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IRSL and post-IR IRSL residual doses recorded in modern dust samples from the Chinese Loess Plateau
Authors:Jan-Pieter Buylaert  Christine Thiel  Andrew S. Murray  Dimitri A.G. Vandenberghe  Shuangwen Yi  Huayu Lu
Affiliation:(1) School of Management, North University for Nationalities, Yinchuan, 750021, China;(2) College of Tourism and Environment, Shaanxi Normal University, Xi’an, 710062, China;(3) College of Atmospheric Science, Nanjing University of Information Science and Technology, Nanjing, 210044, China
Abstract:Using a set of modern/young (0 to about 200 years old) dust samples collected from the Chinese Loess Plateau the bleachability of IRSL measured at 50°C (IR50) and post-IR50 elevated temperature IRSL (measured at 225°C and at 290°C) is investigated by measuring the apparent (residual) doses recorded by these signals. Doses recorded by quartz OSL are used as a reference. Allowing for differences in dose rates it seems that both IRSL and post-IR IRSL signals yield residual doses that are significantly larger than the doses measured in quartz. These residual doses can be largely explained by thermal transfer caused by preheating. Nevertheless, we advise against the use of a low temperature preheat (<200°C) with IR50 to date loess samples because, as has been reported before, the signal appears to be thermally unstable. In general, we conclude that it may not be advisable to apply post-IR IRSL dating to Chinese loess samples where residuals of up to ∼20 Gy are a significant fraction of the total dose. However, these residuals quickly become unimportant when dating older samples, and this is the age range in which post-IR IRSL dating is likely to be most useful.
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