English

Mediated interaction between polarons in a one-dimensional Bose gas

Quantum Gases 2022-02-28 v1 Atomic Physics

Abstract

We study a weakly-interacting one-dimensional Bose gas with two impurities coupled locally to the boson density. We derive analytical results for the induced interaction between the impurities at arbitrary coupling and separation rr. At rξr\lesssim \xi, where ξ\xi denotes the healing length of the Bose gas, the interaction is well described by the mean-field contribution. Its form changes as the coupling is increased, approaching a linear function of rr at short distances in the regime of strong coupling. The mean-field contribution decays exponentially at arbitrary coupling for rξr\gg\xi. At such long distances, however, the effect of quantum fluctuations becomes important, giving rise to a long-ranged quantum contribution to the induced interaction. At longest distances it behaves as 1/r31/r^3, while at strong coupling we find an intermediate distance regime with a slower decay, 1/r1/r. The quantum contribution in the crossover regime is also calculated. The induced interaction between impurities (i.e., polarons) is attractive and leads to the formation of their bound state, known as bipolaron. We discuss its binding energy.

Keywords

Cite

@article{arxiv.2103.08772,
  title  = {Mediated interaction between polarons in a one-dimensional Bose gas},
  author = {Aleksandra Petkovic and Zoran Ristivojevic},
  journal= {arXiv preprint arXiv:2103.08772},
  year   = {2022}
}

Comments

6 pages, 2 figures

R2 v1 2026-06-24T00:12:43.147Z