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Quartz luminescence response to a mixed alpha-beta field: Investigations on Romanian loess.

Authors :
Constantin, Daniela
Jain, Mayank
Murray, Andrew S.
Buylaert, Jan-Pieter
Timar-Gabor, Alida
Source :
Radiation Measurements. Oct2015, Vol. 81, p110-115. 6p.
Publication Year :
2015

Abstract

Previous SAR-OSL dating studies using quartz extracted from Romanian and Serbian loess samples report SAR-OSL dose–response curves on fine grained (4–11 μm) quartz that grow to much higher doses compared to those of coarse-grained (63–90, 90–125, 125–180 μm) quartz. Furthermore, quartz SAR-OSL laboratory dose response curves do not reflect the growth of the OSL signal in nature. A main difference in coarse- and fine-grained quartz dating lies in the alpha irradiation history, but the effect of mixed alpha-beta fields has so far received little attention. In the present study we investigate whether the alpha dose experienced by fine grains over geological cycles of irradiation and bleaching may have an effect on the saturation characteristics of the laboratory dose response. By applying time resolved optically stimulated luminescence we confirm that the OSL signals induced in quartz by alpha and beta radiation follow the same recombination path. We also show that a mixed alpha-beta dose response reproduces the beta dose response only up to about 800 Gy. Assuming an a-value of 0.04 we have shown that laboratory alpha and beta dose response curves overlap up to effective alpha doses of ∼50 Gy. Based on these results, we conclude that exposure of fine grains to alpha radiation during burial and transport cycles prior to deposition, as well exposure to the mixed radiation field experienced during burial are not responsible for the age discrepancies previously reported on fine and coarse grained quartz extracted from Romanian and Serbian loess. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13504487
Volume :
81
Database :
Academic Search Index
Journal :
Radiation Measurements
Publication Type :
Academic Journal
Accession number :
110475159
Full Text :
https://doi.org/10.1016/j.radmeas.2015.01.001