Wang Xipeng, Ramírez-Hinestrosa Simón, Dobnikar Jure, Frenkel Daan
Institute of Physics, Chinese Academy of Sciences, 8 Third South Street, Zhongguancun, Beijing 100190, China.
Phys Chem Chem Phys. 2020 May 21;22(19):10624-10633. doi: 10.1039/c9cp05445f. Epub 2019 Nov 4.
The Lennard-Jones 12-6 potential (LJ) is arguably the most widely used pair potential in molecular simulations. In fact, it is so popular that the question is rarely asked whether it is fit for purpose. In this paper, we argue that, whilst the LJ potential was designed for noble gases such as argon, it is often used for systems where it is not expected to be particularly realistic. Under those circumstances, the disadvantages of the LJ potential become relevant: most important among these is that in simulations the LJ potential is always modified such that it has a finite range. More seriously, there is by now a whole family of different potentials that are all called Lennard-Jones 12-6, and that are all different - and that may have very different macroscopic properties. In this paper, we consider alternatives to the LJ 12-6 potential that could be employed under conditions where the LJ potential is only used as a typical short-ranged potential with attraction. We construct a class of potentials that are, in many respects LJ-like but that are by construction finite ranged, vanishing quadratically at the cut-off distance, and that are designed to be computationally cheap. Below, we present this potential and report numerical data for its thermodynamic and transport properties, for the most important cases (cut-off distance r = 2σ ("LJ-like") and r = 1.2σ (a typical "colloidal" potential)).
伦纳德 - 琼斯12 - 6势(LJ)可以说是分子模拟中使用最广泛的对势。事实上,它非常受欢迎,以至于很少有人会问它是否适合特定用途。在本文中,我们认为,虽然LJ势是为氩等惰性气体设计的,但它经常被用于一些预计其并非特别逼真的系统。在这种情况下,LJ势的缺点就变得很突出:其中最重要的是,在模拟中LJ势总是被修改,使其具有有限的范围。更严重的是,现在有一整个不同势的家族都被称为伦纳德 - 琼斯12 - 6势,而它们都是不同的——并且可能具有非常不同的宏观性质。在本文中,我们考虑LJ 12 - 6势的替代方案,这些方案可用于LJ势仅被用作具有吸引力的典型短程势的条件下。我们构建了一类势,它们在许多方面类似于LJ势,但通过构造具有有限范围,在截止距离处二次方消失,并且设计为计算成本低。下面,我们展示这种势,并报告其在最重要情况下(截止距离r = 2σ(“类LJ”)和r = 1.2σ(典型的“胶体”势))的热力学和输运性质的数值数据。