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Experimental realization of ultracold Yb-$^{7}{\rm Li}$ mixtures in mixed dimensions

Quantum Gases 2018-11-28 v1

Abstract

We report on the experimental realization of ultracold 174Yb^{174}{\rm Yb}-7Li^{7}{\rm Li} (Boson-Boson) and 173Yb^{173}{\rm Yb}-7Li^{7}{\rm Li} (Fermion-Boson) mixtures. They are loaded into three dimensional (3D) or one dimensional (1D) optical lattices that are species-selectively deep for the heavy Ytterbium (Yb) and shallow for the light bosonic Lithium (Li) component, realizing novel mixed dimensional systems. In the 1D optical lattice the band structure of 173Yb^{173}{\rm Yb} is reconstructed in the presence of 7Li^{7}{\rm Li}. Spectroscopic measurements of the 174Yb^{174}{\rm Yb}-7Li^{7}{\rm Li} mixture in the 3D lattice give access to the 174Yb^{174}{\rm Yb} Mott-insulator structure. Ground state inter-species scattering lengths are determined to be abg(174Yb|a_{\rm bg}(^{174}{\rm Yb}-7Li)=(1.11±0.17) nm^{7}{\rm Li})|=(1.11 \pm 0.17)~{\rm nm} and abg(173Yb|a_{\rm bg}(^{173}{\rm Yb}-7Li)=(1.16±0.18) nm^{7}{\rm Li})|=(1.16 \pm 0.18)~{\rm nm}. The formation and characterization of an ultracold 173Yb^{173}{\rm Yb}-7Li^{7}{\rm Li} mixture is a first step towards a possible realization of a topological px+ipyp_x + i\,p_y superfluid in this system.

Keywords

Cite

@article{arxiv.1808.09051,
  title  = {Experimental realization of ultracold Yb-$^{7}{\rm Li}$ mixtures in mixed dimensions},
  author = {Florian Schäfer and Naoto Mizukami and Phelan Yu and Shun Koibuchi and Adrien Bouscal and Yoshiro Takahashi},
  journal= {arXiv preprint arXiv:1808.09051},
  year   = {2018}
}