DocumentCode :
1487412
Title :
Novel Scintillation Material—ZnO Transparent Ceramics
Author :
Rodnyi, P.A. ; Chernenko, K.A. ; Gorokhova, E.I. ; Kozlovskii, S.S. ; Khanin, V.M. ; Khodyuk, I.V.
Author_Institution :
St. Petersburg State Polytech. Univ., St. Petersburg, Russia
Volume :
59
Issue :
5
fYear :
2012
Firstpage :
2152
Lastpage :
2155
Abstract :
ZnO-based scintillation ceramics for application in HENPA LENPA analyzers have been investigated. The following ceramic samples have been prepared: undoped ones (ZnO), an excess of zinc in stoichiometry (ZnO:Zn), doped with gallium (ZnO:Ga), and lithium (ZnO:Li). Optical transmission, x-ray excited emission, scintillation decay, and pulse height spectra were measured and analyzed. Ceramics have reasonable transparency in visible range (up to 60% for 0.4 mm thickness) and energy resolution (14.9% at 662 keV Cs137 gamma excitation). Undoped ZnO shows slow (1.6 μs) luminescence with maximum at 2.37 eV and light yield about 57% of CsI:Tl. ZnO:Ga ceramics show relatively low light yield with ultra fast decay time (1 ns). Lithium doped ceramics ZnO:Li have better decay time than undoped ZnO with fair light yield. ZnO:Li ceramics show good characteristics under alpha-particle excitation and can be applied for the neutral particle analyzers.
Keywords :
II-VI semiconductors; X-ray emission spectra; ceramics; gallium; gamma-ray effects; light transmission; lithium; photoluminescence; scintillation; semiconductor growth; stoichiometry; transparency; visible spectra; wide band gap semiconductors; zinc; zinc compounds; X-ray excited emission; ZnO:Ga; ZnO:Li; ZnO:Zn; alpha-particle excitation; energy resolution; gallium; gamma excitation; lithium; luminescence; neutral particle analyzers; novel scintillation material; optical transmission; pulse height spectra; scintillation decay; stoichiometry; transparency; transparent scintillation ceramics; visible spectra; zinc; Ceramics; Lithium; Luminescence; Powders; Stimulated emission; Zinc oxide; Ceramics; fusion reactor instrumentation; luminescence; scintillation counters; zinc compounds;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2012.2189896
Filename :
6179356
Link To Document :
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