DocumentCode
796065
Title
Monte-Carlo Analysis of the Ge(Li) Detector Used in the Sum-Coincidence Mode
Author
Walker, D.M. ; Palms, J.M.
Author_Institution
Nuclear and Biological Sciences Division Georgia Institute of Technology Atlanta, Georgia
Volume
17
Issue
3
fYear
1970
fDate
6/1/1970 12:00:00 AM
Firstpage
296
Lastpage
305
Abstract
A Monte-Carlo model for investigating sequential gamma scattering and for predicting sum-coincidence and sum-only detector performance has been developed in order to assess the Compton suppression capabilities of Ge(Li) detectors which accept only multiple gamma interaction sequences. Calculated performance for a concentric cylindrical detector shows good agreement with experimentally observed sum-coincidence spectrometer (SCS) behavior. Calculations were made for hypothetical germanium detectors of cylindrical volumes from 7. 1 cc. to 28.3 cc., and for gamma energies of 320 keV to 2754 keV. The requirement of multiple scattering is shown to eliminate only a minor portion of the total-energy gamma events. Effects of detector volume are characterized, and the location and thickness of dead layers separating active detector regions are shown to be important to SCS performance. Calculations of the energy partitioning between detector volumes for coincidence events indicate that the "backscattering" mode is not the dominent mechanism for good event sequences as has been postulated, and that good and bad event sequences are highly localized on the two-parameter spectrum of the energy output from each detector for coincidence events. The relationship of the calculations to detector performance is given.
Keywords
Backscatter; Electromagnetic scattering; Event detection; Gamma ray detection; Gamma ray detectors; Germanium; Instruments; Particle scattering; Spectroscopy; System performance;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.1970.4325703
Filename
4325703
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