Bose Gases Near Unitarity
Abstract
We study the properties of strongly interacting Bose gases at the density and temperature regime when the three-body recombination rate is substantially reduced. In this regime, one can have a Bose gas with all particles in scattering states (i.e. the "upper branch") with little loss even at unitarity over the duration of the experiment. We show that because of bosonic enhancement, pair formation is shifted to the atomic side of the original resonance (where scattering length ), opposite to the fermionic case. In a trap, a repulsive Bose gas remains mechanically stable when brought across resonance to the atomic side until it reaches a critical scattering length . For , the density consists of a core of upper branch bosons surrounded by an outer layer of equilibrium phase. The conditions of low three-body recombination requires that the particle number in a harmonic trap with frequency , where is a constant.
Keywords
Cite
@article{arxiv.1201.1958,
title = {Bose Gases Near Unitarity},
author = {Weiran Li and Tin-Lun Ho},
journal= {arXiv preprint arXiv:1201.1958},
year = {2012}
}
Comments
4 pages, 4 figures