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首页> 外文期刊>Radiation measurements >A new look at the linear-modulated optically stimulated luminescence (LM-OSL) as a tool for dating and dosimetry
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A new look at the linear-modulated optically stimulated luminescence (LM-OSL) as a tool for dating and dosimetry

机译:线性调制的光激发发光(LM-OSL)作为约会和剂量测定的一种新方法

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Optically stimulated luminescence (OSL) has been in use for dosimetry and dating in the last two decades. Since the OSL dependence on time is a featureless decaying function, a linear-modulation of the stimulating-fight intensity has been suggested [Bulur, E., 1996. An alternative technique for optically stimulated luminescence. Radiat. Meas. 26, 701-709.], which resulted in a peak-shaped curve. The properties of this curve have been studied, assuming first-, second- and general-order kinetics. in a recent paper we have shown [Chen, R., Pagonis, V., 2008. A unified presentation of thermoluminescence (TL), phosphorescence and linear-modulated OSL (LM-OSL). J. Phys. D: Appl. Phys. 41, 035102 (16).] that for general-order curves, the peak maximum cannot be expected to depend linearly on the dose of excitation. A new presentation of the LM-OSL has been suggested, in which the peak maximum is linear with the filling of trapping states, which, in turn, may be expected to be linear with the dose under appropriate conditions. In the present work, we report on results of numerical simulation of the LM-OSL using the one trap-one recombination center (OTOR) model, dealing with the traffic of carriers between one trapping state, one kind of recombination center and the conduction and valence bands during excitation and read-out, and without making any simplifying assumptions. The process during optical read-out has been followed in the simulation that consisted of the numerical solution of the relevant sets of coupled differential equations, and also by analytical treatment. Sets of parameters leading to approximately first- and second-order kinetics, and to intermediate cases, have been used and the results presented in the original and the new ways are shown. The consequences concerning dating and dosimetry are discussed.
机译:在过去的二十年中,光激发发光(OSL)已用于剂量测定和测年。由于OSL对时间的依赖性是无特征的衰减函数,因此已经提出了激发-战斗强度的线性调制[Bulur,E.,1996。光学激发的发光的替代技术。辐射。测量。 26,701-709。],导致出现峰状曲线。假设一阶,二阶和一般动力学,已经研究了该曲线的特性。在最近的论文中,我们显示了[Chen,R.,Pagonis,V.,2008。热致发光(TL),磷光和线性调制OSL(LM-OSL)的统一表示。 J.物理D:应用物理41,035102(16)。],对于一般阶曲线,不能期望最大峰值线性地取决于激发剂量。已经提出了LM-OSL的新描述,其中最大峰值与俘获态的填充呈线性关系,而在适当条件下,预期其与剂量呈线性关系。在本工作中,我们报告使用一个陷阱一复合中心(OTOR)模型对LM-OSL进行数值模拟的结果,该模型处理载流子在一种陷阱状态,一种重组中心与传导和传导之间的通信量。激发和读出过程中的价带,并且没有做任何简化的假设。在模拟中遵循光学读出期间的过程,该过程包括相关的耦合微分方程组的数值解以及解析处理。使用了导致近似一阶和二阶动力学以及中间情况的参数集,并显示了原始和新方法中呈现的结果。讨论了有关日期和剂量的后果。

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