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Influence of free surfaces on microstructure evolution of radiation damage in Fe from molecular dynamics and object kinetic Monte Carlo calculations

机译:从分子动力学和物体动力学蒙特卡洛计算,自由表面对铁中辐射损伤的微观结构演变的影响

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摘要

The influence of surfaces on the evolution of damage of irradiated Fe is studied using object kinetic Monte Carlo with input from molecular dynamics simulations and ab initio calculations. Two effects are analysed: the influence of traps and the initial distribution of damage in the cascade. These simulations show that for a trap concentration of around 100 appm, there are no significant differences between defect concentrations in bulk and thin films. However, the initial distribution of defects plays an important role not only on total defect concentration but also on defect type, for the model used in this study. Damage produced by a 100 keV Fe ion impinging a Fe thin film. Blue (dark) spheres are self-interstitials, red (light) spheres are vacancies.
机译:利用分子动力学模拟和从头算的输入,使用物体动力学蒙特卡洛研究了表面对辐照铁损伤演化的影响。分析了两个影响:陷阱的影响和级联中损坏的初始分布。这些模拟表明,对于陷阱浓度为约100µappm的样品,体和薄膜中的缺陷浓度之间没有显着差异。但是,对于本研究中使用的模型,缺陷的初始分布不仅对总缺陷浓度而且对缺陷类型都起着重要作用。 100 keV Fe离子撞击Fe薄膜会造成损坏。蓝色(深色)球是自填式广告,红色(浅色)球是空缺。

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