281 lines
8.4 KiB
C++
281 lines
8.4 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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// GEANT4 Class header file
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//
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// File name: G4OpticalParameters
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//
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// Author: Daren Sawkey based on G4EmParameters
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//
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// Creation date: 14.07.2020
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//
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// Modifications:
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//
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//
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// Class Description:
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//
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// A utility static class, responsable for keeping parameters
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// for all optical physics processes and models.
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//
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// It is initialized by the master thread but can be updated
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// at any moment. Parameters may be used in run time or at
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// initialisation
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//
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// -------------------------------------------------------------------
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//
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#ifndef G4OpticalParameters_h
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#define G4OpticalParameters_h 1
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#include "globals.hh"
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#include "G4ios.hh"
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#include "G4ThreeVector.hh"
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#include "G4Threading.hh"
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#include <vector>
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#include <memory>
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class G4OpticalParametersMessenger;
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class G4StateManager;
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enum G4OpticalProcessIndex
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{
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kCerenkov, ///< Cerenkov process index
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kScintillation, ///< Scintillation process index
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kAbsorption, ///< Absorption process index
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kRayleigh, ///< Rayleigh scattering process index
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kMieHG, ///< Mie scattering process index
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kBoundary, ///< Boundary process index
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kWLS, ///< Wave Length Shifting process index
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kWLS2, ///< Second Wave Length Shifting process index
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kNoProcess ///< Number of processes, no selected process
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};
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enum G4XRayModelType
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{
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kCerenkovDefault = 0, // default model
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kScintillationDefault, // default model
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};
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/// Return the name for a given optical process index
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G4String G4OpticalProcessName(G4int);
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inline G4String G4OpticalProcessName(G4int processNumber)
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{
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switch(processNumber)
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{
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case kCerenkov:
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return "Cerenkov";
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case kScintillation:
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return "Scintillation";
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case kAbsorption:
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return "OpAbsorption";
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case kRayleigh:
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return "OpRayleigh";
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case kMieHG:
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return "OpMieHG";
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case kBoundary:
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return "OpBoundary";
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case kWLS:
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return "OpWLS";
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case kWLS2:
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return "OpWLS2";
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default:
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return "NoProcess";
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}
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}
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class G4OpticalParameters
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{
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public:
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static G4OpticalParameters* Instance();
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~G4OpticalParameters();
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void SetDefaults();
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// printing
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void StreamInfo(std::ostream& os) const;
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void Dump() const;
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friend std::ostream& operator<<(std::ostream& os, const G4OpticalParameters&);
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void SetVerboseLevel(G4int);
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G4int GetVerboseLevel() const;
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void SetProcessActivation(const G4String&, G4bool);
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G4bool GetProcessActivation(const G4String&) const;
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// Cerenkov
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void SetCerenkovMaxPhotonsPerStep(G4int);
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G4int GetCerenkovMaxPhotonsPerStep() const;
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void SetCerenkovVerboseLevel(G4int);
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G4int GetCerenkovVerboseLevel() const;
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void SetCerenkovMaxBetaChange(G4double);
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G4double GetCerenkovMaxBetaChange() const;
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void SetCerenkovTrackSecondariesFirst(G4bool);
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G4bool GetCerenkovTrackSecondariesFirst() const;
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void SetCerenkovStackPhotons(G4bool);
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G4bool GetCerenkovStackPhotons() const;
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void SetCerenkovOffloadPhotons(G4bool);
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G4bool GetCerenkovOffloadPhotons() const;
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void EnableCerenkovGeneral(G4bool);
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G4bool CerenkovGeneral() const;
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// Scintillation
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void SetScintByParticleType(G4bool);
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G4bool GetScintByParticleType() const;
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void SetScintTrackInfo(G4bool);
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G4bool GetScintTrackInfo() const;
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void SetScintTrackSecondariesFirst(G4bool);
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G4bool GetScintTrackSecondariesFirst() const;
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void SetScintFiniteRiseTime(G4bool);
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G4bool GetScintFiniteRiseTime() const;
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void SetScintStackPhotons(G4bool);
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G4bool GetScintStackPhotons() const;
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void SetScintVerboseLevel(G4int);
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G4int GetScintVerboseLevel() const;
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void SetScintOffloadPhotons(G4bool);
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G4bool GetScintOffloadPhotons() const;
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// WLS
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void SetWLSTimeProfile(const G4String&);
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G4String GetWLSTimeProfile() const;
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void SetWLSVerboseLevel(G4int);
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G4int GetWLSVerboseLevel() const;
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// WLS2
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void SetWLS2TimeProfile(const G4String&);
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G4String GetWLS2TimeProfile() const;
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void SetWLS2VerboseLevel(G4int);
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G4int GetWLS2VerboseLevel() const;
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// boundary
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void SetBoundaryVerboseLevel(G4int);
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G4int GetBoundaryVerboseLevel() const;
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void SetBoundaryInvokeSD(G4bool);
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G4bool GetBoundaryInvokeSD() const;
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// absorption
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void SetAbsorptionVerboseLevel(G4int);
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G4int GetAbsorptionVerboseLevel() const;
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// rayleigh
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void SetRayleighVerboseLevel(G4int);
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G4int GetRayleighVerboseLevel() const;
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// mie
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void SetMieVerboseLevel(G4int);
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G4int GetMieVerboseLevel() const;
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// active volumes
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const std::vector<std::pair<G4XRayModelType, const G4String> >&
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ActiveVolumes() const;
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void SetActiveVolume(const G4String& name, G4XRayModelType type);
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private:
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G4OpticalParameters();
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void Initialise();
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G4bool IsLocked() const;
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void PrintWarning(G4ExceptionDescription& ed) const;
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static G4OpticalParameters* theInstance;
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G4OpticalParametersMessenger* theMessenger;
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G4StateManager* fStateManager;
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G4int verboseLevel;
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// Whether to activate each process
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std::map<G4String, G4bool> processActivation;
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// cerenkov/////////////////
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G4bool cerenkovStackPhotons;
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G4bool cerenkovTrackSecondariesFirst;
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G4bool cerenkovOffloadPhotons;
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G4bool cerenkovGeneral;
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G4int cerenkovVerboseLevel;
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G4int cerenkovMaxPhotons;
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G4double cerenkovMaxBetaChange;
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// scintillation /////////////////
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/// option to set a finite rise-time; Note: the G4Scintillation
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/// process expects the user to have set the constant material
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/// property SCINTILLATIONRISETIME{1,2,3}
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G4bool scintFiniteRiseTime;
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/// option to allow for the light yield to be a function of
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/// particle type and deposited energy in case of non-linear
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/// light emission in scintillators
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G4bool scintByParticleType;
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/// option to allow for G4ScintillationTrackInformation
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/// to be attached to a scintillation photon's track
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G4bool scintTrackInfo;
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/// option to allow stacking of secondary scintillation photons
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G4bool scintStackPhotons;
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/// option to enable offloading of secondary scintillation photons
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G4bool scintOffloadPhotons;
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G4int scintVerboseLevel;
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G4bool scintTrackSecondariesFirst;
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///////////////// WLS
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G4String wlsTimeProfileName;
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G4int wlsVerboseLevel;
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///////////////// WLS2
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G4String wls2TimeProfileName;
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G4int wls2VerboseLevel;
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//////////////// absorption
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G4int absorptionVerboseLevel;
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//////////////// rayleigh
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G4int rayleighVerboseLevel;
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//////////////// mie
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G4int mieVerboseLevel;
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//////////////// boundary
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/// G4OpBoundaryProcess to call InvokeSD method
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G4bool boundaryInvokeSD;
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G4int boundaryVerboseLevel;
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//////////////// active volumes
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std::vector<std::pair<G4XRayModelType, const G4String> > xrayVolumes;
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#ifdef G4MULTITHREADED
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static G4Mutex opticalParametersMutex;
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#endif
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};
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//....oooOO0OOooo........oooOO0OOooo........oooOO0OOooo........oooOO0OOooo......
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#endif
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