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0029 #ifndef DetectorConstruction_h
0030 #define DetectorConstruction_h 1
0031
0032 #include "G4Cache.hh"
0033 #include "G4VUserDetectorConstruction.hh"
0034 #include "globals.hh"
0035
0036 class G4Box;
0037 class G4LogicalVolume;
0038 class G4VPhysicalVolume;
0039 class G4Material;
0040 class DetectorMessenger;
0041
0042 const G4int kMaxAbsor = 10;
0043
0044 class G4GlobalMagFieldMessenger;
0045
0046
0047
0048 class DetectorConstruction : public G4VUserDetectorConstruction
0049 {
0050 public:
0051 DetectorConstruction();
0052 ~DetectorConstruction() override;
0053
0054 public:
0055 void SetNbOfAbsor(G4int);
0056 void SetAbsorMaterial(G4int, const G4String&);
0057 void SetAbsorThickness(G4int, G4double);
0058
0059 void SetAbsorSizeYZ(G4double);
0060 void SetNbOfDivisions(G4int, G4int);
0061
0062 G4VPhysicalVolume* Construct() override;
0063 void ConstructSDandField() override;
0064
0065 public:
0066 G4int GetNbOfAbsor() { return fNbOfAbsor; }
0067 G4Material* GetAbsorMaterial(G4int i) { return fAbsorMaterial[i]; };
0068 G4double GetAbsorThickness(G4int i) { return fAbsorThickness[i]; };
0069 G4double GetXfront(G4int i) { return fXfront[i]; };
0070
0071 G4double GetAbsorSizeX() { return fAbsorSizeX; };
0072 G4double GetAbsorSizeYZ() { return fAbsorSizeYZ; };
0073
0074 G4int GetNbOfDivisions(G4int i) { return fNbOfDivisions[i]; };
0075
0076 void PrintParameters();
0077
0078 private:
0079 G4int fNbOfAbsor = 1;
0080 G4Material* fAbsorMaterial[kMaxAbsor];
0081 G4double fAbsorThickness[kMaxAbsor];
0082 G4double fXfront[kMaxAbsor];
0083
0084 G4int fNbOfDivisions[kMaxAbsor];
0085
0086 G4double fAbsorSizeX = 0.;
0087 G4double fAbsorSizeYZ = 0.;
0088 G4Material* fDefaultMaterial = nullptr;
0089
0090 G4VPhysicalVolume* fPhysiWorld = nullptr;
0091
0092 DetectorMessenger* fDetectorMessenger = nullptr;
0093 G4Cache<G4GlobalMagFieldMessenger*> fFieldMessenger = nullptr;
0094
0095 private:
0096 void DefineMaterials();
0097 void ComputeParameters();
0098 G4VPhysicalVolume* ConstructVolumes();
0099 };
0100
0101
0102
0103 #endif