Long-range angular correlations of particle displacements at a plastic-to-elastic transition in jammed amorphous solids
Abstract
Understanding how a flow turns into an amorphous solid is a fundamental challenge in statistical physics, during which no apparent structural ordering appears. In the athermal limit, the two states are connected by a well-defined jamming transition, near which the solid is marginally stable. A recent mechanical response screening theory proposes an additional transition above jamming, called a plastic-to-elastic transition here, separating anomalous and quasi-elastic mechanical behavior. Through numerical inflation simulations in two dimensions, we show that the onsets of long-range radial and angular correlations of particle displacements decouple, occurring respectively at the jamming and plastic-to-elastic transitions. The latter is characterized by a power-law diverging correlation angle and a power-law spectrum of the displacements along a circle. This work establishes two-step transitions on the mechanical properties during ``decompression melting'' of an athermal over-jammed amorphous solid, reminiscent of the two-step structural melting of a crystal in two dimensions. In contradistinction with the latter, the plastic-to-elastic transition exists also in three dimensions.
Keywords
Cite
@article{arxiv.2410.04138,
title = {Long-range angular correlations of particle displacements at a plastic-to-elastic transition in jammed amorphous solids},
author = {Yang Fu and Yuliang Jin and Deng Pan and Itamar Procaccia},
journal= {arXiv preprint arXiv:2410.04138},
year = {2025}
}
Comments
8 pages, 7 figures (SI 11 pages, 12 figures)