Spin-Imbalanced Quasi-Two-Dimensional Fermi Gases
Abstract
We measure the density profiles for a Fermi gas of Li containing spin-up atoms and spin-down atoms, confined in a quasi-two-dimensional geometry. The spatial profiles are measured as a function of spin-imbalance and interaction strength, which is controlled by means of a collisional (Feshbach) resonance. The measured cloud radii and central densities are in disagreement with mean-field Bardeen-Cooper-Schrieffer theory for a true two-dimensional system. We find that the data for normal-fluid mixtures are reasonably well fit by a simple two-dimensional polaron model of the free energy. Not predicted by the model is a phase transition to a spin-balanced central core, which is observed above a critical value of . Our observations provide important benchmarks for predictions of the phase structure of quasi-two-dimensional Fermi gases.
Cite
@article{arxiv.1412.6685,
title = {Spin-Imbalanced Quasi-Two-Dimensional Fermi Gases},
author = {W. Ong and C. -Y. Cheng and I. Arakelyan and J. E. Thomas},
journal= {arXiv preprint arXiv:1412.6685},
year = {2015}
}
Comments
14 pages, 12 figures