DocumentCode :
1518436
Title :
New semiconductor scintillators ZnSe(Te,O) and integrated radiation detectors based thereon
Author :
Ryzhikov, V. ; Starzhinskiy, N. ; Gal´chinetskii, L. ; Gáshin, P. ; Kozin, D. ; Danshin, E.
Author_Institution :
STC for Radiat. Instrum., Inst. for Single Crystals, Kharkov, Ukraine
Volume :
48
Issue :
3
fYear :
2001
fDate :
6/1/2001 12:00:00 AM
Firstpage :
356
Lastpage :
359
Abstract :
Data are presented on properties of a new type of scintillator based on isovalently doped crystals of zinc selenide. Depending upon concentration of activating dopants Te and O, the wavelength of the luminescence maximum is 590-640 nm, response time is 1-50 μs, and afterglow level after 5 ms is not more than 0.01-0.05%. Conversion efficiency is 3-6% higher, and radiation stability is ~1000 times higher than for CsI(Tl) crystals. Accounting for their optical and physical properties, this type of scintillator is the most suitable for tomography uses in “scintillator-photodiode” detectors. The combination of semiconductor properties and characteristics of a highly efficient scintillator, which is observed in ZnSe(Te), makes it possible to create integrated scintielectronic detectors of X-ray radiation of the type “photosensitive heterostructure AIIBVI -semiconductor scintillator ZnSe(Te).” Detectors of charged particles and ultraviolet radiation based on the Schottky barrier structure of “metal-nZnSe(Te)” have been also developed, with quantum efficiency of 0.3-0.4 electron/quantum in the region 0.20-0.47 μm
Keywords :
II-VI semiconductors; Schottky barriers; X-ray detection; oxygen; photodiodes; semiconductor counters; solid scintillation detectors; tellurium; zinc compounds; 1 to 50 mus; 590 to 640 nm; Schottky barrier; X-ray radiation; ZnSe:O; ZnSe:Te; conversion efficiency; integrated radiation detectors; isovalently doped crystals; luminescence maximum; photodiode; radiation stability; semiconductor scintillators; Crystals; Delay; Luminescence; Radiation detectors; Semiconductor radiation detectors; Stability; Tellurium; X-ray detection; X-ray detectors; Zinc compounds;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/23.940080
Filename :
940080
Link To Document :
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