Classical Glasses, Black Holes, and Strange Quantum Liquids

ORAL

Abstract

From the dynamics of a broad class of classical mean-field glass models we construct a quantum model with finite zero-temperature entropy, a quantum transition at zero temperature, and a time-reparametrization (quasi-)invariance in the dynamical equations for correlations. The low eigenvalue spectrum of the resulting quantum model is directly related to the structure and exploration of metastable states in the landscape of the original classical glass model. This mapping reveals deep connections between classical glasses and the properties of SYK-like models.

*Work supported by the Simons Foundation, Grant Nos. #454943 (Jorge Kurchan), #454935 (Giulio Biroli), #454951 (David Reichman). DF was partially supported by EPSRC (CANES, EP/L015854/1) and ERC (grant n.723955 - GlassUniversality).

Presenters

  • Davide Facoetti

    • Ecole Normale Superieure

Authors

  • Davide Facoetti

    • Ecole Normale Superieure
  • Giulio Biroli

    • LPENS, Ecole Normale Superieure
    • Laboratoire de Physique, École normale supérieure
    • Ecole Normale Superieure
    • Physics, Ecole Normale Superieure
  • Jorge Kurchan

    • Ecole Normale Superieure
  • David Reichman

    • Columbia University
    • Department of Chemistry, Columbia University