首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Displacement correlation as an indicator of collective motion in one-dimensional and quasi-one-dimensional systems of repulsive Brownian particles
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Displacement correlation as an indicator of collective motion in one-dimensional and quasi-one-dimensional systems of repulsive Brownian particles

机译:位移相关性是排斥布朗粒子一维和准一维系统中集体运动的指标

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摘要

While the slow dynamics in glassy liquids are known to be accompanied by collective motions undetectable with static structure factor and requiring four-point space-time correlations for their detection, it is usually difficult to calculate such correlations analytically. In the present study, a system of Brownian particles in a (quasi-) one-dimensional passageway is taken as an example to demonstrate the usefulness of displacement correlation. In the purely one-dimensional case (known as the single-file diffusion) with overtaking forbidden, the diffusion slows down and collective motion is captured by displacement correlation both calculated here numerically and analytically. On the other hand, displacement correlation vanishes if overtaking is allowed, which leads to normal diffusion.
机译:尽管已知玻璃态液体的缓慢动力学伴随着集体运动,而集体运动是静态结构因子所无法检测的,并且需要四点时空相关来进行检测,但通常很难通过解析来计算这种相关。在本研究中,以一个(准)一维通道中的布朗粒子系统为例来说明位移相关性的有用性。在禁止超车的纯一维情况下(称为单文件扩散),扩散会变慢,并且通过此处通过数值和分析计算出的位移相关性来捕获集体运动。另一方面,如果允许超车,位移相关性消失,这导致法向扩散。

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