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Riso calibration quartz - A challenge for β-source calibration. An applied study with relevance for luminescence dating

机译:Riso校准石英-β源校准的挑战。与发光测年有关的应用研究

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摘要

Riso calibration quartz (RCQ) is used worldwide in luminescence laboratories to calibrate β-sources. RCQ is advantageous because the inherent γ-dose is determined conveniently with a blue light stimulated luminescence (BLSL) single aliquot regeneration (SAR) protocol and dose equivalents (D_Es) are highly reproducible with standard errors of the mean of usually <2%. We report on a series of tests on the recoverability of known β-doses from RCQ and on D_E-determination of γ-dosed RCQ with varying SAR-measurement parameters. Evaluated alone, these raise doubt whether the precise calibration results are systematically correct. However, it is likely that cutheat and preheat adjustment of 'quick calibration' as applied by staff members of the Radiation Research Division of the Technical University of Denmark when installing a new luminescence reader in a customer's laboratory are appropriate to minimize systematic errors. This finding is suggested by comparative calibration of a β-source with RCQ and another γ-irradiated quartz.
机译:Riso校准石英(RCQ)在全世界的发光实验室中用于校准β源。 RCQ的优势在于,固有的γ剂量可通过蓝光激发发光(BLSL)单等分试样再生(SAR)方案方便地确定,并且剂量当量(D_Es)可以高度重现,标准误差通常小于2%。我们报告了一系列有关从RCQ回收已知β剂量的测试,以及对D剂量确定的RC剂量的RCQ的SAR测量参数进行了D_E测定。单独进行评估,就使人们怀疑精确的校准结果是否系统正确。但是,丹麦技术大学辐射研究部门的工作人员在客户实验室中安装新的发光读取器时采用的“快速校准”的余热和预热调整很可能适合于最大程度地减少系统误差。通过使用RCQ和另一个γ辐照石英对β源进行比较校准,可以暗示这一发现。

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