Dynamical formation of quantum droplets in a $^{39}$K mixture
Quantum Gases
2020-03-18 v1 Atomic Physics
Quantum Physics
Abstract
We report on the dynamical formation of self-bound quantum droplets in attractive mixtures of K atoms. Considering the experimental observations of Semeghini et al., Phys. Rev. Lett. 120, 235301 (2018), we perform numerical simulations to understand the relevant processes involved in the formation of a metastable droplet from an out-of-equilibrium mixture. We first analyze the so-called self-evaporation mechanism, where the droplet dissipates energy by releasing atoms, and then we consider the effects of losses due to three-body recombinations and to the balancing of populations in the mixture. We discuss the importance of these three mechanisms in the observed droplet dynamics and their implications for future experiments.
Keywords
Cite
@article{arxiv.1912.09594,
title = {Dynamical formation of quantum droplets in a $^{39}$K mixture},
author = {G. Ferioli and G. Semeghini and S. Terradas-Briansó and L. Masi and M. Fattori and M. Modugno},
journal= {arXiv preprint arXiv:1912.09594},
year = {2020}
}