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Primary damage formation in molybdenum: a computer simulation study

机译:钼的主要危害形成:计算机模拟研究

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The primary damage formation in Mo is investigated using molecular dynamics (MD) simulation with embedded-defect (ED) and embedded-atom method (EAM) interatomic potentials. The former is similar in spirit to the latter but includes an approximate treatment of bond directionality in the many-body interaction. MD simulations are used to calculate threshold displacement energy as function of crystallographic orientation and displacement cascade evolution resulting from primary knock-on atoms (PKAs) with energies ranging from 0.5 up to 50 keV. The defect structures produced with increasing PKA energy are analysed and the results obtained are compared for the two potentials and with simulations from the literature for other bcc materials. The impact of temperature and inelastic losses on the cascade characteristics are also discussed. The ED approach is in better agreement with the experimental findings on threshold energy. It also predicts larger vacancy clusters as well as a larger fraction of clustered vacancies than the EAM does; this seems to be more consistent with experiment, however, on statistical grounds a definite assessment is not possible with the number of simulations performed. Inelastic losses coupled with the thermal spike affect the defect production in subtle ways, especially at the higher energies considered here. This does not seem to have been realized before and deserves to be studied more comprehensively. [References: 33]
机译:使用具有嵌入缺陷(ED)和嵌入原子方法(EAM)原子间电势的分子动力学(MD)模拟研究了Mo中的主要损伤形成。前者在精神上与后者相似,但在多体交互作用中包括对键方向性的近似处理。 MD模拟被用来计算阈值位移能量,该位移能量是晶体取向和位移级联演化的函数,该位移级联演化是由能量在0.5至50 keV范围内的一次撞击原子(PKAs)产生的。分析了随着PKA能量的增加而产生的缺陷结构,并比较了两种电势获得的结果,并与其他密件抄送材料的文献模拟进行了比较。还讨论了温度和非弹性损失对级联特性的影响。 ED方法与阈值能量的实验结果更好地吻合。与EAM相比,它还预测了更大的空缺集群以及更大比例的集群空缺。这似乎与实验更加吻合,但是,从统计的角度来看,无法对执行的模拟次数进行明确的评估。非弹性损耗和热尖峰以微妙的方式影响缺陷产生,特别是在此处考虑的较高能量下。这似乎以前尚未实现,值得更全面地研究。 [参考:33]

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