English

On the geometry of topological defects in glasses

Disordered Systems and Neural Networks 2026-01-21 v1 Materials Science Soft Condensed Matter Statistical Mechanics

Abstract

Recent studies point out far-reaching connections between the topological characteristics of structural glasses and their material properties, paralleling results in quantum physics that highlight the relevance of the nature of the wavefunction. However, the structural arrangement of the topological defects in glasses has so far remained elusive. Here we investigate numerically the geometry and statistical properties of the topological defects related to the vibrational eigenmodes of a prototypical three-dimensional glass. We find that at low-frequencies these defects form scale-invariant, quasi-linear structures and dictate the plastic events morphology when the system is subjected to a quasi-static shear, i.e., the eigenmode geometry shapes plastic behavior in 3D glasses. Our results indicate the existence of a deep link between the topology of eigenmodes and plastic energy dissipation in disordered materials, thus generalizing the known connection identified in crystalline materials. This link is expected to have consequences also for the relaxation dynamics in the liquid state, thus opening the door for a novel approach to describe this dynamics.

Keywords

Cite

@article{arxiv.2411.13853,
  title  = {On the geometry of topological defects in glasses},
  author = {Zhen Wei Wu and Jean-Louis Barrat and Walter Kob},
  journal= {arXiv preprint arXiv:2411.13853},
  year   = {2026}
}