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geant4/examples/advanced/microelec_SEY/include/DetectorConstruction.hh
2025-12-05 08:54:02 +01:00

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//
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/// \file electromagnetic/TestEm14/include/DetectorConstruction.hh
/// \brief Definition of the DetectorConstruction class
//
// $Id: DetectorConstruction.hh 84208 2014-10-10 14:44:50Z gcosmo $
//
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#ifndef DetectorConstruction_h
#define DetectorConstruction_h 1
#include "G4VUserDetectorConstruction.hh"
#include "globals.hh"
#include "G4ThreeVector.hh"
#include "G4Box.hh"
#include "MicroElecSdSey.hh"
#include "G4VPhysicalVolume.hh"
#include "G4LogicalVolume.hh"
#include "G4Sphere.hh"
#include "G4Material.hh"
#include "G4NistManager.hh"
#include "G4PVPlacement.hh"
#include "G4UserLimits.hh"
#include "G4VisAttributes.hh"
class G4LogicalVolume;
class G4Material;
class DetectorMessenger;
class G4UserLimits;
class G4Region;
class ElectroMagneticFieldSetup;
const G4int kMaxAbsor = 1;
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class DetectorConstruction : public G4VUserDetectorConstruction
{
public:
DetectorConstruction();
~DetectorConstruction();
public:
G4Region* GetTargetRegion() { return fRegion; }
G4VPhysicalVolume* Construct() override;
void ConstructSDandField() override;
void SetSize (G4double);
void SetWidth (G4double);
void SetMaterial (G4String);
void SetSizeSurface(G4double);
void SetMaterialSurface(G4String);
void SetSizeLayer1(G4double);
void SetMaterialLayer1(G4String);
void SetSizeLayer2(G4double);
void SetMaterialLayer2(G4String);
void SetSizeLayer3(G4double);
void SetMaterialLayer3(G4String);
void SetSizeLayer4(G4double);
void SetMaterialLayer4(G4String);
void UpdateGeometry();
G4Material* DefaultMaterial;
G4Material* My_TiN;
G4Material* My_BN;
G4Material* My_SiO2;
G4Material* My_Kapton;
public:
const
G4VPhysicalVolume* GetWorld() {return fPBox;};
G4double GetSize() {return fBoxSize;};
G4double GetWidth() { return fBoxWidth; };
G4Material* GetMaterial() {return fMaterial;};
G4double GetSizeSurface() { return fBoxSizeSurface; };
G4Material* GetMaterialSurface() { return fMaterialSurface; };
G4double GetSizeLayer1() { return fBoxSizeLayer1; };
G4Material* GetMaterialLayer1() { return fMaterialLayer1; };
G4double GetSizeLayer2() { return fBoxSizeLayer2; };
G4Material* GetMaterialLayer2() { return fMaterialLayer2; };
G4double GetSizeLayer3() { return fBoxSizeLayer3; };
G4Material* GetMaterialLayer3() { return fMaterialLayer3; };
G4double GetSizeLayer4() { return fBoxSizeLayer4; };
G4Material* GetMaterialLayer4() { return fMaterialLayer4; };
//SDTrajectoires* GetSensitiveDetector() { return pSDTrajectoires; };
void PrintParameters();
private:
G4Region* fRegion;
G4double fWorldSizeX;
G4double fWorldSizeY;
G4double fWorldSizeZ;
G4Material* World_Material;
G4Box* fSolidWorld;
G4LogicalVolume* fLogicWorld;
G4VPhysicalVolume* fPhysiWorld;
G4double WorldDim;
G4double WorldRay;
// substrate
G4Box* fSBox;
G4LogicalVolume* fLBox;
G4VPhysicalVolume* fPBox;
G4double fBoxSize;
G4double fBoxWidth;
G4Material* fMaterial;
// surface
G4Box* fSBoxSurface;
G4VPhysicalVolume* fPBoxSurface;
G4LogicalVolume* fLBoxSurface;
G4double fBoxSizeSurface;
G4Material* fMaterialSurface;
// Layer 1 just below the surface
G4Box* fSBoxLayer1;
G4VPhysicalVolume* fPBoxLayer1;
G4LogicalVolume* fLBoxLayer1;
G4double fBoxSizeLayer1;
G4Material* fMaterialLayer1;
// Layer 2 just below the layer1
G4Box* fSBoxLayer2;
G4VPhysicalVolume* fPBoxLayer2;
G4LogicalVolume* fLBoxLayer2;
G4double fBoxSizeLayer2;
G4Material* fMaterialLayer2;
// Layer 3 just below the layer2
G4Box* fSBoxLayer3;
G4VPhysicalVolume* fPBoxLayer3;
G4LogicalVolume* fLBoxLayer3;
G4double fBoxSizeLayer3;
G4Material* fMaterialLayer3;
// Layer 4 just below the layer3 on top of the substrate
G4Box* fSBoxLayer4;
G4VPhysicalVolume* fPBoxLayer4;
G4LogicalVolume* fLBoxLayer4;
G4double fBoxSizeLayer4;
G4Material* fMaterialLayer4;
G4Sphere* Detector_1_box;
G4LogicalVolume* Detector_1_log;
G4VPhysicalVolume* Detector_1_phys;
G4Material* detectorMat;
G4double DetectorRay;
DetectorMessenger* fDetectorMessenger;
private:
void DefineMaterials();
G4VPhysicalVolume* ConstructVolumes();
};
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#endif