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geant4/examples/extended/analysis/AnaEx03/shared/include/DetectorConstruction.hh
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2016-12-09 12:35:28 +01:00

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//
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//
/// \file DetectorConstruction.hh
/// \brief Definition of the DetectorConstruction class
//
//
// $Id: DetectorConstruction.hh 98243 2016-07-04 16:58:38Z gcosmo $
//
//
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#ifndef DetectorConstruction_h
#define DetectorConstruction_h 1
#include "G4VUserDetectorConstruction.hh"
#include "globals.hh"
class G4Box;
class G4LogicalVolume;
class G4VPhysicalVolume;
class G4Material;
class DetectorMessenger;
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class DetectorConstruction : public G4VUserDetectorConstruction
{
public:
DetectorConstruction();
virtual ~DetectorConstruction();
public:
void SetAbsorberMaterial (G4String);
void SetAbsorberThickness(G4double);
void SetGapMaterial (G4String);
void SetGapThickness(G4double);
void SetCalorSizeYZ(G4double);
void SetNbOfLayers (G4int);
virtual G4VPhysicalVolume* Construct();
public:
void PrintCalorParameters();
G4double GetWorldSizeX() {return fWorldSizeX;};
G4double GetWorldSizeYZ() {return fWorldSizeYZ;};
G4double GetCalorThickness() {return fCalorThickness;};
G4double GetCalorSizeYZ() {return fCalorSizeYZ;};
G4int GetNbOfLayers() {return fNbOfLayers;};
G4Material* GetAbsorberMaterial() {return fAbsorberMaterial;};
G4double GetAbsorberThickness() {return fAbsorberThickness;};
G4Material* GetGapMaterial() {return fGapMaterial;};
G4double GetGapThickness() {return fGapThickness;};
const G4VPhysicalVolume* GetphysiWorld() {return fPhysiWorld;};
const G4VPhysicalVolume* GetAbsorber() {return fPhysiAbsorber;};
const G4VPhysicalVolume* GetGap() {return fPhysiGap;};
private:
G4Material* fAbsorberMaterial;
G4double fAbsorberThickness;
G4Material* fGapMaterial;
G4double fGapThickness;
G4int fNbOfLayers;
G4double fLayerThickness;
G4double fCalorSizeYZ;
G4double fCalorThickness;
G4Material* fDefaultMaterial;
G4double fWorldSizeYZ;
G4double fWorldSizeX;
G4Box* fSolidWorld; //pointer to the solid World
G4LogicalVolume* fLogicWorld; //pointer to the logical World
G4VPhysicalVolume* fPhysiWorld; //pointer to the physical World
G4Box* fSolidCalor; //pointer to the solid Calor
G4LogicalVolume* fLogicCalor; //pointer to the logical Calor
G4VPhysicalVolume* fPhysiCalor; //pointer to the physical Calor
G4Box* fSolidLayer; //pointer to the solid Layer
G4LogicalVolume* fLogicLayer; //pointer to the logical Layer
G4VPhysicalVolume* fPhysiLayer; //pointer to the physical Layer
G4Box* fSolidAbsorber; //pointer to the solid Absorber
G4LogicalVolume* fLogicAbsorber; //pointer to the logical Absorber
G4VPhysicalVolume* fPhysiAbsorber; //pointer to the physical Absorber
G4Box* fSolidGap; //pointer to the solid Gap
G4LogicalVolume* fLogicGap; //pointer to the logical Gap
G4VPhysicalVolume* fPhysiGap; //pointer to the physical Gap
DetectorMessenger* fDetectorMessenger; //pointer to the Messenger
private:
void DefineMaterials();
void ComputeCalorParameters();
G4VPhysicalVolume* ConstructCalorimeter();
};
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inline void DetectorConstruction::ComputeCalorParameters()
{
// Compute derived parameters of the calorimeter
fLayerThickness = fAbsorberThickness + fGapThickness;
fCalorThickness = fNbOfLayers*fLayerThickness;
fWorldSizeX = 1.2*fCalorThickness; fWorldSizeYZ = 1.2*fCalorSizeYZ;
}
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#endif