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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Thermoluminescence glow curves in preheated feldspar: A Monte Carlo study
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Thermoluminescence glow curves in preheated feldspar: A Monte Carlo study

机译:预热长石的热致发光辉光曲线:蒙特卡洛研究

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Thermoluminescence (TL) glow curves from feldspars have been the subject of numerous experimental and modeling studies, because of their importance in dosimetry and luminescence dating. Recently there also has been increased interest in using these signals for temperature sensing and for thermochronometry studies. It is now generally accepted that these materials exhibit anomalous fading phenomena due to quantum mechanical tunneling, and that several of their luminescence signals can be described by localized energy transitions taking place in a randomly distributed system of trapped electrons and recombination centers. Our recent modeling work showed that the TL signals of freshly irradiated feldspar samples can also be described from a completely microscopic point of view, by using Monte Carlo methods. This paper extends this recent work, and shows how the Monte Carlo method can also describe TL signals from thermally pretreated feldspars. Specifically, the simulations show that the Monte Carlo method can describe several types of TL experiments for irradiated samples that underwent partial thermal cleaning, and for samples that underwent more complex multistage isothermal procedures. The results from the Monte Carlo simulations are compared quantitatively with experimental data from several types of feldspars, which were preheated at temperatures above 200-300 degrees C. Common experimental characteristics are pointed out for these preheated feldspars, and the experimental data suggest the possibility of a universal description of the thermal behavior of IL glow curves in feldspars. Specifically, it is found that the shape and width of the experimental TL glow curves do not change significantly for different preheat temperatures, and also do not change when different preheat times are used at a fixed preheat temperature. The relevance of these results for dosimetric and thermochronometry studies is discussed.
机译:长石的热致发光(TL)辉光曲线已成为许多实验和建模研究的主题,因为它们在剂量测定和发光测年中很重要。最近,人们对将这些信号用于温度感测和热计时的研究也越来越感兴趣。现在已经普遍接受的是,由于量子机械隧道效应,这些材料表现出异常的衰落现象,并且它们的一些发光信号可以通过在随机分布的俘获电子和复合中心的系统中发生的局部能量跃迁来描述。我们最近的建模工作表明,使用蒙特卡洛方法,也可以从完全微观的角度描述新鲜辐照的长石样品的TL信号。本文扩展了这项最新工作,并展示了蒙特卡洛方法还如何描述经过热处理的长石的TL信号。具体而言,仿真显示,蒙特卡洛方法可以描述几种类型的TL实验,用于经过部分热清洗的辐照样品以及经过更复杂的多级等温程序的样品。蒙特卡罗模拟的结果与几种长石的实验数据进行了定量比较,这些长石在200-300摄氏度以上的温度下进行了预热。指出了这些预热的长石的共同实验特征,并且实验数据表明有可能长石中IL辉光曲线的热行为的通用描述。具体地,发现实验TL辉光曲线的形状和宽度对于不同的预热温度没有显着改变,并且当在固定的预热温度下使用不同的预热时间时也没有改变。讨论了这些结果与剂量法和热计时法研究的相关性。

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