Quantum quenches to the attractive one-dimensional Bose gas: exact results
Lorenzo Piroli, Pasquale Calabrese, Fabian H. L. Essler
SciPost Phys. 1, 001 (2016) · published 14 September 2016
- doi: 10.21468/SciPostPhys.1.1.001
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Abstract
We study quantum quenches to the one-dimensional Bose gas with attractive interactions in the case when the initial state is an ideal one-dimensional Bose condensate. We focus on properties of the stationary state reached at late times after the quench. This displays a finite density of multi-particle bound states, whose rapidity distribution is determined exactly by means of the quench action method. We discuss the relevance of the multi-particle bound states for the physical properties of the system, computing in particular the stationary value of the local pair correlation function $g_2$.
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Authors / Affiliations: mappings to Contributors and Organizations
See all Organizations.- 1 2 Lorenzo Piroli,
- 1 2 Pasquale Calabrese,
- 3 4 Fabian Essler
- 1 Scuola Internazionale Superiore di Studi Avanzati / International School for Advanced Studies [SISSA]
- 2 Istituto Nazionale di Fisica Nucleare (presso la SISSA) / National Institute of Nuclear Physics (at SISSA) [INFN at SISSA]
- 3 Rudolf Peierls Centre for Theoretical Physics, University of Oxford
- 4 University of Oxford
Funders for the research work leading to this publication