English

Low-frequency vibrational modes of stable glasses

Soft Condensed Matter 2019-01-08 v2 Disordered Systems and Neural Networks Materials Science

Abstract

We numerically study the evolution of the vibrational density of states D(ω)D(\omega) of zero-temperature glasses when their kinetic stability is varied over an extremely broad range, ranging from poorly annealed glasses obtained by instantaneous quenches from above the onset temperature, to ultrastable glasses obtained by quenching systems thermalised below the experimental glass temperature. The low-frequency part of the density of states splits between extended and quasi-localized modes. Extended modes exhibit a boson peak crossing over to Debye behaviour (D(ω)ω2D(\omega) \sim \omega^2) at low-frequency, with a strong correlation between the two regimes. Quasi-localized modes instead obey D(ω)ω4D(\omega) \sim \omega^4, irrespective of the glass stability. However, the prefactor of this quartic law becomes smaller in more stable glasses, and the corresponding modes become more localized and sparser. Our work is the first numerical observation of quasi-localized modes in a regime relevant to experiments, and it establishes a direct connection between glass stability and soft vibrational motion in amorphous solids.

Keywords

Cite

@article{arxiv.1804.08765,
  title  = {Low-frequency vibrational modes of stable glasses},
  author = {Lijin Wang and Andrea Ninarello and Pengfei Guan and Ludovic Berthier and Grzegorz Szamel and Elijah Flenner},
  journal= {arXiv preprint arXiv:1804.08765},
  year   = {2019}
}

Comments

8 pages, 6 figures

R2 v1 2026-06-23T01:33:19.500Z