用质心分子动力学方法分析低温氢的p-V-T关系的量子效应

H. Nagashima, S. Tsuda, N. Tsuboi, M. Koshi, A. Hayashi, T. Tokumasu
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引用次数: 0

摘要

本文采用经典分子动力学(MD)和路径积分质心MD (CMD)方法对低温氢的p-V-T关系进行了分析,以了解氢分子量子性质的影响。我们在广泛的密度温度范围内进行了NVE恒定MD模拟,以获得状态方程(EOS)。仿真结果与实验数据进行了比较。结果证实了经典磁导法不能再现高密度区的实验数据。另一方面,CMD很好地再现了液氢的热力学性质。此外,还澄清了考虑量子效应会使斥力变大而势变小。由于这种机制,氢的分子间相互作用减弱,病毒压力增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An analysis of quantum effect on the p-V-T relation of cryogenic hydrogen using centroid molecular dynamics method
In this paper, we conducted analysis of p-V-T relation of cryogenic hydrogen using classical Molecular Dynamics (MD) and path integral Centroid MD (CMD) method to understand an effect of quantum nature of hydrogen molecules. We performed NVE constant MD simulation across a wide density-temperature region to obtain an Equation Of State (EOS). Simulation results were compared with experimental data. As a result, it was confirmed that classical MD cannot reproduce the experimental data at the high density region. On the other hand, CMD well reproduces the thermodynamic properties of liquid hydrogen. Moreover, it was clarified that taking the quantum effect into account makes repulsion force larger and the potential well smaller. Because of this mechanism, the intermolecular interaction of hydrogen diminishes and the virial pressure increases.
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