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首页> 外文期刊>Nature Communications >Mutual information reveals multiple structural relaxation mechanisms in a model glass former
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Mutual information reveals multiple structural relaxation mechanisms in a model glass former

机译:相互信息揭示了模型玻璃成型机中的多种结构松弛机制

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摘要

Among the key challenges to our understanding of solidification in the glass transition is that it is accompanied by little apparent change in structure. Recently, geometric motifs have been identified in glassy liquids, but a causal link between these motifs and solidification remains elusive. One 'smoking gun' for such a link would be identical scaling of structural and dynamic lengthscales on approaching the glass transition, but this is highly controversial. Here we introduce an information theoretic approach to determine correlations in displacement for particle relaxation encoded in the initial configuration of a glass-forming liquid. We uncover two populations of particles, one inclined to relax quickly, the other slowly. Each population is correlated with local density and geometric motifs. Our analysis further reveals a dynamic lengthscale similar to that associated with structural properties, which may resolve the discrepancy between structural and dynamic lengthscales.
机译:我们对玻璃化转变过程中凝固的理解所面临的主要挑战之一是,它几乎没有结构上的明显变化。最近,已经在玻璃状液体中鉴定出几何图案,但是这些图案与固化之间的因果关系仍然难以捉摸。用于这种连接的“烟枪”在接近玻璃过渡时将具有相同的结构和动态长度比例尺缩放比例,但这是极富争议的。在这里,我们介绍一种信息理论方法来确定位移的相关性,以便在玻璃形成液体的初始配置中编码的粒子松弛。我们发现了两种粒子,一种倾向于快速放松,另一种缓慢。每个人口都与局部密度和几何图案相关。我们的分析进一步揭示了与结构特性相关的动态长度尺度,这可以解决结构长度尺度和动态长度尺度之间的差异。

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