Theory for the density of interacting quasilocalized modes in amorphous solids

Open Access
Authors
  • M. Wyart
Publication date 02-2019
Journal Physical Review E
Article number 023003
Volume | Issue number 99 | 2
Number of pages 8
Organisations
  • Faculty of Science (FNWI) - Institute of Physics (IoP) - Institute for Theoretical Physics Amsterdam (ITFA)
Abstract

Quasilocalized modes appear in the vibrational spectrum of amorphous solids at low frequency. Though never formalized, these modes are believed to have a close relationship with other important local excitations, including shear transformations and two-level systems. We provide a theory for their frequency density, DL (ω) ∼ ωα, that establishes this link for systems at zero temperature under quasistatic loading. It predicts two regimes depending on the density of shear transformations P (x) ∼ xθ (with x the additional stress needed to trigger a shear transformation). If θ > 1/4, then α = 4 and a finite fraction of quasilocalized modes form shear transformations, whose amplitudes vanish at low frequencies. If θ < 1/4, then α = 3 + 4θ and all quasilocalized modes form shear transformations with a finite amplitude at vanishing frequencies. We confirm our predictions numerically.

Document type Article
Note Publisher Copyright:
© 2019 American Physical Society.
Language English
Published at
https://doi.org/10.1103/PhysRevE.99.023003 (Final published version)
Other links
Downloads
PhysRevE.99.023003 (Final published version)
Permalink to this page
Back