220 lines
7.9 KiB
C++
220 lines
7.9 KiB
C++
//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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// G4ParticlePropertyData
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//
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// Class description:
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//
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// This class contains properties of a particle which are a subset
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// of properties in G4ParticleDefinition.
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// This class is used only for G4ParticlePropertyTable.
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// Author: H.Kurashige, 9 June 2003
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// --------------------------------------------------------------------
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#ifndef G4ParticlePropertyData_hh
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#define G4ParticlePropertyData_hh 1
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#include "G4ios.hh"
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#include "globals.hh"
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class G4ParticlePropertyTable;
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class G4ParticlePropertyData
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{
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friend class G4ParticlePropertyTable;
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public:
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// The particle name should be assigned
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// The name cannot be changed except by assignment operator
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G4ParticlePropertyData(const G4String& particleName = "");
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G4ParticlePropertyData(const G4ParticlePropertyData& right);
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virtual ~G4ParticlePropertyData() = default;
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G4ParticlePropertyData& operator=(const G4ParticlePropertyData& right);
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G4bool operator==(const G4ParticlePropertyData& right) const;
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G4bool operator!=(const G4ParticlePropertyData& right) const;
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// With the following accessors, one can get values
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// for members which cannot be changed
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const G4String& GetParticleName() const { return theParticleName; }
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G4double GetPDGMass() const { return thePDGMass; }
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G4double GetPDGWidth() const { return thePDGWidth; }
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G4double GetPDGCharge() const { return thePDGCharge; }
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G4int GetPDGiSpin() const { return thePDGiSpin; }
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G4int GetPDGiParity() const { return thePDGiParity; }
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G4int GetPDGiConjugation() const { return thePDGiConjugation; }
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G4int GetPDGiIsospin() const { return thePDGiIsospin; }
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G4int GetPDGiIsospin3() const { return thePDGiIsospin3; }
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G4int GetPDGiGParity() const { return thePDGiGParity; }
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G4double GetPDGMagneticMoment() const { return thePDGMagneticMoment; }
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G4int GetLeptonNumber() const { return theLeptonNumber; }
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G4int GetBaryonNumber() const { return theBaryonNumber; }
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G4int GetPDGEncoding() const { return thePDGEncoding; }
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G4int GetAntiPDGEncoding() const { return theAntiPDGEncoding; }
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// Return the number of quark with flavor contained in this particle.
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// The value of flavor is assigned as follows:
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// 1:d, 2:u, 3:s, 4:c, 5:b, 6:t
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inline G4int GetQuarkContent(G4int flavor) const;
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inline G4int GetAntiQuarkContent(G4int flavor) const;
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G4double GetPDGLifeTime() const { return thePDGLifeTime; }
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// Modifiers
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inline void SetPDGMass(G4double newMass);
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inline void SetPDGWidth(G4double newWidth);
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inline void SetPDGCharge(G4double newCharge);
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inline void SetPDGiSpin(G4int newSpin);
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inline void SetPDGiParity(G4int newParity);
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inline void SetPDGiConjugation(G4int newConjugation);
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inline void SetPDGiIsospin(G4int newIsospin);
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inline void SetPDGiIsospin3(G4int newIsospin3);
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inline void SetPDGiGParity(G4int newGParity);
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inline void SetPDGMagneticMoment(G4double magneticMoment);
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inline void SetLeptonNumber(G4int newLeptonNumber);
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inline void SetBaryonNumber(G4int newBaryonNumber);
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inline void SetPDGEncoding(G4int newEncoding);
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inline void SetAntiPDGEncoding(G4int newAntiEncoding);
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inline void SetQuarkContent(G4int flavor, G4int newContent);
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inline void SetAntiQuarkContent(G4int flavor, G4int newContent);
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inline void SetPDGLifeTime(G4double newLifeTime);
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// Prints information of data members
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void Print() const;
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// Control flag for output message
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// 0: Silent
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// 1: Warning message
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// 2: More
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inline void SetVerboseLevel(G4int value);
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inline G4int GetVerboseLevel() const;
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private:
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// The name of the particle.
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G4String theParticleName = "";
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// The mass of the particle, in units of equivalent energy.
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G4double thePDGMass = 0.0;
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// The decay width of the particle, usually the width of a
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// Breit-Wigner function, assuming that you are near the
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// mass center anyway (in units of equivalent energy).
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G4double thePDGWidth = 0.0;
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// The charge of the particle (in units of Coulomb).
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G4double thePDGCharge = 0.0;
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// ---- following members are quantum number
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// i.e. discrete numbers can be allowed
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// So, you can define only by using integer in constructor
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// The total spin of the particle, also often denoted as
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// capital J, in units of 1/2.
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G4int thePDGiSpin = 0;
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// The parity quantum number, in units of 1. If the parity
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// is not defined for this particle, we will set this to 0.
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G4int thePDGiParity = 0;
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// This charge conjugation quantum number in units of 1.
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G4int thePDGiConjugation = 0;
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// The value of the G-parity quantum number.
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G4int thePDGiGParity = 0;
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// The isospin and its 3rd-component in units of 1/2.
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G4int thePDGiIsospin = 0;
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G4int thePDGiIsospin3 = 0;
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// The magnetic moment.
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G4double thePDGMagneticMoment = 0.0;
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// The lepton quantum number.
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G4int theLeptonNumber = 0;
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// The baryon quantum number.
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G4int theBaryonNumber = 0;
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// The Particle Data Group integer identifier of this particle
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G4int thePDGEncoding = 0;
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// The Particle Data Group integer identifier of the anti-particle
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G4int theAntiPDGEncoding = 0;
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// The Particle Life Time
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G4double thePDGLifeTime = -1.0;
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enum
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{
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NumberOfQuarkFlavor = 6
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};
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// The number of quark (minus Sign means anti-quark) contents
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G4int theQuarkContent[NumberOfQuarkFlavor];
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G4int theAntiQuarkContent[NumberOfQuarkFlavor];
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private:
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G4bool fPDGMassModified = false;
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G4bool fPDGWidthModified = false;
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G4bool fPDGChargeModified = false;
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G4bool fPDGiSpinModified = false;
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G4bool fPDGiParityModified = false;
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G4bool fPDGiConjugationModified = false;
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G4bool fPDGiGParityModified = false;
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G4bool fPDGiIsospinModified = false;
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G4bool fPDGiIsospin3Modified = false;
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G4bool fPDGIsospinModified = false;
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G4bool fPDGIsospin3Modified = false;
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G4bool fPDGMagneticMomentModified = false;
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G4bool fLeptonNumberModified = false;
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G4bool fBaryonNumberModified = false;
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G4bool fPDGEncodingModified = false;
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G4bool fAntiPDGEncodingModified = false;
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G4bool fQuarkContentModified = false;
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G4bool fAntiQuarkContentModified = false;
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G4bool fPDGLifeTimeModified = false;
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G4int verboseLevel = 1;
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};
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#include "G4ParticlePropertyData.icc"
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#endif
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