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An overview of recent developments in luminescence models with a focus on localized transitions

机译:省略局部转型的发光模型近期发展概述

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AbstractAdvances in modeling during the past 20 years have contributed to better understanding of the luminescence properties of dosimetric materials. Three types of models have been used extensively in the literature: delocalized models based on transitions involving the conduction and valence bands, localized models usually involving different energy levels of the same trap, and semilocalized models which are based on a combination of localized and delocalized energy levels. The purpose of this paper is to provide an overview of recent developments in luminescence models, with an emphasis on the importance of delocalized transitions. Two recent theoretical developments are discussed, namely analytical equations based on the Lambert W-function which are applicable for delocalized models, and analytical equations based on tunneling in a random distribution of defects which are applicable for localized models. A new model for luminescence in quartz is proposed, which is applicable for time scales ranging from microseconds to seconds. Recent Monte Carlo simulations of ground state tunneling in a random distribution of traps and centers are discussed, which are based on a modified version of a previously published model. Some of the current challenges associated with luminescence signals measured at elevated temperatures are pointed out, and suggestions are made for future work in this research area.Highlights
机译:<![CDATA [ 抽象 在过去20年中建模的进步有助于更好地了解剂量测量材料的发光性质。在文献中广泛使用了三种类型的模型:基于涉及导通和价带的过渡的划分模型,通常涉及相同陷阱的不同能量水平的局部模型,以及基于局部和分层能量的组合的半透明模型水平。本文的目的是提供近期发光模型的发展概述,重点是移植过渡过渡的重要性。讨论了两个最近的理论发展,即基于Lambert W函数的分析方程,其适用于基于隧道的分层模型,以及适用于局部模型的缺陷的随机分布的分析方程。提出了一种新的Quartze的发光模型,适用于从微秒到秒的时间尺度。讨论了陷阱和中心随机分布的地面隧道的最近蒙特卡罗模拟,这是基于先前发布的模型的修改版本。指出了与在高温下测量的发光信号相关的一些当前挑战,并为该研究区域的未来工作进行了建议。 亮点

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