Viscardy S, Servantie J, Gaspard P
Center for Nonlinear Phenomena and Complex Systems, Université Libre de Bruxelles, Campus Plaine, Code Postal 231, B-1050 Brussels, Belgium.
J Chem Phys. 2007 May 14;126(18):184512. doi: 10.1063/1.2724820.
The authors propose a new method, the Helfand-moment method, to compute the shear viscosity by equilibrium molecular dynamics in periodic systems. In this method, the shear viscosity is written as an Einstein-type relation in terms of the variance of the so-called Helfand moment. This quantity is modified in order to satisfy systems with periodic boundary conditions usually considered in molecular dynamics. They calculate the shear viscosity in the Lennard-Jones fluid near the triple point thanks to this new technique. They show that the results of the Helfand-moment method are in excellent agreement with the results of the standard Green-Kubo method.
作者提出了一种新方法——赫尔芬德矩方法,用于通过周期性系统中的平衡分子动力学来计算剪切粘度。在该方法中,剪切粘度根据所谓的赫尔芬德矩的方差被写成爱因斯坦型关系。对这个量进行了修正,以适用于分子动力学中通常考虑的具有周期性边界条件的系统。借助这项新技术,他们计算了 Lennard-Jones 流体在三相点附近的剪切粘度。他们表明,赫尔芬德矩方法的结果与标准格林-久保方法的结果非常吻合。