DocumentCode :
3351982
Title :
Design studies for a compact tungsten scintillator electromagnetic calorimeter
Author :
Woody, C. ; Cheung, S. ; Haggerty, J. ; Kistenev, E. ; Stoll, S.
Author_Institution :
Brookhaven Nat. Lab., Upton, NY, USA
fYear :
2011
fDate :
23-29 Oct. 2011
Firstpage :
1471
Lastpage :
1475
Abstract :
Several designs are currently being investigated for a new type of compact electromagnetic calorimeter that should improve the performance and reduce the cost of electromagnetic calorimeters that are used in high multiplicity environments such as heavy ion collisions at RHIC or LHC. One is a so-called “optical accordion”, which is based on the design of the liquid argon accordion calorimeter that has been used by ATLAS, but employs either scintillating fibers or scintillating plates with wavelength shifting fibers as the active medium, and accordion shaped tungsten plates as the absorber medium. The tungsten can be either a composite or sintered material that allows the formation of accordion shaped plates and has a density nearly that of pure tungsten. Another design is a projective “shashlik” which has a tower structure with alternating layers of tungsten absorber and scintillator plates read out with wavelength shifting fibers. Both designs can utilize a silicon photomultiplier or APD readout that would allow it to be used inside a magnetic field. Results are presented on the light output of various configurations of the optical accordion and projective shashlik, as well as from a Monte Carlo study of the expected performance of the design.
Keywords :
Monte Carlo methods; composite materials; nuclear electronics; particle calorimetry; photomultipliers; readout electronics; silicon radiation detectors; solid scintillation detectors; tungsten; APD readout; ATLAS; LHC; Monte Carlo study; RHIC; absorber medium; accordion shaped tungsten plates; active medium; compact tungsten scintillator electromagnetic calorimeter; composite material; heavy ion collisions; high multiplicity environments; liquid argon accordion calorimeter; magnetic field; optical accordion; projective shashlik; scintillating fibers; scintillating plates; scintillator plate read out; silicon photomultiplier; sintered material; tower structure; tungsten absorber; wavelength shifting fibers; Heating; Optical fibers;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE
Conference_Location :
Valencia
ISSN :
1082-3654
Print_ISBN :
978-1-4673-0118-3
Type :
conf
DOI :
10.1109/NSSMIC.2011.6154351
Filename :
6154351
Link To Document :
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