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geant4/source/processes/electromagnetic/dna/utils/include/G4VPhysChemIO.hh
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2017-06-30 10:49:55 +02:00

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C++

/*
* G4VPhysChemIO.hh
*
* Created on: 3 févr. 2017
* Author: matkara
*/
#ifndef G4VPHYSCHEMIO_HH_
#define G4VPHYSCHEMIO_HH_
#include <fstream>
#include "globals.hh"
#include "G4ThreeVector.hh"
class G4Track;
class G4VAnalysisManager;
class G4VPhysChemIO
{
public:
G4VPhysChemIO();
virtual ~G4VPhysChemIO();
virtual void InitializeMaster(){}
virtual void InitializeThread(){}
virtual void InitializeFile() = 0;
virtual void NewRun() = 0;
virtual void NewEvent() = 0;
/**
* When DNA physics model create a water molecule, you'll get a notification
* through this method.
* The ElectronicModification is a flag telling whether the molecule
* is ionized or excited, the electronic level is calculated by the
* model and the IncomingTrack is the track responsible for the creation
* of this molecule (electron, proton...)
*/
virtual void CreateWaterMolecule(G4int electronicModif,
G4int /*electronicLevel*/,
G4double energy,
const G4Track* /*theIncomingTrack*/) = 0;
/**
* Same idea as the previous method but for solvated electron.
* This method should be used by the physics model of the ElectronSolvatation
* process.
*/
virtual void CreateSolvatedElectron(const G4Track* /*theIncomingTrack*/,
G4ThreeVector* finalPosition = 0) = 0;
//============================================================================
// FILE OPERATIONS
//============================================================================
/**
* Tells the chemistry manager to write into a file
* the position and electronic state of the water molecule
* and the position thermalized or not of the solvated electron
*/
virtual void WriteInto(const G4String&, std::ios_base::openmode mode =
std::ios_base::out) = 0;
virtual void AddEmptyLineInOuputFile(){};
/**
* Close the file specified with WriteInto
*/
virtual void CloseFile() = 0;
};
#endif // G4PHYSCHEMIO_HH_