English

Observation of superfluidity in a strongly correlated two-dimensional Fermi gas

Quantum Gases 2021-06-09 v1

Abstract

Understanding how strongly correlated two-dimensional (2D) systems can give rise to unconventional superconductivity with high critical temperatures is one of the major unsolved problems in condensed matter physics. Ultracold 2D Fermi gases have emerged as clean and controllable model systems to study the interplay of strong correlations and reduced dimensionality, but direct evidence of superfluidity in these systems has been missing. Here, we demonstrate superfluidity in an ultracold 2D Fermi gas by moving a periodic potential through the system and observing no dissipation below a critical velocity vc_{\rm c}. We measure vc_{\rm c} as a function of interaction strength and find a maximum in the crossover regime between bosonic and fermionic superfluidity. Our measurement establishes ultracold Fermi gases as a powerful tool for studying the influence of reduced dimensionality on strongly correlated superfluids.

Keywords

Cite

@article{arxiv.2005.07607,
  title  = {Observation of superfluidity in a strongly correlated two-dimensional Fermi gas},
  author = {Lennart Sobirey and Niclas Luick and Markus Bohlen and Hauke Biss and Henning Moritz and Thomas Lompe},
  journal= {arXiv preprint arXiv:2005.07607},
  year   = {2021}
}

Comments

7 pages, 7 figures