Belle II Software  release-08-01-10
CaveCreator.cc
1 /**************************************************************************
2  * basf2 (Belle II Analysis Software Framework) *
3  * Author: The Belle II Collaboration *
4  * *
5  * See git log for contributors and copyright holders. *
6  * This file is licensed under LGPL-3.0, see LICENSE.md. *
7  **************************************************************************/
8 
9 #include <beast/cave/geometry/CaveCreator.h>
10 #include <beast/cave/simulation/SensitiveDetector.h>
11 
12 #include <geometry/CreatorFactory.h>
13 #include <framework/gearbox/GearDir.h>
14 #include <framework/logging/Logger.h>
15 
16 #include <boost/format.hpp>
17 #include <boost/foreach.hpp>
18 #include <boost/algorithm/string.hpp>
19 
20 #include <G4LogicalVolume.hh>
21 #include <G4PVPlacement.hh>
22 
23 //Shapes
24 #include <G4Box.hh>
25 #include <G4UserLimits.hh>
26 
27 using namespace std;
28 using namespace boost;
29 
30 namespace Belle2 {
37  namespace cave {
38 
39  // Register the creator
42 
43  CaveCreator::CaveCreator(): m_sensitive(0)
44  {
45  //m_sensitive = new SensitiveDetector();
46  }
47 
49  {
50  if (m_sensitive) delete m_sensitive;
51  }
52 
53  void CaveCreator::create(const GearDir& content, G4LogicalVolume& topVolume, geometry::GeometryTypes /* type */)
54  {
55 
57 
58  G4double density;
59  G4double A;
60  G4int Z;
61 
62  G4String name, symbol;
63 
64  A = 1.01 * CLHEP::g / CLHEP::mole;
65  G4Element* elH = new G4Element(name = "Hydrogen", symbol = "H", Z = 1, A);
66 
67  A = 12.01 * CLHEP::g / CLHEP::mole;
68  G4Element* elC = new G4Element(name = "Carbon", symbol = "C", Z = 6, A);
69 
70  A = 16.00 * CLHEP::g / CLHEP::mole;
71  G4Element* elO = new G4Element(name = "Oxygen", symbol = "O", Z = 8, A);
72 
73  A = 22.99 * CLHEP::g / CLHEP::mole;
74  G4Element* elNa = new G4Element(name = "Natrium", symbol = "Na", Z = 11, A);
75 
76  A = 200.59 * CLHEP::g / CLHEP::mole;
77  G4Element* elHg = new G4Element(name = "Hg", symbol = "Hg", Z = 80, A);
78 
79  A = 26.98 * CLHEP::g / CLHEP::mole;
80  G4Element* elAl = new G4Element(name = "Aluminium", symbol = "Al", Z = 13, A);
81 
82  A = 28.09 * CLHEP::g / CLHEP::mole;
83  G4Element* elSi = new G4Element(name = "Silicon", symbol = "Si", Z = 14, A);
84 
85  A = 39.1 * CLHEP::g / CLHEP::mole;
86  G4Element* elK = new G4Element(name = "K", symbol = "K", Z = 19, A);
87 
88  A = 69.72 * CLHEP::g / CLHEP::mole;
89  G4Element* elCa = new G4Element(name = "Calzium", symbol = "Ca", Z = 31, A);
90 
91  A = 55.85 * CLHEP::g / CLHEP::mole;
92  G4Element* elFe = new G4Element(name = "Iron", symbol = "Fe", Z = 26, A);
93 
94  density = 2.03 * CLHEP::g / CLHEP::cm3;
95  G4Material* Concrete = new G4Material("Concrete", density, 10);
96  Concrete->AddElementByMassFraction(elH, 0.01);
97  Concrete->AddElementByMassFraction(elO, 0.529);
98  Concrete->AddElementByMassFraction(elNa, 0.016);
99  Concrete->AddElementByMassFraction(elHg, 0.002);
100  Concrete->AddElementByMassFraction(elAl, 0.034);
101  Concrete->AddElementByMassFraction(elSi, 0.337);
102  Concrete->AddElementByMassFraction(elK, 0.013);
103  Concrete->AddElementByMassFraction(elCa, 0.044);
104  Concrete->AddElementByMassFraction(elFe, 0.014);
105  Concrete->AddElementByMassFraction(elC, 0.001);
106 
107 
108  //lets get the stepsize parameter with a default value of 5 µm
109  double stepSize = content.getLength("stepSize", 5 * CLHEP::um);
110 
111  //no get the array. Notice that the default framework unit is cm, so the
112  //values will be automatically converted
113  vector<double> bar = content.getArray("bar");
114  B2INFO("Contents of bar: ");
115  BOOST_FOREACH(double value, bar) {
116  B2INFO("value: " << value);
117  }
118  int detID = 0;
119  //Lets loop over all the Active nodes
120  BOOST_FOREACH(const GearDir & activeParams, content.getNodes("Active")) {
121 
122  //create cave volume
123  G4Box* s_CAVE = new G4Box("s_CAVE",
124  activeParams.getLength("px")*CLHEP::cm,
125  activeParams.getLength("py")*CLHEP::cm,
126  activeParams.getLength("pz")*CLHEP::cm);
127 
128  //G4LogicalVolume* l_CAVE = new G4LogicalVolume(s_CAVE, geometry::Materials::get("CAVE"), "l_CAVE", 0, m_sensitive);
129  G4LogicalVolume* l_CAVE = new G4LogicalVolume(s_CAVE, Concrete, "l_CAVE", 0, 0);
130 
131  //Lets limit the Geant4 stepsize inside the volume
132  l_CAVE->SetUserLimits(new G4UserLimits(stepSize));
133 
134  //position cave volume
135  G4ThreeVector CAVEpos = G4ThreeVector(
136  activeParams.getLength("x_cave") * CLHEP::cm,
137  activeParams.getLength("y_cave") * CLHEP::cm,
138  activeParams.getLength("z_cave") * CLHEP::cm
139  );
140 
141  G4RotationMatrix* rot_cave = new G4RotationMatrix();
142  rot_cave->rotateX(activeParams.getLength("AngleX"));
143  rot_cave->rotateY(activeParams.getLength("AngleY"));
144  rot_cave->rotateZ(activeParams.getLength("AngleZ"));
145  //geometry::setColor(*l_CAVE, "#006699");
146  //double angle = activeParams.getDouble("angle");
147  //double rx = activeParams.getDouble("rx");
148  //double ry = activeParams.getDouble("ry");
149  //double rz = activeParams.getDouble("rz");
150  //rot_cave->rotate(-angle, G4ThreeVector(rx, ry, rz));
151  new G4PVPlacement(rot_cave, CAVEpos, l_CAVE, "p_CAVE", &topVolume, false, detID);
152 
153  detID++;
154  }
155  }
156  } // cave namespace
158 } // Belle2 namespace
GearDir is the basic class used for accessing the parameter store.
Definition: GearDir.h:31
virtual ~CaveCreator()
Destructor.
Definition: CaveCreator.cc:48
virtual void create(const GearDir &content, G4LogicalVolume &topVolume, geometry::GeometryTypes type)
Creation of the detector geometry from Gearbox (XML).
Definition: CaveCreator.cc:53
SensitiveDetector * m_sensitive
SensitiveDetector cave.
Definition: CaveCreator.h:48
Sensitive Detector implementation of the CAVE detector.
double getLength(const std::string &path="") const noexcept(false)
Get the parameter path as a double converted to the standard length unit.
Definition: Interface.h:259
geometry::CreatorFactory< CaveCreator > CaveFactory("CAVECreator")
Creator creates the cave geometry.
GeometryTypes
Flag indiciating the type of geometry to be used.
Abstract base class for different kinds of events.
Very simple class to provide an easy way to register creators with the CreatorManager.