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首页> 外文期刊>The Journal of Chemical Physics >Aging in a Laponite colloidal suspension: A Brownian dynamics simulation study
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Aging in a Laponite colloidal suspension: A Brownian dynamics simulation study

机译:Laponite胶体悬浮液中的老化:布朗动力学模拟研究

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摘要

The authors report Brownian dynamics simulation of the out-of-equilibrium dynamics (aging) in a colloidal suspension composed of rigid charged disks, one possible model for Laponite, a synthetic clay deeply investigated in the last few years by means of various experimental techniques. At variance with previous numerical investigations, mainly focusing on static structure and equilibrium dynamics, the authors explore the out-of-equilibrium aging dynamics. They analyze the wave vector and waiting time dependence of the dynamics, focusing on the single-particle and collective density fluctuations (intermediate scattering functions), the mean-squared displacement, and the rotational dynamics. Their findings confirm the complexity of the out-of-equilibrium dynamical behavior of this class of colloidal suspensions and suggest that an arrested disordered state driven by a repulsive Yukawa potential, i.e., a Wigner glass, can be observed in this model.
机译:作者报告了由刚性带电圆盘组成的胶体悬浮液的失衡动力学(老化)的布朗动力学模拟,这是Laponite的一种可能模型,Laponite是近几年通过各种实验技术进行了深入研究的合成粘土。与以前的数值研究(主要关注静态结构和平衡动力学)不同,作者探索了失衡的老化动力学。他们分析了动力学的波矢量和等待时间,重点关注单粒子和集体密度波动(中间散射函数),均方位移和旋转动力学。他们的发现证实了这类胶体悬浮液不平衡动力学行为的复杂性,并表明在这种模型中可以观察到由排斥的汤川势驱动的停滞无序状态,即维格纳玻璃。

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