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硬球和软球的振动特性在堵塞状态下是统一的。

Vibrational Properties of Hard and Soft Spheres Are Unified at Jamming.

作者信息

Arceri Francesco, Corwin Eric I

机构信息

Department of Physics, University of Oregon, Eugene, Oregon 97403, USA.

出版信息

Phys Rev Lett. 2020 Jun 12;124(23):238002. doi: 10.1103/PhysRevLett.124.238002.

Abstract

The unconventional thermal properties of jammed amorphous solids are directly related to their density of vibrational states. While the vibrational spectrum of jammed soft sphere solids has been fully described, the vibrational spectrum of hard spheres, a model glass former often related to physical colloidal glasses, is still unknown due to the difficulty of treating the nonanalytic interaction potential. We bypass this difficulty using the recently described effective interaction potential for the free energy of thermal hard spheres. By minimizing this effective free energy, we mimic the rapid compression of hard spheres and produce typical configurations of the thermal system. We measure the resulting vibrational spectrum and characterize its evolution toward the jamming point where configurations of hard and soft spheres are trivially unified. For densities approaching jamming from below, we observe low-frequency modes which agree with those found in numerical simulations of jammed soft spheres. Our measurements of the vibrational structure demonstrate that the jamming universality extends away from jamming: hard sphere thermal systems below jamming exhibit the same vibrational spectra as thermal and athermal soft sphere systems above the transition.

摘要

受阻无序固体的非常规热性质与其振动状态密度直接相关。虽然受阻软球固体的振动光谱已得到充分描述,但硬球(一种常与物理胶体玻璃相关的模型玻璃形成体)的振动光谱由于处理非解析相互作用势的困难仍然未知。我们利用最近描述的热硬球自由能的有效相互作用势绕过了这一困难。通过最小化这种有效自由能,我们模拟了硬球的快速压缩并产生了热系统的典型构型。我们测量由此产生的振动光谱,并表征其向堵塞点的演化,在堵塞点硬球和软球的构型是平凡统一的。对于从下方接近堵塞的密度,我们观察到与受阻软球数值模拟中发现的低频模式一致的模式。我们对振动结构的测量表明,堵塞普遍性延伸到堵塞点之外:低于堵塞点的硬球热系统表现出与高于转变点的热和非热软球系统相同的振动光谱。

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