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Photoionization of radiation-induced traps in quartz and alkali feldspars

For the optimization of luminescence dating and dosimetry techniques on the basis of the optically stimulated luminescence, the stimulation spectra of quartz and alkali feldspars were measured in the spectral region of 250–1100 nm using optically stimulated afterglow. Optically stimulated luminescen...

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Bibliographic Details
Published in:Applied radiation and isotopes 2001-01, Vol.54 (1), p.175-182
Main Authors: Hütt, G, Jaek, I, Vasilchenko, V
Format: Article
Language:English
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Summary:For the optimization of luminescence dating and dosimetry techniques on the basis of the optically stimulated luminescence, the stimulation spectra of quartz and alkali feldspars were measured in the spectral region of 250–1100 nm using optically stimulated afterglow. Optically stimulated luminescence in all studied spectral regions is induced by the same kind of deep traps, that produce thermoluminescence in the regions of palaeodosimetric peaks for both minerals. The mechanism for photoionization of deep traps was proposed as being due to delocalization of the excited state of the corresponding lattice defects. The excited state overlaps the zone states; i.e. is situated in the conduction band. Because of the high quantum yield of deep electron trap ionization in the UV spectral region, the present aim was to study the possibility of using UV-stimulation for palaeodose reconstruction.
ISSN:0969-8043
1872-9800
DOI:10.1016/S0969-8043(99)00273-0