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路径积分 Mayer 抽样法计算氦-4 分子的量子玻尔兹曼对维里系数的贡献。

Path-integral Mayer-sampling calculations of the quantum Boltzmann contribution to virial coefficients of helium-4.

机构信息

Department of Chemical and Biological Engineering, University at Buffalo, The State University of New York, Buffalo, New York 14260-4200, USA.

出版信息

J Chem Phys. 2012 Nov 14;137(18):184101. doi: 10.1063/1.4764857.

Abstract

We present Mayer-sampling Monte Carlo calculations of the quantum Boltzmann contribution to the virial coefficients B(n), as defined by path integrals, for n = 2 to 4 and for temperatures from 2.6 K to 1000 K, using state-of-the-art ab initio potentials for interactions within pairs and triplets of helium-4 atoms. Effects of exchange are not included. The vapor-liquid critical temperature of the resulting fourth-order virial equation of state is 5.033(16) K, a value only 3% less than the critical temperature of helium-4: 5.19 K. We describe an approach for parsing the Boltzmann contribution into components that reduce the number of Mayer-sampling Monte Carlo steps required for components with large per-step time requirements. We estimate that in this manner the calculation of the Boltzmann contribution to B(3) at 2.6 K is completed at least 100 times faster than the previously reported approach.

摘要

我们提出了 Mayer 抽样蒙特卡罗计算,用于计算由路径积分定义的量子玻尔兹曼对第二到第四维的 Virial 系数 B(n)的贡献,温度范围从 2.6 K 到 1000 K,使用最先进的从头算相互作用势来计算氦-4 原子对和三原子对的相互作用。不包括交换效应。由此产生的四阶维里方程状态的汽液临界温度为 5.033(16) K,比氦-4 的临界温度 5.19 K 仅低 3%。我们描述了一种将玻尔兹曼贡献分解为组件的方法,该方法减少了对于具有较大每步时间要求的组件所需的 Mayer 抽样蒙特卡罗步骤的数量。我们估计,通过这种方式,在 2.6 K 下计算 B(3)的玻尔兹曼贡献的速度至少比以前报告的方法快 100 倍。

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