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52 lines
2.1 KiB
C++
52 lines
2.1 KiB
C++
#ifndef G4VEC_H
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#define G4VEC_H
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#include <cmath>
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class G4Vec {
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public:
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G4Vec();
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G4Vec(double px, double py, double pz, double E);
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virtual ~G4Vec();
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void SetVectorCartesian(double px, double py, double pz, double E);
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void SetVectorSpherical(double theta, double phi, double p, double E);
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inline double GetE() const {return m_data[3];};
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inline double GetPx() const {return m_data[0];};
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inline double GetPy() const {return m_data[1];};
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inline double GetPz() const {return m_data[2];};
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inline double GetP() const {return std::sqrt(m_data[0]*m_data[0] + m_data[1]*m_data[1] + m_data[2]*m_data[2]);};
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inline double GetPxy() const {return std::sqrt(m_data[0]*m_data[0] + m_data[1]*m_data[1]); };
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inline double GetTheta() const {return GetPxy() == 0.0 && GetPz() == 0.0 ? 0.0 : Atan2(GetPxy(), GetPz());};
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inline double GetPhi() const {
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double phi = Atan2(GetPy(), GetPx());
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if(phi<0) phi += 2.0*M_PI;
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return GetPx() == 0.0 && GetPy() == 0.0 ? 0.0 : phi;
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};
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inline double GetInvMass() const {return std::sqrt(GetE()*GetE() - GetP()*GetP());};
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inline double GetKE() const {return GetE() - GetInvMass();};
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inline const double* GetBoost() const {return &m_boost[0];};
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void ApplyBoost(const double* boost);
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//Only intended for use in looping access!
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inline const double operator[] (int index) const {return index>3 || index < 0 ? 0.0 : m_data[index];};
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inline G4Vec& operator=(const G4Vec& rhs) {SetVectorCartesian(rhs.GetPx(), rhs.GetPy(), rhs.GetPz(), rhs.GetE()); return *this;};
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inline G4Vec operator+(const G4Vec& rhs) const {return G4Vec(rhs.GetPx()+GetPx(), rhs.GetPy()+GetPy(), rhs.GetPz()+GetPz(), rhs.GetE()+GetE());};
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inline G4Vec operator-(const G4Vec& rhs) const {return G4Vec(rhs.GetPx()-GetPx(), rhs.GetPy()-GetPy(), rhs.GetPz()-GetPz(), rhs.GetE()-GetE());};
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double Dot(const G4Vec& rhs) const;
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G4Vec Cross(const G4Vec& rhs) const;
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private:
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void CalcBoostToCM();
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inline double Atan2(double y, double x) const {
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if(x != 0) return std::atan2(y, x);
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else if( y > 0 ) return M_PI/2.0;
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else if( y < 0 ) return -M_PI/2.0;
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else return 0.0;
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};
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double m_data[4];
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double m_boost[3];
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};
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#endif |