DocumentCode :
1020475
Title :
Effects of Te Inclusions on the Performance of CdZnTe Radiation Detectors
Author :
Bolotnikov, A.E. ; Abdul-Jabbar, N.M. ; Babalola, O.S. ; Camarda, G.S. ; Cui, Y. ; Hossain, A.M. ; Jackson, E.M. ; Jackson, H.C. ; James, J.A. ; Kohman, K.T. ; Luryi, A.L. ; James, R.B.
Author_Institution :
Brookhaven Nat. Lab., Upton, NY
Volume :
55
Issue :
5
fYear :
2008
Firstpage :
2757
Lastpage :
2764
Abstract :
Te inclusions existing at high concentrations in CdZnTe (CZT) material can degrade the performance of CZT detectors. These microscopic defects trap the free electrons generated by incident radiation, so entailing significant fluctuations in the total collected charge and thereby strongly affecting the energy resolution of thick (long-drift) detectors. Such effects were demonstrated in thin planar detectors, and, in many cases, they proved to be the dominant cause of the low performance of thick detectors, wherein the fluctuations in the charge losses accumulate along the charge´s drift path. We continued studying this effect using different tools and techniques. We employed a dedicated beam-line recently established at BNL´s National Synchrotron Light Source for characterizing semiconductor radiation detectors, along with an IR transmission microscope system, the combination of which allowed us to correlate the concentration of defects with the devices´ performances. We present here our new results from testing over 50 CZT samples grown by different techniques. Our goals are to establish tolerable limits on the size and concentrations of these detrimental Te inclusions in CZT material, and to provide feedback to crystal growers to reduce their numbers in the material.
Keywords :
II-VI semiconductors; cadmium compounds; inclusions; semiconductor counters; zinc compounds; BNL National Synchrotron Light Source; CdZnTe; IR transmission microscope system; Te inclusions effects; charge losses accumulate; free electron generation; microscopic defects trap; planar detectors; semiconductor radiation detectors; Crystalline materials; Degradation; Electron microscopy; Electron traps; Energy resolution; Fluctuations; Performance loss; Radiation detectors; Synchrotrons; Tellurium; CdZnTe; Te inclusions; radiation detectors;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2008.2003355
Filename :
4696570
Link To Document :
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