English

Strongly interacting Bose-Fermi mixture: mediated interaction, phase diagram and sound propagation

Quantum Gases 2024-02-13 v1

Abstract

Motivated by recent surprising experimental findings, we develop a strong-coupling theory for Bose-Fermi mixtures capable of treating resonant inter-species interactions while satisfying the compressibility sum rule. We show that the mixture can be stable at large interaction strengths close to resonance, in agreement with the experiment but at odds with the widely used perturbation theory. We also calculate the sound velocity of the Bose gas in the 133^{133}Cs-6^6Li mixture, again finding good agreement with the experimental observations both at weak and strong interactions. A central ingredient of our theory is the generalization of a fermion mediated interaction to strong Bose-Fermi scatterings and to finite frequencies. This further leads to a predicted hybridization of the sound modes of the Bose and Fermi gases, which can be directly observed using Bragg spectroscopy.

Keywords

Cite

@article{arxiv.2309.00411,
  title  = {Strongly interacting Bose-Fermi mixture: mediated interaction, phase diagram and sound propagation},
  author = {Xin Shen and Nir Davidson and Georg M. Bruun and Mingyuan Sun and Zhigang Wu},
  journal= {arXiv preprint arXiv:2309.00411},
  year   = {2024}
}

Comments

13 pages, 10 figures