English

Quantum droplet of one-dimensional bosons with a three-body attraction

Quantum Gases 2018-01-31 v2

Abstract

Ultracold atoms offer valuable opportunities where interparticle interactions can be controlled at will. In particular, by extinguishing the two-body interaction, one can realize unique systems governed by the three-body interaction, which is otherwise hidden behind the two-body interaction. Here we study one-dimensional bosons with a weak three-body attraction and show that they form few-body bound states as well as a many-body droplet stabilized by the quantum mechanical effect. Their binding energies relative to that of three bosons are all universal and the ground-state energy of the dilute droplet is found to grow exponentially as EN/E3exp(8N2/3π)E_N/E_3\to\exp(8N^2/\sqrt3\pi) with increasing particle number N1N\gg1. The realization of our system with coupled two-component bosons in an optical lattice is also discussed.

Keywords

Cite

@article{arxiv.1711.07276,
  title  = {Quantum droplet of one-dimensional bosons with a three-body attraction},
  author = {Yuta Sekino and Yusuke Nishida},
  journal= {arXiv preprint arXiv:1711.07276},
  year   = {2018}
}

Comments

5 pages; published version