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硬壁附近二元和多组分硬球混合物中的各向异性对关联:密度泛函理论与模拟的联合研究

Anisotropic pair correlations in binary and multicomponent hard-sphere mixtures in the vicinity of a hard wall: A combined density functional theory and simulation study.

作者信息

Härtel Andreas, Kohl Matthias, Schmiedeberg Michael

机构信息

Institut of Physics, Johannes Gutenberg-University Mainz, Staudinger Weg 9, 55128 Mainz, Germany.

Institute for Theoretical Physics II: Soft Matter, Heinrich-Heine University Düsseldorf, Universitätsstr. 1, 40225 Düsseldorf, Germany.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Oct;92(4):042310. doi: 10.1103/PhysRevE.92.042310. Epub 2015 Oct 16.

Abstract

The fundamental measure approach to classical density functional theory has been shown to be a powerful tool to predict various thermodynamic properties of hard-sphere systems. We employ this approach to determine not only one-particle densities but also two-particle correlations in binary and six-component mixtures of hard spheres in the vicinity of a hard wall. The broken isotropy enables us to carefully test a large variety of theoretically predicted two-particle features by quantitatively comparing them to the results of Brownian dynamics simulations. Specifically, we determine and compare the one-particle density, the total correlation functions, their contact values, and the force distributions acting on a particle. For this purpose, we follow the compressibility route and theoretically calculate the direct correlation functions by taking functional derivatives. We usually observe an excellent agreement between theory and simulations, except for small deviations in cases where local crystal-like order sets in. Our results set the course for further investigations on the consistency of functionals as well as for structural analysis on, e.g., the primitive model. In addition, we demonstrate that due to the suppression of local crystallization, the predictions of six-component mixtures are better than those in bidisperse or monodisperse systems. Finally, we are confident that our results of the structural modulations induced by the wall lead to a deeper understanding of ordering in anisotropic systems in general, the onset of heterogeneous crystallization, caging effects, and glassy dynamics close to a wall, as well as structural properties in systems with confinement.

摘要

经典密度泛函理论的基本度量方法已被证明是预测硬球系统各种热力学性质的有力工具。我们采用这种方法来确定硬球二元和六组分混合物在硬壁附近的单粒子密度以及两粒子关联。各向同性的破坏使我们能够通过将各种理论预测的两粒子特征与布朗动力学模拟结果进行定量比较,来仔细检验这些特征。具体而言,我们确定并比较单粒子密度、总关联函数、它们的接触值以及作用在粒子上的力分布。为此,我们沿着压缩性路径,通过求泛函导数从理论上计算直接关联函数。除了在出现局部类晶序的情况下存在小偏差外,我们通常观察到理论与模拟之间有很好的一致性。我们的结果为进一步研究泛函的一致性以及对例如原胞模型进行结构分析奠定了基础。此外,我们证明,由于局部结晶的抑制,六组分混合物的预测比双分散或单分散系统的预测更好。最后,我们相信,由壁引起的结构调制结果将有助于更深入地理解一般各向异性系统中的有序化、非均匀结晶的起始、笼效应以及靠近壁的玻璃态动力学,以及受限系统中的结构性质。

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