English

Probing the non-Debye low frequency excitations in glasses through random pinning

Disordered Systems and Neural Networks 2018-10-24 v1 Statistical Mechanics

Abstract

We investigate the properties of the low-frequency spectrum in the density of states D(ω)D(\omega) of a three-dimensional model glass former. To magnify the Non-Debye sector of the spectrum, we introduce a random pinning field that freezes a finite particle fraction in order to break the translational invariance and shifts all the vibrational frequencies of the extended modes towards higher frequencies. We show that Non-Debye soft localized modes progressively emerge as the fraction pp of pinned particles increases. Moreover, the low-frequency tail of D(ω)D(\omega) goes to zero as a power law ωδ(p)\omega^{\delta(p)}, with 2 ⁣ ⁣δ(p) ⁣ ⁣42 \!\leq \! \delta(p) \!\leq\!4 and δ ⁣= ⁣4\delta\!=\!4 above a threshold fraction pthp_{th}.

Keywords

Cite

@article{arxiv.1803.05520,
  title  = {Probing the non-Debye low frequency excitations in glasses through random pinning},
  author = {Luca Angelani and Matteo Paoluzzi and Giorgio Parisi and Giancarlo Ruocco},
  journal= {arXiv preprint arXiv:1803.05520},
  year   = {2018}
}

Comments

4 Figures, submitted to PNAS