Appraisal of the realistic accuracy of molecular dynamics of high-pressure hydrogen

G. Ackland, I. Magdău
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引用次数: 5

Abstract

Molecular dynamics (MD) is a powerful method for studying the behaviour of materials at high temperature. In practice, however, its effectiveness in representing real systems is limited by the accuracy of the forces, finite size effects, quantization and equilibration methods. In this paper, we report and discuss some calculations carried out using MD on high-pressure hydrogen, reviewing a number of sources of error, of which the neglect of zero-point vibrations is quantitatively the largest. We show that simulations using ab initio MD with the PBE functional predict a large stability field for the molecular Cmca4 structure at pressures just above those achieved in current experiments above the stability range of the mixed molecular layered Phase IV. However, the various errors in the simulation all point towards a much smaller stability range, and the likelihood of a non-molecular phase based on low-coordination networks or chains of atoms.
高压氢分子动力学的现实精度评价
分子动力学(MD)是研究材料高温行为的有力方法。然而,在实践中,它在表示实际系统方面的有效性受到力的准确性、有限尺寸效应、量化和平衡方法的限制。在本文中,我们报告和讨论了一些使用MD在高压氢气上进行的计算,回顾了一些误差来源,其中零点振动的忽略在数量上是最大的。我们表明,使用带有PBE泛函数的从头算MD进行模拟,预测了分子cca4结构在压力刚好高于当前实验中达到的稳定场,高于混合分子层状相IV的稳定范围。然而,模拟中的各种误差都指向一个小得多的稳定范围,以及基于低配位网络或原子链的非分子相的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cogent Physics
Cogent Physics PHYSICS, MULTIDISCIPLINARY-
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