English

Integrability breaking in the one dimensional Bose gas: Atomic losses and energy loss

Quantum Gases 2021-04-21 v2 Statistical Mechanics Exactly Solvable and Integrable Systems

Abstract

The one dimensional δ\delta-function interacting Bose gas (the Lieb-Liniger model) is an integrable system, which can model experiments with ultra cold atoms in one dimensional traps. Even though the model is integrable, integrability breaking effects are always present in the real world experiments. In this work we consider the integrability breaking due to atomic loss, which is the most relevant effect in the experiments. We set up a framework for the exact computation of the losses of the canonical charges of the model, and compute an exact result for the energy loss due to the local KK-body processes, valid for arbitrary KK. Our result takes the form of multiple integrals, which are explicitly factorized in the experimentally relevant cases of K=1,2,3K=1,2,3.

Keywords

Cite

@article{arxiv.2012.15640,
  title  = {Integrability breaking in the one dimensional Bose gas: Atomic losses and energy loss},
  author = {Arthur Hutsalyuk and Balázs Pozsgay},
  journal= {arXiv preprint arXiv:2012.15640},
  year   = {2021}
}

Comments

23 pages, v2: references added plus minor changes