DocumentCode :
1834222
Title :
Single-sided CZT strip detectors
Author :
Macri, John R. ; Hamel, Louis-Andre ; Julien, Manuel ; Miller, Richard S. ; Dönmez, Burçin ; McConnell, Mark L. ; Ryan, James M. ; Widholm, Mark
Author_Institution :
Space Sci. Center, New Hampshire Univ., Durham, NH, USA
Volume :
5
fYear :
2003
fDate :
19-25 Oct. 2003
Firstpage :
3385
Abstract :
We report progress in the study of thick CZT strip detectors for 3-d imaging and spectroscopy and discuss two approaches to device design. Unlike double-sided strip detectors, these devices feature both row and column contacts implemented on the anode surface. This electron-only approach circumvents problems associated with poor hole transport in CZT that normally limit the thickness and energy range of double-sided strip detectors. The work includes laboratory and simulation studies aimed at developing compact, efficient, detector modules for 0.05 to 1 MeV gamma radiation measurements while minimizing the number and complexity of the electronic readout channels. These devices can achieve similar performance to pixel detectors for both 3-d imaging and spectroscopy. The low channel count approach can significantly reduce the complexity and power requirements of the readout electronics. This is particularly important in applications requiring large area detector arrays. We show two single-sided strip detector concepts. One, previously reported, features rows established with collecting contacts and columns with non-collecting contacts. Another, introduced here, operates on a charge sharing principle and establishes both rows and columns with collecting contacts on the anode surface. In previous work using the earlier strip detector concept we reported simulations and measurements of energy and spatial resolution for prototype 5 and 10 mm thick CZT detectors. We now present the results of detection efficiency and uniformity measurements conducted on a 5 mm thick detector using a specific configuration of the front-end electronics and event trigger. We discuss limitations associated with implementation of this approach.
Keywords :
electrical contacts; gamma-ray detection; gamma-ray spectroscopy; imaging; nuclear electronics; position sensitive particle detectors; readout electronics; semiconductor counters; 0.05 to 1 MeV; 10 mm; 3D imaging; 3D spectroscopy; 5 mm; anode surface; charge sharing principle; collecting contacts; column contacts; compact efficient detector modules; detection efficiency; device design; double-sided strip detectors; electron-only approach; electronic readout channels; energy range; energy resolution; event trigger; front-end electronics; gamma radiation measurements; hole transport; large area detector arrays; low channel count approach; noncollecting contacts; pixel detectors; power requirements; readout electronics; row contacts; single-sided CZT strip detectors; spatial resolution; thick CZT strip detectors; uniformity measurements; Anodes; Computer vision; Event detection; Gamma ray detection; Gamma ray detectors; Laboratories; Radiation detectors; Spectroscopy; Strips; Thickness measurement;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Nuclear Science Symposium Conference Record, 2003 IEEE
ISSN :
1082-3654
Print_ISBN :
0-7803-8257-9
Type :
conf
DOI :
10.1109/NSSMIC.2003.1352631
Filename :
1352631
Link To Document :
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