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Slow Coarsening in Jammed Athermal Soft Particle Suspensions

机译:堵塞的无热软颗粒悬浮液中的缓慢粗化

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摘要

We simulate a densely jammed, athermal assembly of repulsive soft particles immersed in a solvent. Starting from an initial condition corresponding to a quench from a high temperature, we find nontrivial slow dynamics driven by a gradual release of stored elastic energy, with the root mean squared particle speed decaying as a power law in time with a fractional exponent. This decay is accompanied by the presence within the assembly of spatially localized and temporally intermittent "hot spots" of nonaffine deformation, connected by long-ranged swirls in the velocity field, reminiscent of the local plastic events and long-ranged elastic propagation that have been intensively studied in sheared amorphous materials. The pattern of hot spots progressively coarsens, with the hot-spot size and separation slowly growing over time, and the associated correlation length in particle speed increasing as a sublinear power law. Each individual spot, however, exists only transiently within an overall picture of strongly intermittent dynamics.
机译:我们模拟了浸没在溶剂中的排斥性软颗粒的密集堵塞,无热组装。从对应于高温骤冷的初始条件开始,我们发现了由存储弹性能的逐渐释放驱动的非平凡的慢动力学,其均方根粒子速度随时间呈幂幂衰减,并具有分数指数。这种衰减伴随着非仿射变形的空间局部和时间间歇性“热点”的集合中的存在,它们通过速度场中的长距离漩涡连接,让人联想到已经发生的局部塑性事件和长距离弹性传播。在剪切无定形材料中进行了深入研究。热点的模式逐渐变粗,随着时间的推移,热点的大小和间隔逐渐增大,并且与粒子速度相关的相关长度随着亚线性幂律的增加而增加。但是,每个单独的点仅在短暂的动态间歇性整体图中短暂存在。

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  • 来源
    《Physical review letters 》 |2019年第10期| 108001.1-108001.5| 共5页
  • 作者单位

    Univ Durham Dept Phys Sci Labs South Rd Durham DH1 3LE England;

    Univ Gottingen Inst Theoret Phys D-37077 Gottingen Germany|Kings Coll London Dept Math London WC2R 2LS England;

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