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摩擦颗粒的临界和非临界阻塞

Critical and noncritical jamming of frictional grains.

作者信息

Somfai Ellák, van Hecke Martin, Ellenbroek Wouter G, Shundyak Kostya, van Saarloos Wim

机构信息

Instituut-Lorentz, Universiteit Leiden, Postbus 9506, 2300 RA Leiden, The Netherlands.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2007 Feb;75(2 Pt 1):020301. doi: 10.1103/PhysRevE.75.020301. Epub 2007 Feb 2.

Abstract

We probe the nature of the jamming transition of frictional granular media by studying their vibrational properties as a function of the applied pressure p and friction coefficient mu. The density of vibrational states exhibits a crossover from a plateau at frequencies omega > or similar to omega*(p,mu) to a linear growth for omega < or similar to omega*(p,mu). We show that omega* is proportional to Deltaz, the excess number of contacts per grain relative to the minimally allowed, isostatic value. For zero and infinitely large friction, typical packings at the jamming threshold have Deltaz-->0, and then exhibit critical scaling. We study the nature of the soft modes in these two limits, and find that the ratio of elastic moduli is governed by the distance from isostaticity.

摘要

我们通过研究摩擦颗粒介质的振动特性随外加压力(p)和摩擦系数(\mu)的变化,来探究其堵塞转变的本质。振动态密度呈现出一种转变,即从频率(\omega>)或近似于(\omega^(p,\mu))时的一个平台区,转变为频率(\omega<)或近似于(\omega^(p,\mu))时的线性增长。我们表明,(\omega^*)与(\Delta z)成正比,(\Delta z)是每个颗粒相对于最小允许的等静值的额外接触数。对于零摩擦和无限大摩擦,堵塞阈值处的典型堆积中(\Delta z\to0),然后呈现临界标度。我们研究了这两种极限情况下软模的本质,发现弹性模量之比由与等静状态的距离决定。

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