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30178c30 1/**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
3 * *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
6 * *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
15
d1cd2474 16// $Id$
17//
18// Class AliMUONSt2GeometryBuilder
19// -------------------------------
5f1df83a 20// MUON Station2 coarse geometry construction class.
21// Extracted from AliMUONv1
d6dd7a27 22// Dummy version of station 2 with the right DE id (Ch. Finck)
d1cd2474 23
24#include <TVirtualMC.h>
25#include <TGeoMatrix.h>
26
e118b27e 27#include "AliLog.h"
28
d1cd2474 29#include "AliMUONSt2GeometryBuilder.h"
30#include "AliMUON.h"
b7ef3c96 31#include "AliMUONConstants.h"
e118b27e 32#include "AliMUONGeometryModule.h"
a432117a 33#include "AliMUONGeometryEnvelopeStore.h"
d1cd2474 34
5398f946 35/// \cond CLASSIMP
d1cd2474 36ClassImp(AliMUONSt2GeometryBuilder)
5398f946 37/// \endcond
d1cd2474 38
39//______________________________________________________________________________
40AliMUONSt2GeometryBuilder::AliMUONSt2GeometryBuilder(AliMUON* muon)
8cf07955 41 : AliMUONVGeometryBuilder(2, 2),
d1cd2474 42 fMUON(muon)
43{
44// Standard constructor
45
46}
47
48//______________________________________________________________________________
49AliMUONSt2GeometryBuilder::AliMUONSt2GeometryBuilder()
50 : AliMUONVGeometryBuilder(),
51 fMUON(0)
52{
53// Default constructor
54}
55
56
d1cd2474 57//______________________________________________________________________________
58AliMUONSt2GeometryBuilder::~AliMUONSt2GeometryBuilder() {
59//
60}
61
d1cd2474 62//
63// public methods
64//
65
66//______________________________________________________________________________
67void AliMUONSt2GeometryBuilder::CreateGeometry()
68{
69// From AliMUONv1::CreateGeometry()
70
71//
72//********************************************************************
73// Station 2 **
74//********************************************************************
75 // indices 1 and 2 for first and second chambers in the station
76 // iChamber (first chamber) kept for other quanties than Z,
77 // assumed to be the same in both chambers
78
79 // Get tracking medias Ids
80 Int_t *idtmed = fMUON->GetIdtmed()->GetArray()-1099;
81 Int_t idAir= idtmed[1100]; // medium 1
d6dd7a27 82 // Int_t idAlu1=idtmed[1103]; // medium 4
83 // Int_t idAlu2=idtmed[1104]; // medium 5
d1cd2474 84 Int_t idGas=idtmed[1108]; // medium 9 = Ar-CO2 gas (80%+20%)
d6dd7a27 85
86 const Float_t kDeltaQuad = 0.01;//2.6; dummy value til we find the good value
87 const Float_t kDeltaZ = 6.5/2.;
d1cd2474 88
89 // Rotation matrices in the x-y plane
90 // phi= 0 deg
91 Int_t irot1;
92 fMUON->AliMatrix(irot1, 90., 0., 90., 90., 0., 0.);
93 // phi= 90 deg
94 Int_t irot2;
95 fMUON->AliMatrix(irot2, 90., 90., 90., 180., 0., 0.);
96
d1cd2474 97 // Half of the total thickness of frame crosses (including DAlu)
98 // for each chamber in stations 1 and 2:
99 // 3% of X0 of composite material,
100 // but taken as Aluminium here, with same thickness in number of X0
d6dd7a27 101 // Float_t dframez = 3. * 8.9 / 100;
d1cd2474 102 // DGas and DAlu not changed from standard values
d6dd7a27 103 // Double_t zfpos=-(iChamber->DGas()+dframez+iChamber->DAlu())/2;
d1cd2474 104 // The same parameters are defined in builder for station 1
b7ef3c96 105
106 // sensitive gas gap
107 const Float_t kDGas = 0.5;
108
109 // 3% radiation length of aluminum (X0=8.9 cm)
110 // const Float_t kDAlu = 3.5 * 8.9 / 100.;
d1cd2474 111
112 // Mother volume
113 // Outer excess and inner recess for mother volume radius
114 // with respect to ROuter and RInner
d6dd7a27 115 // Float_t dframep=.001; // Value for station 3 should be 6 ...
d1cd2474 116 // Width (RdPhi) of the frame crosses for stations 1 and 2 (cm)
117 // Float_t dframep1=.001;
d6dd7a27 118 // Float_t phi=2*TMath::Pi()/12/2;
119 // The same parameters are defined in builder for station 1 (30deg)
d1cd2474 120
d6dd7a27 121 Float_t tpar[5];
122 // Double_t dstation = (-iChamber2->Z()) - (-iChamber1->Z());
d1cd2474 123
a432117a 124
d6dd7a27 125 Float_t posx, posy, posz;
d1cd2474 126// Chamber Material represented by Alu sheet
b7ef3c96 127 tpar[0]= AliMUONConstants::Rmin(1);
128 tpar[1]= AliMUONConstants::Rmax(1);
129 tpar[2] = kDGas/2;
d6dd7a27 130 tpar[3] = 0.;
131 tpar[4] = 90.;
132
d1cd2474 133//
134// Sensitive volumes
d6dd7a27 135 gMC->Gsvolu("S03G", "TUBS", idGas, tpar, 5);
136 gMC->Gsvolu("S04G", "TUBS", idGas, tpar, 5);
137
138 Int_t detElemId;
139
140 posx = kDeltaQuad;
141 posy = kDeltaQuad;
142 posz = -kDeltaZ;
143
144 detElemId = 301;
145 gMC->Gsvolu("LE01", "TUBS", idAir, tpar, 5);
146 GetEnvelopes(2)->AddEnvelope("LE01", detElemId, true, TGeoTranslation(posx, posy, posz),
147 TGeoRotation("rot1",90,0,90,90,0,0) );
148 detElemId = 401;
149 gMC->Gsvolu("LF01", "TUBS", idAir, tpar, 5);
150 GetEnvelopes(3)->AddEnvelope("LF01", detElemId, true, TGeoTranslation(posx, posy, posz),
151 TGeoRotation("rot1",90,0,90,90,0,0) );
152 detElemId = 300;
153 gMC->Gsvolu("LE02", "TUBS", idAir, tpar, 5);
154 GetEnvelopes(2)->AddEnvelope("LE02", detElemId, true, TGeoTranslation(-posx, posy,-posz),
155 TGeoRotation("rot2",90,180,90,90,180,0) );
156 detElemId = 400;
157 gMC->Gsvolu("LF02", "TUBS", idAir, tpar, 5);
158 GetEnvelopes(3)->AddEnvelope("LF02", detElemId, true, TGeoTranslation(-posx, posy,-posz),
159 TGeoRotation("rot2",90,180,90,90,180,0) );
160 detElemId = 302;
161 gMC->Gsvolu("LE03", "TUBS", idAir, tpar, 5);
162 GetEnvelopes(2)->AddEnvelope("LE03", detElemId, true, TGeoTranslation(posx, -posy, -posz),
163 TGeoRotation("rot3",90,0,90,270,180,0) );
164 detElemId = 402;
165 gMC->Gsvolu("LF03", "TUBS", idAir, tpar, 5);
166 GetEnvelopes(3)->AddEnvelope("LF03", detElemId, true, TGeoTranslation(posx, -posy, -posz),
167 TGeoRotation("rot3",90,0,90,270,180,0) );
168 detElemId = 303;
169 gMC->Gsvolu("LE04", "TUBS", idAir, tpar, 5);
170 GetEnvelopes(2)->AddEnvelope("LE04", detElemId, true, TGeoTranslation(-posx, -posy, posz),
171 TGeoRotation("rot4",90,180,90,270,0,0) );
172 detElemId = 403;
173 gMC->Gsvolu("LF04", "TUBS", idAir, tpar, 5);
174 GetEnvelopes(3)->AddEnvelope("LF04", detElemId, true, TGeoTranslation(-posx, -posy, posz),
175 TGeoRotation("rot4",90,180,90,270,0,0) );
176
177 GetEnvelopes(2)->AddEnvelopeConstituent("S03G", "LE01", 1);
178 GetEnvelopes(3)->AddEnvelopeConstituent("S04G", "LF01", 1);
179
180 GetEnvelopes(2)->AddEnvelopeConstituent("S03G", "LE02", 2);
181 GetEnvelopes(3)->AddEnvelopeConstituent("S04G", "LF02", 2);
182
183 GetEnvelopes(2)->AddEnvelopeConstituent("S03G", "LE03", 3);
184 GetEnvelopes(3)->AddEnvelopeConstituent("S04G", "LF03", 3);
185
186 GetEnvelopes(2)->AddEnvelopeConstituent("S03G", "LE04", 4);
187 GetEnvelopes(3)->AddEnvelopeConstituent("S04G", "LF04", 4);
d1cd2474 188}
189
190//______________________________________________________________________________
191void AliMUONSt2GeometryBuilder::SetTransformations()
192{
193// Defines the transformations for the station2 chambers.
194// ---
195
17832c49 196 // Define chamber volumes as virtual
197 SetVolume(2, "SC03", true);
198 SetVolume(3, "SC04", true);
199
b7ef3c96 200 Double_t zpos1 = - AliMUONConstants::DefaultChamberZ(2);
201 SetTranslation(2, TGeoTranslation(0., 0., zpos1));
d1cd2474 202
b7ef3c96 203 Double_t zpos2 = - AliMUONConstants::DefaultChamberZ(3);
204 SetTranslation(3, TGeoTranslation(0., 0., zpos2));
d1cd2474 205}
206
207//______________________________________________________________________________
208void AliMUONSt2GeometryBuilder::SetSensitiveVolumes()
209{
210// Defines the sensitive volumes for station2 chambers.
211// ---
212
e118b27e 213 GetGeometry(2)->SetSensitiveVolume("S03G");
214 GetGeometry(3)->SetSensitiveVolume("S04G");
d1cd2474 215}