Polarized Rabi-Coupled and Spinor Boson Droplets
Abstract
Self-bound quantum droplets form when the mean-field tendency of the gas to collapse is stabilized by the effectively repulsive beyond mean-field fluctuations. The beyond mean-field effects depend on Rabi-frequency and quadratic Zeeman effect for the Rabi-coupled Bose mixtures and the spinor gases, respectively. The effects of varying and on the quantum droplet have recently been examined for unpolarized Rabi-coupled Bose mixture with zero detuning and unpolarized spinor gas with . In this paper, we theoretically explore the stability of the droplet phase for polarized Rabi-coupled Bose mixture and spinor gas. We calculate the Lee-Huang-Yang corrections for both gases with polarized order parameters and obtain the phase diagram of the droplets on the parameter space of - and - for Rabi-coupled mixture and spinor gas, respectively. Finally, we highlight the similarities and differences between the two systems and discuss their experimental feasibility.
Keywords
Cite
@article{arxiv.2210.08946,
title = {Polarized Rabi-Coupled and Spinor Boson Droplets},
author = {T. A. Yoğurt and A. Keleş and M. Ö. Oktel},
journal= {arXiv preprint arXiv:2210.08946},
year = {2023}
}