计算扩散系数所需的分子动力学实验时间

G. Poletaev, E. S. Medvedeva, Darya V. Novoselova, I. Zorya, M. Starostenkov
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引用次数: 2

摘要

本文对计算Ni中不同点缺陷(空位、双空位、自间隙原子、氢原子)迁移时扩散系数所需的分子动力学实验时间进行了评估。结果表明,在高于熔点0.6℃的温度下,通常进行100 ps的模拟就足够了。在计算金属晶体中杂质的扩散系数时,例如氢的扩散系数,可以通过引入大量杂质来减小杂质原子均方位移的误差。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Necessary Duration of a Molecular Dynamics Experiment for the Diffusion Coefficient Calculation
The evaluation of the necessary duration of a molecular dynamics experiment for the calculation of the diffusion coefficient at migration of different point defects in Ni (vacancy, bivacancy, self-interstitial atom, hydrogen atom) is held in the present work. It is shown that at the temperature higher than 0.6 of melting point is usually enough the simulation during of 100 ps for this. When calculating of the diffusion coefficient of impurity in the metal crystal, for example, of hydrogen, the decrease of error of mean-square displacements of impurity atoms can be achieved by introducing of a large number of the impurities.
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