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一维高斯核流体:从正常扩散到单分子动力学的有序和交叉。

One-dimensional Gaussian-core fluid: ordering and crossover from normal diffusion to single-file dynamics.

机构信息

Subdirección de Postgrado e Investigación, Instituto Tecnológico Superior de Xalapa, Sección 5A Reserva Territorial s/n, 91096, Xalapa, Veracruz, Mexico.

Departamento de Física Aplicada, Cinvestav, Unidad Mérida, Apartado Postal 73 Cordemex, 97310, Mérida, Yucatán, Mexico.

出版信息

Soft Matter. 2016 Nov 9;12(44):9047-9057. doi: 10.1039/c6sm01558a.

Abstract

The peculiarity of a bounded pair potential in combination with strong confinement brings some quite interesting new phenomenology in the structure and dynamics of one-dimensional colloidal systems. Such behaviour is atypical in comparison with colloidal systems interacting with potentials that diverge at the origin. In this contribution, by means of molecular dynamics simulations, a confined one-dimensional model of particles interacting via a Gaussian-core pair potential is studied. We explore the effects of confinement, density and temperature on the structural and dynamical correlation functions. Our findings indicate that the static and dynamic liquid-state anomalies already reported in open systems are also present in this 1D model system. Using the radial distribution function and the static structure factor to characterise the spatial ordering, it is observed that the system remains fluid at all densities. However, when the reduced temperature is above 0.03, it displays typical features of a liquid regime, i.e., there exist short-range spatial correlations among particles. In contrast, at lower temperatures and densities, where the particle-particle interaction dominates, the system behaves structurally and dynamically similar to a hard-core repulsive system. In such a region, interestingly, there is a crossover from a liquid to a solid-like regime. At any given temperature, the system undergoes a sort of reentrant structural behaviour as the density increases. At either high densities or temperatures, particle correlations vanish, thus, the system exhibits structural and dynamical properties similar to those of an ideal gas. To examine a possible correlation between the structural anomalies and the diffusive behaviour, the mean-square displacement and the self-intermediate scattering function are also computed. From these observables, we establish the thermodynamic phase-space points where the dynamical behaviour is non-monotonic. In conjunction with the observed anomalous diffusion, we have found a dynamical crossover from single-file diffusion, which is characteristic of one-dimensional systems with a well-defined hard-core, to the ordinary Fickian diffusion present in open systems.

摘要

在强约束下的有限对势的特殊性给一维胶体系统的结构和动力学带来了一些相当有趣的新现象。与在原点发散的势相互作用的胶体系统相比,这种行为是非典型的。在本研究中,通过分子动力学模拟,研究了一种受限的一维模型,其中粒子通过高斯核对势相互作用。我们探索了约束、密度和温度对结构和动力学相关函数的影响。我们的发现表明,在开放系统中已经报道的静态和动态液相异常也存在于这个一维模型系统中。使用径向分布函数和静态结构因子来描述空间有序性,我们观察到在所有密度下,系统都保持液态。然而,当约化温度高于 0.03 时,它表现出典型的液态特征,即粒子之间存在短程空间相关性。相比之下,在较低的温度和密度下,当粒子-粒子相互作用占主导地位时,系统在结构和动力学上表现得类似于硬球排斥系统。在这样的区域中,有趣的是,存在从液态到类似固态的转变。在任何给定的温度下,随着密度的增加,系统经历了一种再进入的结构行为。在高密度或高温下,粒子相关性消失,因此,系统表现出类似于理想气体的结构和动力学性质。为了研究结构异常和扩散行为之间的可能相关性,还计算了均方位移和自中间散射函数。从这些可观测量中,我们确定了动力学行为非单调的热力学相空间点。结合观察到的异常扩散,我们发现了从单链扩散到普通的菲克扩散的动力学转变,这是具有明确定义的硬球的一维系统的特征。

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