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Ab initio threshold displacement energies in iron

机译:铁中从头算起的阈值位移能

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The threshold displacement energy in iron is determined using ab initio molecular dynamics. This is the most fundamental input parameter for radiation damage assessments. The predictions agree well with the available experiments and provide a significantly lower average value for iron than the standard one. This result impacts radiation damage assessments in iron alloys and steels and especially so for dose estimations and conditions close to the threshold. The importance of using an appropriate description of the core and valence electrons is highlighted. Energy loss simulations provide important fitting parameters for improved interatomic potentials.IMPACT STATEMENT Ground-breaking ab initio calculations of the threshold displacement energies in iron show significant differences in the angular anisotropy and predicted average value with respect to previous literature.
机译:铁中的阈值位移能是使用从头算分子动力学来确定的。这是评估辐射损伤的最基本输入参数。这些预测与可用的实验非常吻合,并且铁的平均值远低于标准值。该结果影响铁合金和钢中的辐射损伤评估,尤其是对于剂量估算和接近阈值的条件。强调了对核和价电子进行适当描述的重要性。能量损失模拟为提高原子间电势提供了重要的拟合参数。冲击陈述铁中阈值位移能的突破性的从头算起显示,与以往的文献相比,角各向异性和预测平均值存在显着差异。

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