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三体相互作用和 hcp 固体 He 的弹性常数。

Three-body interactions and the elastic constants of hcp solid He.

机构信息

Department of Chemistry, University of Tennessee, Knoxville, Tennessee 37996-1600, USA.

出版信息

J Chem Phys. 2017 Sep 21;147(11):114504. doi: 10.1063/1.4985889.

DOI:10.1063/1.4985889
PMID:28938802
Abstract

The effect of three-body interactions on the elastic properties of hexagonal close packed solid He is investigated using variational path integral (VPI) Monte Carlo simulations. The solid's nonzero elastic constants are calculated, at T = 0 K and for a range of molar volumes from 7.88 cm/mol to 20.78 cm/mol, from the bulk modulus and the three pure shear constants C, C, and C. Three-body interactions are accounted for using our recently reported perturbative treatment based on the nonadditive three-body potential of Cencek et al. Previous studies have attempted to account for the effect of three-body interactions on the elastic properties of solid He; however, these calculations have treated zero point motions using either the Einstein or Debye approximations, which are insufficient in the molar volume range where solid He is characterized as a quantum solid. Our VPI calculations allow for a more accurate treatment of the zero point motions which include atomic correlation. From these calculations, we find that agreement with the experimental bulk modulus is significantly improved when three-body interactions are considered. In addition, three-body interactions result in non-negligible differences in the calculated pure shear constants and nonzero elastic constants, particularly at higher densities, where differences of up to 26.5% are observed when three-body interactions are included. We compare to the available experimental data and find that our results are generally in as good or better agreement with experiment as previous theoretical investigations.

摘要

使用变分路径积分 (VPI) 蒙特卡罗模拟研究了三体相互作用对六方密堆积固体 He 的弹性性质的影响。在 T = 0 K 下,从体弹性常数和三个纯剪切常数 C、C 和 C 计算了固体的非零弹性常数,摩尔体积范围从 7.88 cm/mol 到 20.78 cm/mol。使用最近基于 Cencek 等人的非加和三体势的微扰处理方法考虑了三体相互作用。先前的研究试图解释三体相互作用对固体 He 弹性性质的影响;然而,这些计算要么使用爱因斯坦要么使用德拜近似来处理零点运动,在固体 He 被描述为量子固体的摩尔体积范围内,这些近似是不够的。我们的 VPI 计算允许更准确地处理包括原子相关性的零点运动。从这些计算中,我们发现当考虑三体相互作用时,与实验体弹性常数的一致性得到了显著提高。此外,三体相互作用导致计算得到的纯剪切常数和非零弹性常数存在不可忽略的差异,特别是在较高密度下,当包括三体相互作用时,观察到高达 26.5%的差异。我们与现有的实验数据进行了比较,发现我们的结果与实验的一致性通常与以前的理论研究一样好或更好。

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