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<< 45 G4QGSMSplitableHadron(const G4ReactionProduc << 46 G4QGSMSplitableHadron(const G4ReactionProduc << 47 G4QGSMSplitableHadron(const G4Nucleon & aNuc << 48 G4QGSMSplitableHadron(const G4Nucleon & aNuc << 49 << 50 virtual ~G4QGSMSplitableHadron(); << 51 << 52 private: << 53 const G4QGSMSplitableHadron & operator=(cons << 54 43 55 public: 44 public: 56 virtual void SplitUp(); << 45 G4QGSMSplitableHadron(); 57 virtual void SetFirstParton(G4int PDGcode); << 46 G4QGSMSplitableHadron(const G4ReactionProduct & aPrimary); 58 virtual void SetSecondParton(G4int PDGcode); << 47 G4QGSMSplitableHadron(const G4ReactionProduct & aPrimary, G4bool Direction); 59 virtual G4Parton * GetNextParton(); << 48 G4QGSMSplitableHadron(const G4Nucleon & aNucleon); 60 virtual G4Parton * GetNextAntiParton(); << 49 G4QGSMSplitableHadron(const G4Nucleon & aNucleon, G4bool Direction); >> 50 >> 51 virtual ~G4QGSMSplitableHadron(); >> 52 >> 53 const G4QGSMSplitableHadron & operator=(const G4QGSMSplitableHadron &right); >> 54 >> 55 virtual void SplitUp(); >> 56 virtual G4Parton * GetNextParton(); >> 57 virtual G4Parton * GetNextAntiParton(); 61 58 62 private: 59 private: 63 void InitParameters(); << 60 void InitParameters(); 64 void DiffractiveSplitUp(); << 61 void DiffractiveSplitUp(); 65 void SoftSplitUp(); << 62 void SoftSplitUp(); 66 << 63 G4ThreeVector GaussianPt(G4double widthSquare, G4double maxPtSquare); 67 G4ThreeVector GaussianPt(G4double widthSquar << 64 void GetValenceQuarkFlavors(const G4ParticleDefinition * aPart, 68 void GetValenceQuarkFlavors(const G4Particle << 65 G4Parton *& Parton1, G4Parton *& Parton2); 69 G4Parton *& Parton1, G4Parton *& Parton2 << 66 G4Parton * BuildSeaQuark(G4bool isAntiQuark, G4int aPDGCode, G4int nSeaPair); 70 G4Parton * BuildSeaQuark(G4bool isAntiQuark, << 67 G4double SampleX(G4double anXmin, G4int nSea, G4int theTotalSea, G4double aBeta); 71 G4double SampleX(G4double anXmin, G4int nSea << 68 72 << 73 private: 69 private: 74 // aggregated data << 70 // aggregated data 75 G4bool Direction; // FALSE is target. - cand << 71 G4bool Direction; // FALSE is target. - candidate for more detailed design. @@@@ HPW 76 << 77 std::deque<G4Parton *> Color; << 78 std::deque<G4Parton *> AntiColor; << 79 unsigned int iP; << 80 unsigned int iAP; << 81 72 >> 73 std::deque<G4Parton *> Color; >> 74 std::deque<G4Parton *> AntiColor; 82 private: 75 private: 83 // associated classes << 76 // associated classes 84 G4MesonSplitter theMesonSplitter; << 77 G4MesonSplitter theMesonSplitter; 85 G4BaryonSplitter theBaryonSplitter; << 78 G4BaryonSplitter theBaryonSplitter; 86 << 79 87 private: 80 private: 88 // model parameters << 81 // model parameters 89 G4double alpha; << 82 G4double alpha; 90 G4double beta; << 83 G4double beta; 91 G4double theMinPz; << 84 G4double theMinPz; 92 G4double StrangeSuppress; << 85 G4double StrangeSuppress; 93 G4double sigmaPt; << 86 G4double sigmaPt; 94 G4double widthOfPtSquare; << 87 G4double widthOfPtSquare; 95 G4double minTransverseMass; << 88 G4double minTransverseMass; 96 }; 89 }; 97 90 98 inline G4Parton* G4QGSMSplitableHadron::GetNex 91 inline G4Parton* G4QGSMSplitableHadron::GetNextParton() 99 { 92 { 100 if(Color.size()==0) return 0; << 93 if(Color.size()==0) return 0; 101 << 94 G4Parton * result = Color.back(); 102 G4Parton * result = Color.operator[](i << 95 Color.pop_back(); 103 iP++; if(iP == Color.size()) iP=0; << 96 return result; 104 return result; << 105 } 97 } 106 98 107 inline G4Parton* G4QGSMSplitableHadron::GetNex 99 inline G4Parton* G4QGSMSplitableHadron::GetNextAntiParton() 108 { 100 { 109 if(AntiColor.size() == 0) return 0; << 101 if(AntiColor.size() == 0) return 0; 110 << 102 G4Parton * result = AntiColor.front(); 111 G4Parton * result = AntiColor.operator << 103 AntiColor.pop_front(); 112 iAP++; if(iAP == AntiColor.size()) iAP << 104 return result; 113 return result; << 114 } 105 } 115 106 116 inline void G4QGSMSplitableHadron::SetFirstPar << 117 {} << 118 inline void G4QGSMSplitableHadron::SetSecondPa << 119 {} << 120 #endif 107 #endif >> 108 121 109 122 110