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结构在一种简单玻璃形成液体的α和β动力学中的作用。

Role of structure in the α and β dynamics of a simple glass-forming liquid.

作者信息

Fragiadakis D, Roland C M

机构信息

Naval Research Laboratory, Chemistry Division, Washington, DC 20375-5342, USA.

出版信息

Phys Rev E. 2017 Feb;95(2-1):022607. doi: 10.1103/PhysRevE.95.022607. Epub 2017 Feb 17.

Abstract

The elusive connection between dynamics and local structure in supercooled liquids is an important piece of the puzzle in the unsolved problem of the glass transition. The Johari-Goldstein β relaxation, ubiquitous in glass-forming liquids, exhibits mean properties that are strongly correlated to the long-time α dynamics. However, the former comprises simpler, more localized motion, and thus has perhaps a more straightforward connection to structure. Molecular dynamics simulations were carried out on a two-dimensional, rigid diatomic molecule (the simplest structure exhibiting a distinct β process) to assess the role of the local liquid structure on both the Johari-Goldstein β and the α relaxation. Although the average properties for these two relaxations are correlated, there is no connection between the β and α properties of a given (single) molecule. The propensity for motion at long times is independent of the rate or strength of a molecule's β relaxation. The mobility of a molecule averaged over many initial energies, a measure of the influence of structure, was found to be heterogeneous, with clustering at both the β and α time scales. This heterogeneity is less extended spatially for the β than for the α dynamics, as expected; however, the local structure is the more dominant control parameter for the β process. In the glassy state, the arrangement of neighboring molecules determines entirely the relaxation properties, with no discernible effect from the particle momenta.

摘要

过冷液体中动力学与局部结构之间难以捉摸的联系,是玻璃化转变这一未解决问题拼图中的重要一块。在玻璃形成液体中普遍存在的乔哈里 - 戈尔茨坦β弛豫,其平均性质与长时间的α动力学密切相关。然而,前者包含更简单、更局部化的运动,因此可能与结构有更直接的联系。对二维刚性双原子分子(展现出独特β过程的最简单结构)进行了分子动力学模拟,以评估局部液体结构对乔哈里 - 戈尔茨坦β弛豫和α弛豫的作用。尽管这两种弛豫的平均性质相关,但给定(单个)分子的β和α性质之间没有联系。长时间运动的倾向与分子β弛豫的速率或强度无关。发现对许多初始能量求平均的分子迁移率,这一结构影响的量度是不均匀的,在β和α时间尺度上都存在聚集。正如预期的那样,β弛豫在空间上的这种不均匀性比α动力学的要小;然而,局部结构是β过程更主要的控制参数。在玻璃态下,相邻分子的排列完全决定了弛豫性质,粒子动量没有明显影响。

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