English

Breakdown of continuum elasticity in amorphous solids

Soft Condensed Matter 2014-11-19 v1

Abstract

We show numerically that the response of simple amorphous solids (elastic networks and particle packings) to a local force dipole is characterized by a lengthscale c\ell_c that diverges as unjamming is approached as c(z2d)1/2\ell_c \sim (z - 2d)^{-1/2}, where z2dz \ge 2d is the mean coordination, and dd is the spatial dimension, at odds with previous numerical claims. We also show how the magnitude of the lengthscale c\ell_c is amplified by the presence of internal stresses in the disordered solid. Our data suggests a divergence of c(pcp)1/4\ell_c\sim (p_c-p)^{-1/4} with proximity to a critical internal stress pcp_c at which soft elastic modes become unstable.

Keywords

Cite

@article{arxiv.1312.2146,
  title  = {Breakdown of continuum elasticity in amorphous solids},
  author = {Edan Lerner and Eric DeGiuli and Gustavo Düring and Matthieu Wyart},
  journal= {arXiv preprint arXiv:1312.2146},
  year   = {2014}
}

Comments

8 pages, 6 figures

R2 v1 2026-06-22T02:23:02.170Z