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The sine-Gordon model from coupled condensates: a Generalized Hydrodynamics viewpoint

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arxiv 2310.04493 v2 pith:XFFABNB3 submitted 2023-10-06 cond-mat.stat-mech cond-mat.quant-gasnlin.SIquant-ph

The sine-Gordon model from coupled condensates: a Generalized Hydrodynamics viewpoint

classification cond-mat.stat-mech cond-mat.quant-gasnlin.SIquant-ph
keywords sine-gordonfieldtheorycapturegeneralizedhydrodynamicsmodelone-dimensional
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The sine-Gordon model captures the low-energy effective dynamics of a wealth of one-dimensional quantum systems, stimulating the experimental efforts in building a versatile quantum simulator of this field theory and fueling the parallel development of new theoretical toolkits able to capture far-from-equilibrium settings. In this work, we analyze the realization of sine-Gordon from the interference pattern of two one-dimensional quasicondensates: we argue the emergent field theory is well described by its classical limit and develop its large-scale description based on Generalized Hydrodynamics. We show how, despite sine-Gordon being an integrable field theory, trap-induced inhomogeneities cause instabilities of excitations and provide exact analytical results to capture this effect.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Finite temperature correlation functions of the sine--Gordon model

    cond-mat.stat-mech 2026-04 unverdicted novelty 7.0

    The sine-Gordon model's finite-temperature correlation functions are evaluated non-perturbatively via the Method of Random Surfaces, with an exact formula derived for N-point functions obeying a selection rule.

  2. Full counting statistics in the sine-Gordon model

    cond-mat.stat-mech 2026-01 conditional novelty 6.0

    Full counting statistics for energy, momentum, and topological charge in the sine-Gordon model, computed via TBA, show fractal coupling dependence for topological charge but smooth behavior for energy and momentum.