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Strategies for equivalent dose determination without heating, suitable for portable luminescence readers

机译:不加热的等效剂量测定的策略,适用于便携式发光读卡器

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摘要

In recent years a number of portable instruments have been built for measuring the optically stimulated luminescence (OSL) signal from naturally occurring minerals. Some of these instruments have incorporated ionising radiation sources, giving the possibility of determining an equivalent dose (D-e), but little use has been made of these. One challenge has been that heating samples in this type of equipment is a major engineering challenge, yet methods for D-e determination use thermal pretreatments to remove charge from unstable traps, making signals arising from irradiation in nature and the laboratory comparable. This paper explores three strategies for obtaining accurate estimates of the D-e of samples in situations where thermal treatments are not possible: (1) deriving a correction factor based on comparing D-e values obtained using protocols with and without heating; (2) removing the contribution from the 110 degrees C TL peak and other unstable defects by component fitting the unheated OSL signal; and (3) adding a small beta dose to the sample prior to measurement of the natural luminescence signal so that the 110 degrees C TL peak is filled, making this measurement comparable with regeneration measurements where this peak is also populated. All three methods are promising when applied to quartz that has been physically separated from samples using standard laboratory procedures. The next step in this work will be to explore whether such methods can be applied to mixed mineral assemblages as would be encountered in the field.
机译:近年来,已经建立了许多便携式仪器用于测量来自天然存在的矿物质的光学刺激的发光(OSL)信号。其中一些仪器已掺入电离辐射源,具有确定等效剂量(D-E)的可能性,但是使用了很少的使用。一项挑战一直在于,这种类型的设备中的加热样本是一个主要的工程挑战,但D-E的方法使用热预处理来从不稳定的陷阱中去除电荷,使得来自自然​​辐射产生的信号和实验室相当的信号。本文探讨了在不可能的情况下获得样品D-e的准确估计的三种策略:(1)基于比较使用具有和不加热的协议获得的D-E值来导出校正因子; (2)通过组件拟合未加热的OSL信号,从110度C TL峰值和其他不稳定缺陷中取出贡献; (3)在测量天然发光信号之前将小β剂量添加到样品中,使得110℃的TL峰填充,使得该测量与再生测量相当,其中填充该峰值。当应用于使用标准实验室程序的样品物理分离的石英时,所有三种方法都具有很有希望的。这项工作的下一步将是探索这些方法是否可以应用于混合矿物组合,如现场所遇到的。

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