Université Montpellier 2, Laboratoire Charles Coulomb UMR 5221, Montpellier, 34095 France.
J Chem Phys. 2013 Mar 28;138(12):12A539. doi: 10.1063/1.4773355.
We present a numerical evaluation of the three-point static correlations functions of the Kob-Andersen Lennard-Jones binary mixture and of its purely repulsive, Weeks-Chandler-Andersen variant. In the glassy regime, the two models possess a similar pair structure, yet their dynamics differ markedly. The static triplet correlation functions S(3) indicate that the local ordering is more pronounced in the Lennard-Jones model, an observation consistent with its slower dynamics. A comparison of the direct triplet correlation functions c(3) reveals that these structural differences are due, to a good extent, to an amplification of the small discrepancies observed at the pair level. We demonstrate the existence of a broad, positive peak at small wave-vectors and angles in c(3). In this portion of k-space, slight, systematic differences between the models are observed, revealing "genuine" three-body contributions to the triplet structure. The possible role of the low-k features of c(3) and the implications of our results for dynamic theories of the glass transition are discussed.
我们对 Kob-Andersen Lennard-Jones 二元混合物及其完全排斥的 Weeks-Chandler-Andersen 变体的三点静态相关函数进行了数值评估。在玻璃态下,这两个模型具有相似的对结构,但它们的动力学明显不同。静态三重相关函数 S(3)表明,局域有序性在 Lennard-Jones 模型中更为明显,这一观察结果与较慢的动力学一致。对直接三重相关函数 c(3)的比较表明,这些结构差异在很大程度上归因于在对级别的小差异的放大。我们证明了在 c(3)中在小波矢和角度处存在一个宽的正峰。在这个 k-空间的一部分中,观察到模型之间存在细微的系统差异,揭示了三重结构的“真正”三体贡献。讨论了 c(3)的低 k 特征的可能作用以及我们的结果对玻璃化转变动力学理论的影响。