Geant4 Cross Reference |
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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 // G4ParticlePropertyData inline methods imple 26 // G4ParticlePropertyData inline methods implementation 27 // 27 // 28 // Author: H.Kurashige, 9 June 2003 28 // Author: H.Kurashige, 9 June 2003 29 // ------------------------------------------- 29 // -------------------------------------------------------------------- 30 30 31 inline void G4ParticlePropertyData::SetVerbose 31 inline void G4ParticlePropertyData::SetVerboseLevel(G4int value) 32 { 32 { 33 verboseLevel = value; 33 verboseLevel = value; 34 } 34 } 35 35 36 inline G4int G4ParticlePropertyData::GetVerbos 36 inline G4int G4ParticlePropertyData::GetVerboseLevel() const 37 { 37 { 38 return verboseLevel; 38 return verboseLevel; 39 } 39 } 40 40 41 inline G4int G4ParticlePropertyData::GetQuarkC 41 inline G4int G4ParticlePropertyData::GetQuarkContent(G4int flavor) const 42 { 42 { 43 if ((flavor > 0) && (flavor <= NumberOfQuark 43 if ((flavor > 0) && (flavor <= NumberOfQuarkFlavor)) { 44 return theQuarkContent[flavor - 1]; 44 return theQuarkContent[flavor - 1]; 45 } 45 } 46 46 47 return 0; 47 return 0; 48 } 48 } 49 49 50 inline G4int G4ParticlePropertyData::GetAntiQu 50 inline G4int G4ParticlePropertyData::GetAntiQuarkContent(G4int flavor) const 51 { 51 { 52 if ((flavor > 0) && (flavor < NumberOfQuarkF 52 if ((flavor > 0) && (flavor < NumberOfQuarkFlavor)) { 53 return theAntiQuarkContent[flavor - 1]; 53 return theAntiQuarkContent[flavor - 1]; 54 } 54 } 55 55 56 return 0; 56 return 0; 57 } 57 } 58 58 59 inline void G4ParticlePropertyData::SetPDGEnco 59 inline void G4ParticlePropertyData::SetPDGEncoding(G4int aEncoding) 60 { 60 { 61 thePDGEncoding = aEncoding; 61 thePDGEncoding = aEncoding; 62 fPDGEncodingModified = true; 62 fPDGEncodingModified = true; 63 theAntiPDGEncoding = -1 * aEncoding; 63 theAntiPDGEncoding = -1 * aEncoding; 64 fAntiPDGEncodingModified = true; 64 fAntiPDGEncodingModified = true; 65 } 65 } 66 66 67 inline void G4ParticlePropertyData::SetAntiPDG 67 inline void G4ParticlePropertyData::SetAntiPDGEncoding(G4int aEncoding) 68 { 68 { 69 theAntiPDGEncoding = aEncoding; 69 theAntiPDGEncoding = aEncoding; 70 fAntiPDGEncodingModified = true; 70 fAntiPDGEncodingModified = true; 71 } 71 } 72 72 73 inline void G4ParticlePropertyData::SetPDGMass 73 inline void G4ParticlePropertyData::SetPDGMass(G4double newMass) 74 { 74 { 75 thePDGMass = newMass; 75 thePDGMass = newMass; 76 fPDGMassModified = true; 76 fPDGMassModified = true; 77 } 77 } 78 78 79 inline void G4ParticlePropertyData::SetPDGWidt 79 inline void G4ParticlePropertyData::SetPDGWidth(G4double newWidth) 80 { 80 { 81 thePDGWidth = newWidth; 81 thePDGWidth = newWidth; 82 fPDGWidthModified = true; 82 fPDGWidthModified = true; 83 } 83 } 84 84 85 inline void G4ParticlePropertyData::SetPDGChar 85 inline void G4ParticlePropertyData::SetPDGCharge(G4double newCharge) 86 { 86 { 87 thePDGCharge = newCharge; 87 thePDGCharge = newCharge; 88 fPDGChargeModified = true; 88 fPDGChargeModified = true; 89 } 89 } 90 90 91 inline void G4ParticlePropertyData::SetPDGiSpi 91 inline void G4ParticlePropertyData::SetPDGiSpin(G4int newSpin) 92 { 92 { 93 thePDGiSpin = newSpin; 93 thePDGiSpin = newSpin; 94 fPDGiSpinModified = true; 94 fPDGiSpinModified = true; 95 } 95 } 96 96 97 inline void G4ParticlePropertyData::SetPDGiPar 97 inline void G4ParticlePropertyData::SetPDGiParity(G4int newParity) 98 { 98 { 99 thePDGiParity = newParity; 99 thePDGiParity = newParity; 100 fPDGiParityModified = true; 100 fPDGiParityModified = true; 101 } 101 } 102 102 103 inline void G4ParticlePropertyData::SetPDGiCon 103 inline void G4ParticlePropertyData::SetPDGiConjugation(G4int newConjugation) 104 { 104 { 105 thePDGiConjugation = newConjugation; 105 thePDGiConjugation = newConjugation; 106 fPDGiConjugationModified = true; 106 fPDGiConjugationModified = true; 107 } 107 } 108 108 109 inline void G4ParticlePropertyData::SetPDGiIso 109 inline void G4ParticlePropertyData::SetPDGiIsospin(G4int newIsospin) 110 { 110 { 111 thePDGiIsospin = newIsospin; 111 thePDGiIsospin = newIsospin; 112 fPDGiIsospinModified = true; 112 fPDGiIsospinModified = true; 113 } 113 } 114 114 115 inline void G4ParticlePropertyData::SetPDGiIso 115 inline void G4ParticlePropertyData::SetPDGiIsospin3(G4int newIsospin3) 116 { 116 { 117 thePDGiIsospin3 = newIsospin3; 117 thePDGiIsospin3 = newIsospin3; 118 fPDGiIsospin3Modified = true; 118 fPDGiIsospin3Modified = true; 119 } 119 } 120 120 121 inline void G4ParticlePropertyData::SetPDGMagn 121 inline void G4ParticlePropertyData::SetPDGMagneticMoment(G4double mageticMoment) 122 { 122 { 123 thePDGMagneticMoment = mageticMoment; 123 thePDGMagneticMoment = mageticMoment; 124 fPDGMagneticMomentModified = true; 124 fPDGMagneticMomentModified = true; 125 } 125 } 126 126 127 inline void G4ParticlePropertyData::SetPDGiGPa 127 inline void G4ParticlePropertyData::SetPDGiGParity(G4int newGParity) 128 { 128 { 129 thePDGiGParity = newGParity; 129 thePDGiGParity = newGParity; 130 fPDGiGParityModified = true; 130 fPDGiGParityModified = true; 131 } 131 } 132 132 133 inline void G4ParticlePropertyData::SetLeptonN 133 inline void G4ParticlePropertyData::SetLeptonNumber(G4int newLeptonNumber) 134 { 134 { 135 theLeptonNumber = newLeptonNumber; 135 theLeptonNumber = newLeptonNumber; 136 fLeptonNumberModified = true; 136 fLeptonNumberModified = true; 137 } 137 } 138 138 139 inline void G4ParticlePropertyData::SetBaryonN 139 inline void G4ParticlePropertyData::SetBaryonNumber(G4int newBaryonNumber) 140 { 140 { 141 theBaryonNumber = newBaryonNumber; 141 theBaryonNumber = newBaryonNumber; 142 fBaryonNumberModified = true; 142 fBaryonNumberModified = true; 143 } 143 } 144 144 145 inline void G4ParticlePropertyData::SetQuarkCo 145 inline void G4ParticlePropertyData::SetQuarkContent(G4int flavor, G4int newContent) 146 { 146 { 147 if ((flavor > 0) && (flavor <= NumberOfQuark 147 if ((flavor > 0) && (flavor <= NumberOfQuarkFlavor)) { 148 theQuarkContent[flavor - 1] = newContent; 148 theQuarkContent[flavor - 1] = newContent; 149 fQuarkContentModified = true; 149 fQuarkContentModified = true; 150 } 150 } 151 } 151 } 152 152 153 inline void G4ParticlePropertyData::SetAntiQua 153 inline void G4ParticlePropertyData::SetAntiQuarkContent(G4int flavor, G4int newContent) 154 { 154 { 155 if ((flavor > 0) && (flavor <= NumberOfQuark 155 if ((flavor > 0) && (flavor <= NumberOfQuarkFlavor)) { 156 theAntiQuarkContent[flavor - 1] = newConte 156 theAntiQuarkContent[flavor - 1] = newContent; 157 fAntiQuarkContentModified = true; 157 fAntiQuarkContentModified = true; 158 } 158 } 159 } 159 } 160 160 161 inline void G4ParticlePropertyData::SetPDGLife 161 inline void G4ParticlePropertyData::SetPDGLifeTime(G4double newLifeTime) 162 { 162 { 163 thePDGLifeTime = newLifeTime; 163 thePDGLifeTime = newLifeTime; 164 fPDGLifeTimeModified = true; 164 fPDGLifeTimeModified = true; 165 } 165 } 166 166