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Characteristics of LM-OSL from several different types of quartz

机译:几种不同类型石英的LM-OSL特性

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We present Linear-Modulation OSL (LM-OSL) curves from several different types of quartz, including sedimentary quartz, bulk rock crystal and synthetic quartz. The LM-OSL method consists of linearly increasing the intensity of the stimulation light while continuously monitoring the OSL emission from the sample. With this technique, one obtains peaks of luminescence intensity versus time (Bulur, 1996) in which the position of the peak is inversely related to the photoionization cross-section of the trap. The shape of the LM-OSL curve is directly related to the shape of the conventional OSL decay curve in which the stimulating light source is maintained at constant intensity (so-called Continuous-Wave OSL, or CW-OSL). In the latter, the OSL from the traps with the highest photoionization cross-section decays most rapidly with stimulation time, while OSL from those traps with smaller photoionization cross-sections is characterized by longer decay times. In this paper, data are presented comparing the CW-OSL and LM-OSL curves for several different quartz types with particular focus on the changes in the shapes of each of these curves with sample type pre-heat temperature, acid measurement temperature. Several different LM-OSL components are found for each sample, each with different photoionization cross-sections, but a universal behavior for quartz is not observed; each sample is different. From the dependence upon pre-heat temperature, features associated with shallow traps can be identified. Traps which empty very rapidly can be observed more easily in the LM-OSL curves than in the conventional CW-OSL curves, and the temperature dependence of the photoionization cross-section for the various components can be clearly discerned. (C) 2000 Elsevier Science Ltd. All rights reserved. [References: 12]
机译:我们介绍了几种不同类型石英的线性调制OSL(LM-OSL)曲线,包括沉积石英,块状晶体和合成石英。 LM-OSL方法包括线性增加刺激光的强度,同时连续监测样品的OSL发射。使用这种技术,可以获得发光强度随时间变化的峰(Bulur,1996),其中该峰的位置与阱的光电离截面成反比。 LM-OSL曲线的形状与常规OSL衰减曲线的形状直接相关,在传统OSL衰减曲线中,将刺激光源保持恒定的强度(所谓的“连续波OSL”或CW-OSL)。在后者中,具有最高光电离截面的阱的OSL随刺激时间衰减最快,而来自具有较小光电离截面的阱的OSL具有较长的衰减时间。在本文中,我们提供了比较几种不同石英类型的CW-OSL和LM-OSL曲线的数据,并特别关注了这些曲线的形状随样品类型的预热温度,酸测量温度的变化。对于每个样品,发现了几种不同的LM-OSL组分,每种组分具有不同的光电离截面,但是未观察到石英的普遍行为;每个样本都是不同的。根据对预热温度的依赖性,可以确定与浅阱有关的特征。与传统的CW-OSL曲线相比,在LM-OSL曲线中可以更容易地观察到非常快排空的陷阱,并且可以清楚地识别出各种组件的光电离截面的温度依赖性。 (C)2000 Elsevier ScienceLtd。保留所有权利。 [参考:12]

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