProperty& right) const; // Set/Get Atomic Number inline G4int GetAtomicNumber() const; inline void SetAtomicNumber(G4int Z); // Set/Get Atomic Mass inline G4int GetAtomicMass() const; inline void SetAtomicMass(G4int A); // Set/Get spin inline G4int GetiSpin() const; inline void SetiSpin(G4int J); // Set/Get Magnetic Moment inline G4double GetMagneticMoment() const; inline void SetMagneticMoment(G4double M); // Set/Get Excited Energy inline G4double GetEnergy() const; inline void SetEnergy(G4double E); // Set/Get isomer level inline G4int GetIsomerLevel() const; inline void SetIsomerLevel(G4int level); // Set/Get floating level base inline G4Ions::G4FloatLevelBase GetFloatLevelBase() const; inline void SetFloatLevelBase(G4Ions::G4FloatLevelBase flb); inline void SetFloatLevelBase(G4int flbIndex); // Set/Get life time inline G4double GetLifeTime() const; inline void SetLifeTime(G4double T); // Set/Get decay table inline G4DecayTable* GetDecayTable() const; inline void SetDecayTable(G4DecayTable* table); // Dump out information void DumpInfo() const; private: G4int fAtomicNumber = 0; // number of proton G4int fAtomicMass = 0; // number of nucleon G4int fISpin = 0; // total angular momentum (in unit of 1/2) G4double fEnergy = 0.0; // excited energy G4double fLifeTime = -1.0; // lifeTime G4DecayTable* fDecayTable = nullptr; // decay Table G4double fMagneticMoment = 0.0; // magnetic moment G4int fIsomerLevel = -1; // isomer level G4Ions::G4FloatLevelBase fFloatLevelBase{ G4Ions::G4FloatLevelBase::no_Float}; // floating level base }; // ------------------------ // Inline methods // ------------------------ inline G4int G4IsotopeProperty::GetAtomicNumber() const { return fAtomicNumber; } inline void G4IsotopeProperty::SetAtomicNumber(G4int Z) { fAtomicNumber = Z; } inline G4int G4IsotopeProperty::GetAtomicMass() const { return fAtomicMass; } inline void G4IsotopeProperty::SetAtomicMass(G4int A) { fAtomicMass = A; } inline G4int G4IsotopeProperty::GetiSpin() const { return fISpin; } inline void G4IsotopeProperty::SetiSpin(G4int J) { fISpin = J; } inline G4double G4IsotopeProperty::GetMagneticMoment() const { return fMagneticMoment; } inline void G4IsotopeProperty::SetMagneticMoment(G4double M) { fMagneticMoment = M; } inline G4double G4IsotopeProperty::GetEnergy() const { return fEnergy; } inline void G4IsotopeProperty::SetEnergy(G4double E) { fEnergy = E; } inline G4int G4IsotopeProperty::GetIsomerLevel() const { return fIsomerLevel; } inline void G4IsotopeProperty::SetIsomerLevel(G4int level) { fIsomerLevel = level; } inline G4double G4IsotopeProperty::GetLifeTime() const { return fLifeTime; } inline void G4IsotopeProperty::SetLifeTime(G4double T) { fLifeTime = T; } inline G4DecayTable* G4IsotopeProperty::GetDecayTable() const { return fDecayTable; } inline void G4IsotopeProperty::SetDecayTable(G4DecayTable* table) { fDecayTable = table; } inline G4Ions::G4FloatLevelBase G4IsotopeProperty::GetFloatLevelBase() const { return fFloatLevelBase; } inline void G4IsotopeProperty::SetFloatLevelBase(G4Ions::G4FloatLevelBase flb) { fFloatLevelBase = flb; } inline void G4IsotopeProperty::SetFloatLevelBase(G4int flbIndex) { fFloatLevelBase = G4Ions::FloatLevelBase(flbIndex); } #endif