// This code implementation is the intellectual property of // the GEANT4 collaboration. // // By copying, distributing or modifying the Program (or any work // based on the Program) you indicate your acceptance of this statement, // and all its terms. // // $Id: G4PhysicsVector.hh,v 1.4 2000/11/20 17:26:46 gcosmo Exp $ // GEANT4 tag $Name: geant4-03-00 $ // // //--------------------------------------------------------------- // GEANT 4 class header file // // G4PhysicsVector.hh // // Class description: // // A physics vector which has values of energy-loss, cross-section, // and other physics values of a particle in matter in a given // range of the energy, momentum, etc. // This class serves as the base class for a vector having various // energy scale, for example like 'log', 'linear', 'free', etc. // History: // 02 Dec. 1995, G.Cosmo : Structure created based on object model // 03 Mar. 1996, K.Amako : Implemented the 1st version // 27 Apr. 1996, K.Amako : Cache mechanism added // 01 Jul. 1996, K.Amako : Now GetValue not virtual. // 21 Sep. 1996, K.Amako : Added [] and () operators. // //--------------------------------------------------------------- #ifndef G4PhysicsVector_h #define G4PhysicsVector_h 1 #include "globals.hh" #include "G4DataVector.hh" #include "g4rw/tpordvec.h" class G4PhysicsVector { public: // Constructor and destructor G4PhysicsVector(); virtual ~G4PhysicsVector(); // Public functions G4double GetValue(G4double theEnergy, G4bool& isOutRange); // Get the crosssection/energy-loss value corresponding to the // given energy. An appropriate interpolation is used to calculate // the value. // [Note] isOutRange is not used anymore. This argument is kept // for the compatibility reason. // Public operators G4int operator==(const G4PhysicsVector &right) const ; G4int operator!=(const G4PhysicsVector &right) const ; G4double operator[](const size_t binNumber) const ; // Returns simply the value in the bin specified by 'binNumber' // of the dataVector. The boundary check will be Done. If you // don't want this check, use the operator (). G4double operator()(const size_t binNumber) const ; // Returns simply the value in the bin specified by 'binNumber' // of the dataVector. The boundary check will not be Done. If // you want this check, use the operator []. // Public functions void PutValue(size_t binNumber, G4double theValue); // Put 'theValue' into the bin specified by 'binNumber'. // Take note that the 'binNumber' starts from '0'. // To fill the vector, you have beforehand to Construct a vector // by the constructor with Emin, Emax, Nbin. 'theValue' should // be the crosssection/energyloss value corresponding to the low // edge energy of the bin specified by 'binNumber'. You can get // the low edge energy value of a bin by GetLowEdgeEnergy(). virtual G4double GetLowEdgeEnergy(size_t binNumber) const; // Get the energy value at the low edge of the specified bin. // Take note that the 'binNumber' starts from '0'. // This value is defined when a physics vector is constructed // by a constructor of a derived class. Use this function // when you fill physis vector by PutValue(). size_t GetVectorLength() const; // Get the toal length (bin number) of the vector. G4bool IsFilledVectorExist() const; // Is non-empty physics vector already exist? void LinkPhysicsTable(G4RWTPtrOrderedVector& theTable); // Link the given G4PhysicsTable to the current G4PhyiscsVector. G4bool IsLinkedTableExist() const; // Has this physics vector an extended physics table? const G4RWTPtrOrderedVector* GetNextTable() const; // Returns the pointer to a physics table created for elements // or isotopes (when the cross-sesctions or energy-losses // depend explicitly on them). void PutComment(const G4String& theComment); // Put a comment to the G4PhysicsVector. This may help to check // whether your are accessing to the one you want. G4String GetComment() const; // Retrieve the comment of the G4PhysicsVector. protected: G4double edgeMin; // Lower edge value of the lowest bin G4double edgeMax; // Lower edge value of the highest bin size_t numberOfBin; G4double lastEnergy; // Cache the last input value G4double lastValue; // Cache the last output value size_t lastBin; // Cache the last bin location G4DataVector dataVector; // Vector to keep the crossection/energyloss G4DataVector binVector; // Vector to keep the low edge value of bin G4RWTPtrOrderedVector* ptrNextTable; // Link to the connected physics table G4double LinearInterpolation(G4double theEnergy, size_t theLocBin); // Linear interpolation function virtual size_t FindBinLocation(G4double theEnergy) const=0; // Find the bin# in which theEnergy belongs - pure virtual function private: G4PhysicsVector(const G4PhysicsVector&); G4PhysicsVector& operator=(const G4PhysicsVector&); // Private copy constructor and assignment operator. private: G4String comment; }; #include "G4PhysicsVector.icc" #endif