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Quenches in initially coupled Tomonaga-Luttinger Liquids: a conformal field theory approach

Paola Ruggiero
•
Pasquale Calabrese
•
Laura Foini
•
Thierry Giamarchi
2021
  • journal article

Periodico
SCIPOST PHYSICS
Abstract
We study the quantum quench in two coupled Tomonaga-Luttinger Liquids (TLLs), from the off-critical to the critical regime, relying on the conformal field theory approach and the known solutions for single TLLs. We consider a squeezed form of the initial state, whose low energy limit is fixed in a way to describe a massive and a massless mode, and we encode the non-equilibrium dynamics in a proper rescaling of the time. In this way, we compute several correlation functions, which at leading order factorize into multipoint functions evaluated at different times for the two modes. Depending on the observable, the contribution from the massive or from the massless mode can be the dominant one, giving rise to exponential or power-law decay in time, respectively. Our results find a direct application in all the quench problems where, in the scaling limit, there are two independent massless fields: these include the Hubbard model, the Gaudin-Yang gas, and tunnel-coupled tubes in cold atoms experiments.
DOI
10.21468/SciPostPhys.11.3.055
WOS
WOS:000708668200007
Archivio
http://hdl.handle.net/20.500.11767/128400
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85115944751
http://arxiv.org/abs/2103.08927v3
Diritti
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Soggetti
  • Physics - Statistical...

  • Physics - Statistical...

  • cond-mat.quant-gas

  • Physics - Strongly Co...

  • High Energy Physics -...

  • Settore FIS/02 - Fisi...

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