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Time resolved luminescence spectroscopy of wide bandgap insulators

This is a review of the recent activity of a collaboration on the basis of an INTAS grant ‘The luminescence process — a study of the excitation and radiation dynamics of materials using synchrotron radiation’. For the following crystals (CeF 3, LaF 3:Ce, PWO, LSO:Ce, CsI, RbI, KI, CsF, CsCl, BaF 2,...

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Published in:Journal of electron spectroscopy and related phenomena 1996-05, Vol.79, p.99-102
Main Authors: Becker, J, Belsky, A.N, Bouttet, D, Dujardin, C, Gektin, A.V, Hopkirk, A, Ivanov, S.N, Kamenskikh, I.A, Kirikova, N.Y, Klimenko, V, Kolobanov, V.N, Makhov, V.N, Martin, P, Mikhailin, V.V, Munro, I.H, Mythen, C, Orekhanov, P.A, Pedrini, C, Schroeder, A, Shaw, D.A, Shiran, N, Shpinkov, I.N, Vasil'ev, A.N, Zimmerer, G
Format: Article
Language:English
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Summary:This is a review of the recent activity of a collaboration on the basis of an INTAS grant ‘The luminescence process — a study of the excitation and radiation dynamics of materials using synchrotron radiation’. For the following crystals (CeF 3, LaF 3:Ce, PWO, LSO:Ce, CsI, RbI, KI, CsF, CsCl, BaF 2, CsPbCl 3, etc.) in the UV, VUV, XUV, and X-ray regions the sequential steps of the energy conversion of a high-energy photon into a luminescence quantum have been studied: (i) absorption; (ii) multiplication of electronic excitations; (iii) migration in the process of thermalisation; (iv) emission center excitation.
ISSN:0368-2048
1873-2526
DOI:10.1016/0368-2048(96)02812-5