DocumentCode
3634813
Title
A technique for measuring the energy resolution of low-Z scintillators
Author
Katja Roemer;Guntram Pausch;Claus-Michael Herbach;Yong Kong;Ralf Lentering;Cristina Plettner;Juergen Stein;Marek Moszynski;Lukasz Swiderski;Tomasz Szczesniak
Author_Institution
ICx Technologies GmbH, Germany
fYear
2009
Firstpage
6
Lastpage
11
Abstract
Scintillator-based Compton cameras for remote localization and identification of radio nuclides require scatter detectors made of low-Z materials. The energy resolution of such detectors in a range dominated by Compton scattering is a crucial parameter. It has to be known for performance estimates, and it must be quantified and optimized for detector designs to be used in real systems, but it is hard to measure. The Compton Coincidence Technique (CCT) appears to be the best method for reliable and direct measurements, but appropriate facilities are expensive. This paper suggests and investigates a modified CCT which provides less expensive means for qualifying of scatter detectors in a reasonable time frame. The assembly consists of a single HPGe detector, the scatter detector to be investigated, and one or more common gamma sources in close geometry. Pulse height and timing information from both detectors is gathered by multi-parameter data acquisition. Coincidences of both detectors are due to a plurality of Compton scattering angles and corresponding energy transfers. A thorough data analysis then allows extracting the detector resolution as well as the non-linearity as a function of energy from data sets measured within hours. Results obtained for NaI and plastic scatter detectors will be presented and discussed.
Keywords
"Energy measurement","Energy resolution","Gamma ray detection","Gamma ray detectors","Cameras","Scattering parameters","Design optimization","Assembly","Geometry","Timing"
Publisher
ieee
Conference_Titel
Nuclear Science Symposium Conference Record (NSS/MIC), 2009 IEEE
ISSN
1082-3654
Print_ISBN
978-1-4244-3961-4
Type
conf
DOI
10.1109/NSSMIC.2009.5401909
Filename
5401909
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