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On the use of SRIM for computing radiation damage exposure

机译:关于使用SRIM计算辐射损伤暴露

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摘要

The SRIM (formerly TRIM) Monte Carlo simulation code is widely used to compute a number of parameters relevant to ion beam implantation and ion beam processing of materials. It also has the capability to compute a common radiation damage exposure unit known as atomic displacements per atom (dpa). Since dpa is a standard measure of primary radiation damage production, most researchers who employ ion beams as a tool for inducing radiation damage in materials use SRIM to determine the dpa associated with their irradiations. The use of SRIM for this purpose has been evaluated and comparisons have been made with an internationally-recognized standard definition of dpa, as well as more detailed atomistic simulations of atomic displacement cascades. Differences between the standard and SRIM-based dpa are discussed and recommendations for future usage of SRIM in radiation damage studies are made. In particular, it is recommended that when direct comparisons between ion and neutron data are intended, the Kinchin-Pease option of SRIM should be selected.
机译:SRIM(以前称为TRIM)蒙特卡罗模拟代码被广泛用于计算与离子束注入和材料离子束处理有关的许多参数。它还具有计算常见的辐射破坏暴露单位(称为每原子原子位移(dpa))的能力。由于dpa是主要辐射损伤产生的标准量度,因此大多数使用离子束作为诱发材料中辐射损伤的工具的研究人员都使用SRIM来确定与其辐射相关的dpa。为此,对SRIM的使用进行了评估,并与国际公认的dpa标准定义进行了比较,并对原子位移级联进行了更详细的原子模拟。讨论了标准dpa和基于SRIM的dpa之间的差异,并提出了SRIM在辐射损伤研究中未来使用的建议。特别是,建议在直接比较离子和中子数据时,应选择SRIM的Kinchin-Pease选项。

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