Инд. авторы: Spassky D.A., Nagirnyi V., Savon A.E., Kamenskikh I.A., Barinova O.P., Kirsanova S.V., Grigorieva V.D., Ivannikova N.V., Shlegel V.N., Aleksanyan E., Yelisseyev A.P., Belsky A.
Заглавие: Low temperature luminescence and charge carrier trapping in a cryogenic scintillator Li2MoO4
Библ. ссылка: Spassky D.A., Nagirnyi V., Savon A.E., Kamenskikh I.A., Barinova O.P., Kirsanova S.V., Grigorieva V.D., Ivannikova N.V., Shlegel V.N., Aleksanyan E., Yelisseyev A.P., Belsky A. Low temperature luminescence and charge carrier trapping in a cryogenic scintillator Li2MoO4 // Journal of Luminescence. - 2015. - Vol.166. - P.195-202. - ISSN 0022-2313. - EISSN 1872-7883.
Внешние системы: DOI: 10.1016/j.jlumin.2015.05.042; РИНЦ: 24046036; РИНЦ: 24046036; SCOPUS: 2-s2.0-84930660479; WoS: 000359329900030;
Реферат: eng: The luminescence and optical properties of promising cryogenic scintillator Li2MoO4 were studied in the temperature region of 2-300 K. The data on luminescence spectra and decay characteristics, excitation spectra, thermostimulated luminescence curves and spectra as well as transmission and reflectivity spectra are presented for the single crystals grown by two different procedures, the conventional Czochralski method and the low-temperature gradient Czochralski technique. The bandgap of Li2MoO4 is estimated from the analysis of transmission, luminescence excitation and reflectivity spectra. Up to three luminescence bands with the maxima at 1.98, 2.08 and 2.25 eV are detected in the emission spectra of crystals and their origin is discussed. In the thermoluminescence curves of both studied crystals, two high-intensity peaks were observed at 22 and 42 K, which are ascribed to the thermal release of self-trapped charge carriers. The coexistence of self-trapped electrons and holes allows one to explain the poor scintillation light yield of Li2MoO4 at low temperatures. (C) 2015 Elsevier B.V. All rights reserved.
Ключевые слова: CZOCHRALSKI TECHNIQUE; METAL TUNGSTATES; ABSORPTION; CENTERS; BOLOMETER; SEARCH; SINGLE-CRYSTALS; ENERGY; DOUBLE-BETA DECAY; Synchrotron radiation; Luminescence; Recombination and trapping; Optical properties; Li2MoO4; PBMOO4 CRYSTALS;
Издано: 2015
Физ. характеристика: с.195-202