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A model for annealing of nuclear tracks in solids

机译:固体核径迹退火的模型

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摘要

A mathematical formula is derived for annealing of radiation induced damage in solids starting with the empirical equation having a form of the Arrhenius equation. This formula is transformed into a practical relationship in the usable form to fit the experimental track annealing data by making use of a relationship between fractional defect density in the latent track and etched track length. Calculated lengths of fission fragment tracks in annealed CR-39 based on the proposed model are compared with corresponding experimental measurements (our previously published results). A very good agreement is found between calculated results and experimental measurements. Physical meanings of parameters involved in the proposed model are given with appropriate theoretical explanation guided by analysis based on the model-fit on track annealing measurements. The results in this paper are useful for a wide spectrum of researchers including cosmic-ray physicists, geologists, nuclear track methodologists and semiconductor/accelerator physicists using ions implantation for doping semiconductors and materials modifications. (c) 2007 Elsevier Ltd. All rights reserved.
机译:从具有阿伦尼乌斯(Arrhenius)方程形式的经验方程开始,推导了用于对辐射引起的固体损伤进行退火的数学公式。通过利用潜迹中的部分缺陷密度与刻蚀迹线长度之间的关系,将该公式转换为可用形式的实用关系,以拟合实验迹线退火数据。将基于提出的模型计算出的退火CR-39中裂变碎片径迹的长度与相应的实验测量值(我们先前发表的结果)进行了比较。在计算结果和实验测量之间找到了很好的一致性。在基于轨道退火测量的模型拟合的分析指导下,通过适当的理论解释给出了所提出模型所涉及参数的物理含义。本文的结果对包括离子射线掺杂半导体和材料改性的宇宙射线物理学家,地质学家,核轨道方法学家以及半导体/加速器物理学家在内的广泛研究人员有用。 (c)2007 Elsevier Ltd.保留所有权利。

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