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Time glass: A fractional calculus approach

R. C. Verstraten1, R. F. Ozela1,2, and C. Morais Smith1

  • 1Institute for Theoretical Physics, Utrecht University, Princetonplein 5, 3584CC Utrecht, The Netherlands
  • 2Faculdade de Física, Universidade Federal do Pará, 66075-110 Belém, PA, Brazil

Phys. Rev. B 103, L180301 – Published 24 May, 2021

DOI: https://doi.org/10.1103/PhysRevB.103.L180301

Abstract

Out-of-equilibrium states in glasses and crystals have been a major topic of research in condensed-matter physics for many years, and the idea of time crystals has triggered a flurry of new research. Here, we provide a description for the recently conjectured time glasses using fractional calculus methods. An exactly solvable effective theory is introduced with a continuous parameter describing the transition from liquid through normal glass and time glass into the Gardner phase. The phenomenological description with a fractional Langevin equation is connected to a microscopic model of a particle in a sub-Ohmic bath in the framework of a generalized Caldeira-Leggett model.

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