354 lines
12 KiB
C++
354 lines
12 KiB
C++
//
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// ********************************************************************
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// * License and Disclaimer *
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// * *
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// * The Geant4 software is copyright of the Copyright Holders of *
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// * the Geant4 Collaboration. It is provided under the terms and *
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// * conditions of the Geant4 Software License, included in the file *
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// * LICENSE and available at http://cern.ch/geant4/license . These *
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// * include a list of copyright holders. *
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// * *
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// * Neither the authors of this software system, nor their employing *
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// * institutes,nor the agencies providing financial support for this *
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// * work make any representation or warranty, express or implied, *
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// * regarding this software system or assume any liability for its *
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// * use. Please see the license in the file LICENSE and URL above *
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// * for the full disclaimer and the limitation of liability. *
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// * *
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// * This code implementation is the result of the scientific and *
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// * technical work of the GEANT4 collaboration. *
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// * By using, copying, modifying or distributing the software (or *
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// * any work based on the software) you agree to acknowledge its *
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// * use in resulting scientific publications, and indicate your *
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// * acceptance of all terms of the Geant4 Software license. *
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// ********************************************************************
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//
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//
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//
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//
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//---------------------------------------------------------------
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//
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// G4Track.hh
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//
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// Class Description:
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// This class represents the partilce under tracking.
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// It includes information related to tracking for examples:
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// 1) current position/time of the particle,
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// 2) static particle information,
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// 3) the pointer to the physical volume where currently
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// the particle exists
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//
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//---------------------------------------------------------------
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// Modification for G4TouchableHandle 22 Oct. 2001 R.Chytracek
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// Add MaterialCutCouple 08 Oct. 2002 H.Kurashige
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// Add SetVelocityTableProperties 02 Apr. 2011 H.Kurashige
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// Add fVelocity and Set/GetVelocity 29 Apr. 2011 H.Kurashige
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// Use G4VelocityTable 17 AUg. 2011 H.Kurashige
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#ifndef G4Track_h
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#define G4Track_h 1
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#include <cmath> // Include from 'system'
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#include "globals.hh" // Include from 'global'
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#include "trkdefs.hh" // Include DLL defs...
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#include "G4ThreeVector.hh" // Include from 'geometry'
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#include "G4LogicalVolume.hh" // Include from 'geometry'
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#include "G4VPhysicalVolume.hh" // Include from 'geometry'
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#include "G4Allocator.hh" // Include from 'particle+matter'
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#include "G4DynamicParticle.hh" // Include from 'particle+matter'
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#include "G4TrackStatus.hh" // Include from 'tracking'
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#include "G4TouchableHandle.hh" // Include from 'geometry'
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#include "G4VUserTrackInformation.hh"
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#include "G4PhysicsModelCatalog.hh"
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#include "G4Material.hh"
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class G4Step; // Forward declaration
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class G4MaterialCutsCouple;
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class G4VelocityTable;
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class G4VAuxiliaryTrackInformation;
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#include <map>
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//////////////
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class G4Track
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//////////////
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{
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//--------
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public: // With description
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// Constructor
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G4Track();
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G4Track(G4DynamicParticle* apValueDynamicParticle,
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G4double aValueTime,
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const G4ThreeVector& aValuePosition);
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// aValueTime is a global time
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G4Track(const G4Track&);
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// Copy Constructor copys members other than tracking information
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private:
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// Hide assignment operator as private
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G4Track& operator=(const G4Track&);
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//--------
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public: // With description
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// Destrcutor
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~G4Track();
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// Operators
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inline void *operator new(size_t);
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// Override "new" for "G4Allocator".
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inline void operator delete(void *aTrack);
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// Override "delete" for "G4Allocator".
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G4bool operator==( const G4Track& );
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//--------
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public: // With description
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// Copy information of the track (w/o tracking information)
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void CopyTrackInfo(const G4Track&);
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// Get/Set functions
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// track ID
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G4int GetTrackID() const;
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void SetTrackID(const G4int aValue);
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G4int GetParentID() const;
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void SetParentID(const G4int aValue);
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// dynamic particle
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const G4DynamicParticle* GetDynamicParticle() const;
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// particle definition
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const G4ParticleDefinition* GetParticleDefinition() const;
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// following method of GetDefinition remains
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// because of backward compatiblity. It will be removed in future
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G4ParticleDefinition* GetDefinition() const;
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// position, time
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const G4ThreeVector& GetPosition() const;
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void SetPosition(const G4ThreeVector& aValue);
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G4double GetGlobalTime() const;
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void SetGlobalTime(const G4double aValue);
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// Time since the event in which the track belongs is created.
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G4double GetLocalTime() const;
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void SetLocalTime(const G4double aValue);
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// Time since the current track is created.
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G4double GetProperTime() const;
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void SetProperTime(const G4double aValue);
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// Proper time of the current track
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// volume, material, touchable
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G4VPhysicalVolume* GetVolume() const;
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G4VPhysicalVolume* GetNextVolume() const;
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G4Material* GetMaterial() const;
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G4Material* GetNextMaterial() const;
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const G4MaterialCutsCouple* GetMaterialCutsCouple() const;
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const G4MaterialCutsCouple* GetNextMaterialCutsCouple() const;
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const G4VTouchable* GetTouchable() const;
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const G4TouchableHandle& GetTouchableHandle() const;
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void SetTouchableHandle( const G4TouchableHandle& apValue);
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const G4VTouchable* GetNextTouchable() const;
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const G4TouchableHandle& GetNextTouchableHandle() const;
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void SetNextTouchableHandle( const G4TouchableHandle& apValue);
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const G4VTouchable* GetOriginTouchable() const;
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const G4TouchableHandle& GetOriginTouchableHandle() const;
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void SetOriginTouchableHandle( const G4TouchableHandle& apValue);
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// energy
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G4double GetKineticEnergy() const;
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void SetKineticEnergy(const G4double aValue);
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G4double GetTotalEnergy() const;
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// moemtnum
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const G4ThreeVector& GetMomentumDirection() const;
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void SetMomentumDirection(const G4ThreeVector& aValue);
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G4ThreeVector GetMomentum() const;
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// velocity
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G4double GetVelocity() const;
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void SetVelocity(G4double val);
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G4double CalculateVelocity() const;
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G4double CalculateVelocityForOpticalPhoton() const;
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G4bool UseGivenVelocity() const;
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void UseGivenVelocity(G4bool val);
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// polarization
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const G4ThreeVector& GetPolarization() const;
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void SetPolarization(const G4ThreeVector& aValue);
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// track status, flags for tracking
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G4TrackStatus GetTrackStatus() const;
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void SetTrackStatus(const G4TrackStatus aTrackStatus);
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G4bool IsBelowThreshold() const;
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void SetBelowThresholdFlag(G4bool value = true);
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// The flag of "BelowThreshold" is set to true
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// if this track energy is below threshold energy
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// in this material determined by the range cut value
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G4bool IsGoodForTracking() const;
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void SetGoodForTrackingFlag(G4bool value = true);
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// The flag of "GoodForTracking" is set by processes
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// if this track should be tracked
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// even if the energy is below threshold
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// track length
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G4double GetTrackLength() const;
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void AddTrackLength(const G4double aValue);
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// Accumulated the track length
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// step information
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const G4Step* GetStep() const;
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void SetStep(const G4Step* aValue);
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G4int GetCurrentStepNumber() const;
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void IncrementCurrentStepNumber();
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G4double GetStepLength() const;
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void SetStepLength(G4double value);
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// Before the end of the AlongStepDoIt loop,StepLength keeps
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// the initial value which is determined by the shortest geometrical Step
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// proposed by a physics process. After finishing the AlongStepDoIt,
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// it will be set equal to 'StepLength' in G4Step.
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// vertex (,where this track was created) information
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const G4ThreeVector& GetVertexPosition() const;
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void SetVertexPosition(const G4ThreeVector& aValue);
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const G4ThreeVector& GetVertexMomentumDirection() const;
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void SetVertexMomentumDirection(const G4ThreeVector& aValue);
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G4double GetVertexKineticEnergy() const;
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void SetVertexKineticEnergy(const G4double aValue);
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const G4LogicalVolume* GetLogicalVolumeAtVertex() const;
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void SetLogicalVolumeAtVertex(const G4LogicalVolume* );
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const G4VProcess* GetCreatorProcess() const;
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void SetCreatorProcess(const G4VProcess* aValue);
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inline void SetCreatorModelIndex(G4int idx);
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inline const G4String& GetCreatorModelName() const;
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inline G4int GetCreatorModelID() const;
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// track weight
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// These are methods for manipulating a weight for this track.
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G4double GetWeight() const;
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void SetWeight(G4double aValue);
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// User information
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G4VUserTrackInformation* GetUserInformation() const;
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void SetUserInformation(G4VUserTrackInformation* aValue) const;
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// Velocity table
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static void SetVelocityTableProperties(G4double t_max, G4double t_min, G4int nbin);
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static G4double GetMaxTOfVelocityTable();
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static G4double GetMinTOfVelocityTable();
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static G4int GetNbinOfVelocityTable();
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//---------
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private:
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//---------
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// Member data
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G4int fCurrentStepNumber; // Total steps number up to now
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G4ThreeVector fPosition; // Current positon
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G4double fGlobalTime; // Time since the event is created
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G4double fLocalTime; // Time since the track is created
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G4double fTrackLength; // Accumulated track length
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G4int fParentID;
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G4int fTrackID;
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G4double fVelocity;
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G4TouchableHandle fpTouchable;
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G4TouchableHandle fpNextTouchable;
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G4TouchableHandle fpOriginTouchable;
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// Touchable Handle
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G4DynamicParticle* fpDynamicParticle;
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G4TrackStatus fTrackStatus;
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G4bool fBelowThreshold;
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// This flag is set to true if this track energy is below
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// threshold energy in this material determined by the range cut value
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G4bool fGoodForTracking;
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// This flag is set by processes if this track should be tracked
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// even if the energy is below threshold
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G4double fStepLength;
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// Before the end of the AlongStepDoIt loop, this keeps the initial
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// Step length which is determined by the shortest geometrical Step
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// proposed by a physics process. After finishing the AlongStepDoIt,
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// this will be set equal to 'StepLength' in G4Step.
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G4double fWeight;
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// This is a weight for this track
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const G4Step* fpStep;
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G4ThreeVector fVtxPosition; // (x,y,z) of the vertex
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G4ThreeVector fVtxMomentumDirection; // Momentum direction at the vertex
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G4double fVtxKineticEnergy; // Kinetic energy at the vertex
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const G4LogicalVolume* fpLVAtVertex; //Logical Volume at the vertex
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const G4VProcess* fpCreatorProcess; // Process which created the track
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G4int fCreatorModelIndex; // Index of the physics model which created the track
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mutable G4VUserTrackInformation* fpUserInformation;
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// cached values for CalculateVelocity
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mutable G4Material* prev_mat;
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mutable G4MaterialPropertyVector* groupvel;
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mutable G4double prev_velocity;
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mutable G4double prev_momentum;
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G4bool is_OpticalPhoton;
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static G4VelocityTable*& velTable();
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G4bool useGivenVelocity;
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// do not calclulate velocity and just use current fVelocity
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// if this flag is set
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mutable std::map<G4int,G4VAuxiliaryTrackInformation*>* fpAuxiliaryTrackInformationMap;
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//--------
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public:
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//--------
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void SetAuxiliaryTrackInformation(G4int idx, G4VAuxiliaryTrackInformation* info) const;
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G4VAuxiliaryTrackInformation* GetAuxiliaryTrackInformation(G4int idx) const;
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std::map<G4int,G4VAuxiliaryTrackInformation*>* GetAuxiliaryTrackInformationMap() const
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{ return fpAuxiliaryTrackInformationMap; }
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void RemoveAuxiliaryTrackInformation(G4int idx);
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void RemoveAuxiliaryTrackInformation(G4String& name);
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// Note: G4VAuxiliaryTrackInformation object itself is *NOT* deleted
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//--------
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private:
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//--------
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void ClearAuxiliaryTrackInformation();
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};
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#include "G4Track.icc"
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#endif
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