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Centroid molecular dynamics approach to the transport properties of liquid para-hydrogen over the wide temperature range

机译:质心分子动力学方法研究宽温度范围内液态对氢的传输特性

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摘要

Fundamental transport properties of liquid para-hydrogen (p-H_2),i.e.,diffusion coefficients,thermal conductivity,shear viscosity,and bulk viscosity,have been evaluated by means of the path integral centroid molecular dynamics (CMD) calculations.These transport properties have been obtained over the wide temperature range,14-32 K.Calculated values of the diffusion coefficients and the shear viscosity are in good agreement with the experimental values at all the investigated temperatures.Although a relatively large deviation is found for the thermal conductivity,the calculated values are less than three times the amount of the experimental values at any temperature.On the other hand,the classical molecular dynamics has led all the transport properties to much larger deviation.For the bulk viscosity of liquid p-H_2,which was never known from experiments,the present CMD has given a clear temperature dependence.In addition,from the comparison based on the principle of corresponding states,it has been shown that the marked deviation of the transport properties of liquid p-H_2 from the feature which is expected from the molecular parameters is due to the quantum effect.
机译:已通过路径积分质心分子动力学(CMD)计算评估了液态对氢(p-H_2)的基本输运性质,即扩散系数,导热系数,剪切粘度和体积黏度。这些输运性质具有在14-32 K的较宽温度范围内获得了热导率。在所有研究温度下,扩散系数和剪切粘度的计算值均与实验值吻合良好。尽管发现导热系数存在较大偏差,计算值小于任何温度下的实验值的三倍。另一方面,经典的分子动力学使所有的输运性质产生了更大的偏差。对于液体p-H_2的体粘度,这从来没有从实验中得知,目前的CMD具有明确的温度依赖性。此外,根据相应状态原理的比较,已经表明,液体p-H_2的传输性质与从分子参数预期的特征的显着偏差是由于量子效应。

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