English

Universal low-frequency vibrational modes in silica glasses

Soft Condensed Matter 2020-08-26 v1 Disordered Systems and Neural Networks Materials Science

Abstract

It was recently shown that different simple models of glass formers with binary interactions define a universality class in terms of the density of states of their quasi-localized low-frequency modes. Explicitly, once the hybridization with standard Debye (extended) modes is avoided, a number of such models exhibit a universal density of state, depending on the mode frequencies as D(ω)ω4D(\omega) \sim \omega^4. It is unknown however how wide is this universality class, and whether it also pertains to more realistic models of glass formers. To address this issue we present analysis of the quasi-localized modes in silica, a network glass which has both binary and ternary interactions. We conclude that in 3-dimensions silica exhibits the very same frequency dependence at low frequencies, suggesting that this universal form is a generic consequence of amorphous glassiness.

Cite

@article{arxiv.2003.07614,
  title  = {Universal low-frequency vibrational modes in silica glasses},
  author = {Silvia Bonfanti and Roberto Guerra and Chandana Mondal and Itamar Procaccia and Stefano Zapperi},
  journal= {arXiv preprint arXiv:2003.07614},
  year   = {2020}
}

Comments

4 pages, 5 figures, Submitted in parallel to "Universality of the nonphononic vibrational spectrum across different classes of computer glasses" to arXiv on March 17th, 2020

R2 v1 2026-06-23T14:17:09.923Z