Study of SHMS resolution
From HallCWiki
Jump to navigationJump to search
- Using the following setup for SHMS single arm MC
- 2 GeV , 20 deg scattered electrons
- Reconstruction of tracks in the focal plane assumed 200 microns resolution.
- LH2 target with 20cm length. Assume beer can with radius of 3.37cm and wall thickness in 0.005in Al.
- 16 mil Al scattering chamber window (X0=8.89cm) followed by 15 cm air (X0=30420cm)
- Spectrometer entrance window 15 mil Kevlar (X0=74.6cm) and 5 mil Mylar (X0=28.7cm)
- Spectrometer exit window spectrometer exit window, 15 mil Kevlar, 5 mil Mylar (use 20 mil,X0=53.3)
- Two options in Hut when AR/Neon Cerenkov is removed
- Vacuum pipe so the the spectrometer exit window is moved to location of Cerenkov exit window
- Helium bag. The spectrometer exit window is located in front of Cerenkov entrance, but the Cerenkov is replaced by a helium bag. Assume the entrance and exit of helium bag is aluminized mylar. Each window is 17 micron mylar and 3 micron aluminum. Filled with helium ( Radlen = 754560 cm).
- Drift through air until drift chamber 1
- Chamber 1 entrance foil, 1 mil of Mylar
- Scattering in drift chamber, for each plane
- Effective cathode plane, Be/Cu with Rad Len = 28.7cm , 0.0005 in
- Drift through Chamber gas, 50/50 ethane/argon with Rad Len = 16700.0cm
- Effective wire plane, 25 micron W+Be/Cu
- Fill hit position for plane
- Drift through Chamber gas, 50/50 ethane/argon with Rad Len = 16700.0cm
- Chamber 1 exit foil, 1 mil of Mylar
- Drift through air until drift chamber 2
- Chamber 2 entrance foil, 1 mil of Mylar
- Scattering in drift chamber, for each plane
- Effective cathode plane, Be/Cu with Rad Len = 28.7cm , 0.0005 in
- Drift through Chamber gas, 50/50 ethane/argon with Rad Len = 16700.0cm
- Effective wire plane, 25 micron W+Be/Cu
- Fill hit position for plane
- Drift through Chamber gas, 50/50 ethane/argon with Rad Len = 16700.0cm
- Chamber 2 exit foil, 1 mil of Mylar