#ifndef ALIMUONTRACKEXTRAP_H #define ALIMUONTRACKEXTRAP_H /* Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. * * See cxx source for full Copyright notice */ /*$Id$*/ // Revision of includes 07/05/2004 /// \ingroup rec /// \class AliMUONTrackExtrap /// \brief Track parameters in ALICE dimuon spectrometer /// ////////////////////////////////////////////////////////////// /// Tools for track extrapolation in ALICE dimuon spectrometer ////////////////////////////////////////////////////////////// #include class AliMagF; class AliMUONTrackParam; class AliMUONTrackExtrap : public TObject { public: /// Constructor AliMUONTrackExtrap() : TObject(){}; /// Destructor virtual ~AliMUONTrackExtrap(){}; /// set field map static void SetField(const AliMagF* magField) {fgkField = magField;} static Double_t GetImpactParamFromBendingMomentum(Double_t bendingMomentum); static Double_t GetBendingMomentumFromImpactParam(Double_t impactParam); static void ExtrapToZ(AliMUONTrackParam *trackParam, Double_t Z); static void ExtrapToZCov(AliMUONTrackParam* trackParam, Double_t zEnd); static void ExtrapToStation(AliMUONTrackParam *trackParamIn, Int_t station, AliMUONTrackParam *trackParamOut); static void ExtrapToVertexUncorrected(AliMUONTrackParam* trackParam, Double_t zVtx); static void ExtrapToVertex(AliMUONTrackParam *trackParam, Double_t xVtx, Double_t yVtx, Double_t zVtx); static void AddMCSEffectInTrackParamCov(AliMUONTrackParam *param, Double_t dZ, Double_t x0); static void ExtrapOneStepRungekutta(Double_t charge, Double_t step, Double_t* vect, Double_t* vout); private: static const AliMagF* fgkField; //!< field map static const Bool_t fgkUseHelix; //!< Tell whether to use Helix or not (default is Runge-Kutta) static const Int_t fgkMaxStepNumber; //!< Maximum number of steps for track extrapolation static const Double_t fgkHelixStepLength; //!< Step lenght for track extrapolation (used in Helix) static const Double_t fgkRungeKuttaMaxResidue;//!< Maximal distance (in Z) to destination to stop the track extrapolation (used in Runge-Kutta) // Functions AliMUONTrackExtrap(const AliMUONTrackExtrap& trackExtrap); AliMUONTrackExtrap& operator=(const AliMUONTrackExtrap& trackExtrap); static void ExtrapToZHelix(AliMUONTrackParam *trackParam, Double_t Z); static void ExtrapToZRungekutta(AliMUONTrackParam *trackParam, Double_t Z); static void ConvertTrackParamForExtrap(AliMUONTrackParam* trackParam, Double_t forwardBackward, Double_t *v3); static void RecoverTrackParam(Double_t *v3, Double_t Charge, AliMUONTrackParam* trackParam); static void BransonCorrection(AliMUONTrackParam *trackParam, Double_t xVtx, Double_t yVtx, Double_t zVtx); static Double_t TotalMomentumEnergyLoss(Double_t thetaLimit, Double_t pTotal, Double_t theta); static void FieldCorrection(AliMUONTrackParam *trackParam, Double_t Z); static void ExtrapOneStepHelix(Double_t charge, Double_t step, Double_t *vect, Double_t *vout); static void ExtrapOneStepHelix3(Double_t field, Double_t step, Double_t *vect, Double_t *vout); static void GetField(Double_t *Position, Double_t *Field); ClassDef(AliMUONTrackExtrap, 0) // Tools for track extrapolation in ALICE dimuon spectrometer }; #endif