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Entanglement dynamics of thermofield double states in integrable models

Lagnese, G.
•
Calabrese, P.
•
Piroli, L.
2022
  • journal article

Periodico
JOURNAL OF PHYSICS. A, MATHEMATICAL AND THEORETICAL
Abstract
We study the entanglement dynamics of thermofield double (TFD) states in integrable spin chains and quantum field theories. We show that, for a natural choice of the Hamiltonian eigenbasis, the TFD evolution may be interpreted as a quantum quench from an initial state which is low-entangled in the real-space representation and displays a simple quasiparticle structure. Based on a semiclassical picture analogous to the one developed for standard quantum quenches, we conjecture a formula for the entanglement dynamics, which is valid for both discrete and continuous integrable field theories, and expected to be exact in the scaling limit of large space and time scales. We test our conjecture in two prototypical examples of integrable spin chains, where numerical tests are possible. First, in the XY-model, we compare our predictions with exact results obtained by mapping the system to free fermions, finding excellent agreement. Second, we test our conjecture in the interacting XXZ Heisenberg model, against numerical iTEBD calculations. For the latter, we generally find good agreement, although, for some range of the system parameters and within the accessible simulation times, some small discrepancies are visible, which we attribute to finite-time effects.
DOI
10.1088/1751-8121/ac646b
WOS
WOS:000793501500001
Archivio
https://hdl.handle.net/20.500.11767/131434
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85130584236
https://arxiv.org/abs/2112.02008
https://ricerca.unityfvg.it/handle/20.500.11767/131434
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Soggetti
  • entanglement dynamics...

  • quasiparticle picture...

  • integrable models

  • thermofield double st...

  • Settore FIS/02 - Fisi...

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