DocumentCode
1757043
Title
Silicon Photomultiplier-Based Compton Telescope for Safety and Security (SCoTSS)
Author
Sinclair, Laura ; Saull, Patrick ; Hanna, David ; Seywerd, Henry ; Macleod, A. ; Boyle, Patrick
Author_Institution
Geol. Survey of Canada Natural Resources Canada, Ottawa, ON, Canada
Volume
61
Issue
5
fYear
2014
fDate
Oct. 2014
Firstpage
2745
Lastpage
2752
Abstract
A Compton gamma imager has been developed for use in consequence management operations and in security investigations. The imager uses solid inorganic scintillator, known for robust performance in field survey conditions. The design was constrained in overall size by the requirement that it be person transportable and operable from a variety of platforms. In order to introduce minimal dead material in the path of the incoming and scattered gamma rays, custom silicon photomultipliers (SiPMs), with a thin glass substrate, were used to collect the scintillation light from the scatter layers. To move them out of the path of the gamma rays, preamplification electronics for the silicon photomultipliers were located a distance from the imager. This imager, the Silicon photomultiplier Compton Telescope for Safety and Security (SCoTSS) is able to provide a one-degree image resolution in a ±45° field of view for a 10 mCi point source 40 m distant, within about one minute, for gamma-ray energies ranging from 344 keV to 1274 keV. Here, we present a comprehensive performance study of the SCoTSS imager.
Keywords
photomultipliers; silicon radiation detectors; solid scintillation detectors; Compton gamma imager; SCoTSS imager; field survey conditions; management operations; preamplification electronics; silicon photomultiplier-based Compton telescope; solid inorganic scintillator; thin glass substrate; Crystals; Detectors; Gamma-rays; Safety; Security; Silicon; Compton camera; Compton imager; Compton telescope; SiPM; gamma camera; gamma imager; silicon photomultiplier;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2014.2356412
Filename
6913578
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