DocumentCode
1279732
Title
Correlations Between Crystal Defects and Performance of CdZnTe Detectors
Author
Bolotnikov, A.E. ; Babalola, S. ; Camarda, G.S. ; Cui, Y. ; Gul, R. ; Egarievwe, S.U. ; Fochuk, P.M. ; Fuerstnau, M. ; Horace, J. ; Hossain, A. ; Jones, F. ; Kim, K.H. ; Kopach, O.V. ; McCall, B. ; Marchini, L. ; Raghothamachar, B. ; Taggart, R. ; Yang, G
Author_Institution
Brookhaven Nat. Lab., Upton, NY, USA
Volume
58
Issue
4
fYear
2011
Firstpage
1972
Lastpage
1980
Abstract
Poor crystallinity remains a major problem affecting the availability and cost of CdZnTe (CZT) detectors. Point defects are responsible for small gradual charge loss and correlated with the electron clouds´ drift times, which allows electronic correction of the output signals to achieve high spectral-resolution even with large-volume CZT detectors. In contrast, extended defects causes significant charge losses, which typically are uncorrelated, and, thus, result in much greater fluctuations of the output signals that cannot be corrected. Although extended defects do not affect all the interaction events, their fraction rapidly increases with the crystal´s thickness and volume. In this paper, we summarize our recent results from testing CZT material and detectors that emphasize the particular roles of two types of extended defects, and their contributions to the device´s overall performance.
Keywords
II-VI semiconductors; cadmium compounds; extended defects; grain boundaries; inclusions; semiconductor counters; subboundary structure; CZT detector crystal defects; CZT detector crystallinity; CZT detector performance; CdZnTe; charge loss; crystal thickness; crystal volume; electron cloud drift time; extended defects; output signal electronic correction; point defects; Crystals; Detectors; Surface topography; Surface treatment; Transmission electron microscopy; CdZnTe; crystal defects; radiation detectors;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2011.2160283
Filename
5960003
Link To Document