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A Molecular Dynamics Study of Nuclear Quantum Effect on the Diffusion of Hydrogen in Condensed Phase

机译:核量子效应对冷凝阶段氢气扩散的分子动力学研究

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In this paper, the quantum effect of hydrogen molecule on its diffusivity is analyzed using Molecular Dynamics (MD) method. The path integral centroid MD (CMD) method is applied for the reproduction method of time evolution of the molecules. The diffusion coefficient of liquid hydrogen is calculated using the Green-Kubo method. The simulation is performed at wide temperature region and the temperature dependence of the quantum effect of hydrogen molecule is addressed. The calculation results are compared with those of classical MD results. As a result, it is confirmed that the diffusivity of hydrogen molecule is changed depending on temperature by the quantum effect. It is clarified that this result can be explained that the dominant factor by quantum effect on the diffusivity of hydrogen changes from the swollening the potential to the shallowing the potential well around 30 K. Moreover, it is found that this tendency is related to the temperature dependency of the ratio of the quantum kinetic energy and classical kinetic energy.
机译:本文采用分子动力学(MD)法分析了氢分子对氢分子对其扩散性的量子效应。路径积分质心MD(CMD)方法应用于分子的时间演化的再现方法。使用绿色kBO方法计算液态氢的扩散系数。在宽温度区域下进行模拟,并寻址氢分子的量子效应的温度依赖性。将计算结果与古典MD结果进行比较。结果,证实氢分子的扩散性根据量子效应根据温度而改变。阐明了该结果可以解释:量子效应对氢气的扩散性的显性因素从膨胀到潜在的潜在井约30k。此外,发现这种趋势与温度有关量子动能和古典动能比率的依赖性。

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