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Atomistic simulation of clustering and annihilation of point defects in Molybdenum

机译:钼中点缺陷的聚类和湮灭原子模拟

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Evolution of a molybdenum system containing self-interstitials and vacancies was studied by molecular dynamics simulation using a new molybdenum interatomic potential. The potential was parameterized by using formation and migration energies of the defects. Clustering and annihilation of the defects were investigated in terms of the defect concentration changes during the calculation. The rate constants were evaluated and compared with the diffusion coefficients. Also investigated was the influence of one-dimensional diffusion on kinetics, as well as the effects of temperature and defect concentrations on the reaction rates.
机译:利用新的钼内部潜力,通过分子动力学模拟研究了含有自夸缩和空位的钼系统的演变。通过使用缺陷的形成和迁移能量来参数化潜力。在计算过程中的缺陷浓度变化方面,研究了缺陷的聚类和湮灭。评估速率常数并与扩散系数进行比较。还研究了一维扩散对动力学的影响,以及温度和缺陷浓度对反应速率的影响。

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