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Extended Eigenstate Thermalization and the role of FZZT branes in the Schwarzian theory

Published inThe journal of high energy physics, vol. 2020, 168
Publication date2020
First online date2020-03-27
Abstract

In this paper we provide a universal description of the behavior of the basic operators of the Schwarzian theory in pure states. When the pure states are energy eigenstates, expectation values of non-extensive operators are thermal. On the other hand, in coherent pure states, these same operators can exhibit ergodic or non-ergodic behavior, which is characterized by elliptic, parabolic or hyperbolic monodromy of an auxiliary equation; or equivalently, which coadjoint Virasoro orbit the state lies on. These results allow us to establish an extended version of the eigenstate thermalization hypothesis (ETH) in theories with a Schwarzian sector. We also elucidate the role of FZZT-type boundary conditions in the Schwarzian theory, shedding light on the physics of microstates associated with ZZ branes and FZZT branes in low dimensional holography.

Keywords
  • AdS-CFT Correspondence
  • Conformal Field Theory
  • Field Theories in Lower Dimensions
  • Membrane model
  • Boundary condition
  • Energy eigenstate
  • Holography
  • Microstate
  • Monodromy
  • Coherence
  • Virasoro
  • Thermal
  • Orbit
Citation (ISO format)
NAYAK, Pranjal, SONNER, Julian, VIELMA BLANCO, Manuel Vidal. Extended Eigenstate Thermalization and the role of FZZT branes in the Schwarzian theory. In: The journal of high energy physics, 2020, vol. 2020, p. 168. doi: 10.1007/jhep03(2020)168
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Identifiers
Additional URL for this publicationhttps://link.springer.com/10.1007/JHEP03(2020)168
Journal ISSN1029-8479
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495downloads

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