Commit 53574909 authored by Omveer_Singh's avatar Omveer_Singh Committed by Florian Uhlig
Browse files

Add new much geometries

Implementation of realistic geometry, gas mixture and material budget for GEM chambers in jpsi setup.
Add new media definitions.
parent 151fcb93
......@@ -1213,6 +1213,10 @@ MUCHlead 1 207.1 82. 11.34
0 1 20. .001
0
MUCHironfifth 1 55.847 26. 7.2
0 1 20. .001
0
MUCHwolfram 1 183.84 74. 19.3
0 1 20. .001
0
......@@ -1238,6 +1242,11 @@ MUCHargon 1 39.95 18. 0.00178
1 0 20. .001
0
// Argon CO2 (70/30)
MUCHGEMmixture 3 39.948 12.01 15.9994 18. 6. 8. 0.001843 0.678 0.088 0.234
0 1 20. .001
0
MUCHnoryl -3 12.01 1.01 16.00 6. 1. 8. 1.06 8 8 1
0 1 20. .001
0
......@@ -1266,6 +1275,10 @@ MUCHcopper 1 63.54 29. 8.96
0 0 20. .001
0
MUCHkapton -4 14.006 12.011 1.008 16. 7. 6. 1. 8. 1.42 2 22 10 5
0 0 20. .001
0
Lead 1 207.2 82. 11.35
1 0 20. .001
0
......
MUCH geometry created with create_MUCH_geometry_v21a_lmvm.C
Global Variables:
MuchCave Zin position = 125 cm
Acceptance tangent min = 0.1
Acceptance tangent max = 0.466
Absorbers
-----------
Total No. of Absorbers: 5
First abosrber is divided into two halves.
First half inserted inside the Dipole Magnet.
Second half is made of Low Density Graphite + Concrete.
Total No. of Pieces: 7
AbsPieces Position[cm] Thickness[cm] Material
--------------------------------------------------------------
1 133 16 LD Graphite
2 147 12 LD Graphite
3 168 30 Concrete
4 225 20 Iron
5 275 20 Iron
6 330 30 Iron
7 427 100 Iron_fifth
Shielding
-----------
No. of Shields: 6
Inside the Abs I, Shielding divided into two parts.
Shield No. Z_In[cm] Z_Out[cm] R_In[cm] R_Out[cm] Material
--------------------------------------------------------------
0 125 153 7.375 12.4999 Al
1 153 183 8.579 15.2999 Pb
2 215 235 12.965 21.4999 Al
3 265 285 15.515 26.4999 Al
4 315 345 18.065 31.4999 Al
5 377 477 25.00 25.00 Al
Stations
----------
No. of Stations: 4
First two stations (1,2) are made up of GEM and last two stations (3,4) are made up of RPC.
Passive material implemented in GEM modules. Ar:CO2 (70:30) is used as active gas.
12 mm thick Al plates are used for support and cooling in the GEM modules.
2 mm thick Aluminum plates are used for support in the RPC modules behind the active area. 10 mm thick Aluminium at the boundaries as the frame.
Drift and read-out PCBs (copper coated G10 plates) inserted for realistic material budget for both GEM and RPC modules.
#Station #Layers Z[cm] #Sectors ActiveLz[cm]
--------------------------------------------------------------
1 1 190 16 0.3
1 2 200 16 0.3
1 3 210 16 0.3
2 1 240 20 0.3
2 2 250 20 0.3
2 3 260 20 0.3
3 1 290 18 0.2
3 2 300 18 0.2
3 3 310 18 0.2
4 1 350 20 0.2
4 2 360 20 0.2
4 3 370 20 0.2
MUCH geometry created with create_MUCH_geometry_v21a_lmvm.C
Global Variables:
MuchCave Zin position = 125 cm
Acceptance tangent min = 0.1
Acceptance tangent max = 0.466
Absorbers
-----------
Total No. of Absorbers: 4
First abosrber is divided into two halves.
First half inserted inside the Dipole Magnet.
Second half is made of Low Density Graphite + Concrete.
Total No. of Pieces: 6
AbsPieces Position[cm] Thickness[cm] Material
--------------------------------------------------------------
1 133 16 LD Graphite
2 147 12 LD Graphite
3 168 30 Concrete
4 225 20 Iron
5 275 20 Iron
6 330 30 Iron
Shielding
-----------
No. of Shields: 5
Inside the Abs I, Shielding divided into two parts.
Shield No. Z_In[cm] Z_Out[cm] R_In[cm] R_Out[cm] Material
--------------------------------------------------------------
0 125 153 7.375 12.4999 Al
1 153 183 8.579 15.2999 Pb
2 215 235 12.965 21.4999 Al
3 265 285 15.515 26.4999 Al
4 315 345 18.065 31.4999 Al
Stations
----------
No. of Stations: 4
First two stations (1,2) are made up of GEM and last two stations (3,4) are made up of RPC.
Passive material implemented in GEM modules. Ar:CO2 (70:30) is used as active gas.
12 mm thick Al plates are used for support and cooling in the GEM modules.
2 mm thick Aluminum plates are used for support in the RPC modules behind the active area. 10 mm thick Aluminium at the boundaries as the frame.
Drift and read-out PCBs (copper coated G10 plates) inserted for realistic material budget for both GEM and RPC modules.
#Station #Layers Z[cm] #Sectors ActiveLz[cm]
--------------------------------------------------------------
1 1 190 16 0.3
1 2 200 16 0.3
1 3 210 16 0.3
2 1 240 20 0.3
2 2 250 20 0.3
2 3 260 20 0.3
3 1 290 18 0.2
3 2 300 18 0.2
3 3 310 18 0.2
4 1 350 20 0.2
4 2 360 20 0.2
4 3 370 20 0.2
MUCH geometry created with create_MUCH_geometry_v21a_lmvm.C
Global Variables:
MuchCave Zin position = 125 cm
Acceptance tangent min = 0.1
Acceptance tangent max = 0.466
Absorbers
-----------
Total No. of Absorbers: 3
First abosrber is divided into two halves.
First half inserted inside the Dipole Magnet.
Second half is made of Low Density Graphite + Concrete.
Total No. of Pieces: 5
AbsPieces Position[cm] Thickness[cm] Material
--------------------------------------------------------------
1 133 16 LD Graphite
2 147 12 LD Graphite
3 168 30 Concrete
4 225 20 Iron
5 275 20 Iron
Shielding
-----------
No. of Shields: 4
Inside the Abs I, Shielding divided into two parts.
Shield No. Z_In[cm] Z_Out[cm] R_In[cm] R_Out[cm] Material
--------------------------------------------------------------
0 125 153 7.375 12.4999 Al
1 153 183 8.579 15.2999 Pb
2 215 235 12.965 21.4999 Al
3 265 285 15.515 26.4999 Al
Stations
----------
No. of Stations: 2
First two stations (1,2) are made up of GEM and last two stations (3,4) are made up of RPC.
Passive material implemented in GEM modules. Ar:CO2 (70:30) is used as active gas.
12 mm thick Al plates are used for support and cooling in the GEM modules.
2 mm thick Aluminum plates are used for support in the RPC modules behind the active area. 10 mm thick Aluminium at the boundaries as the frame.
Drift and read-out PCBs (copper coated G10 plates) inserted for realistic material budget for both GEM and RPC modules.
#Station #Layers Z[cm] #Sectors ActiveLz[cm]
--------------------------------------------------------------
1 1 190 16 0.3
1 2 200 16 0.3
1 3 210 16 0.3
2 1 240 20 0.3
2 2 250 20 0.3
2 3 260 20 0.3
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