Self-Spinning Crystallized Rotating Bose-Einstein Condensates

ORAL

Abstract

The dynamics of interacting Bose-Einstein Condensates (BEC) coupled to artificial gauge fields remains a crucial question for understanding exotic quantum phenomenon like the quantum Hall effect and type-II superconductivity. Under extreme rotation and weak interactions, a Landau gauge BEC will spontaneously crystallize into a persistent array of droplets, due to the balance between effective magnetic forces and interactions1. Here we study the long-time dynamics of these condensed droplets. We find that in the rotating frame the droplets are spinning at a constant frequency. In Lowest Landau Level (LLL), the rate of rotation continously increases from zero upon turning on interaction. While in Thomas-Fermi regime, when multiple Landau levels are occupied, the rotation speed saturates to a particular fraction of cyclotron frequency. Our results provide a novel realization of time crystals and flat-band localization.

1Mukherjee, B., Shaffer, A., Patel, P.B. et al. Crystallization of bosonic quantum Hall states in a rotating quantum gas. Nature 601, 58–62 (2022).

*This work was supported by the National Science Foundation (Center for Ultracold Atoms and Grant No. PHY-2012110), Air Force Office of Scientific Research (FA9550-16-1-0324 and MURI Quantum Phases of Matter FA9550-14-1-0035), Office of Naval Research (N00014-17-1-2257), the DARPA A-PhI program through ARO grant W911NF-19-1-0511, and the Vannevar Bush Faculty Fellowship. A.S. acknowledges support from the NSF GRFP. M.Z. acknowledges funding from the Alexander von Humboldt Foundation.

Presenters

  • Ruixiao Yao

    • Massachusetts Institute of Technology MIT

Authors

  • Ruixiao Yao

    • Massachusetts Institute of Technology MIT
  • Airlia Shaffer

    • Massachusetts Institute of Technology MI
    • MIT
  • Cedric Wilson

    • Massachusetts Institute of Technology MI
  • Biswaroop Mukherjee

    • Massachusetts Institute of Technology MIT
  • Parth B Patel

    • Massachusetts Institute of Technology MI
    • Massachusetts Institute of Technology MIT
  • Zhenjie Yan

    • Massachusetts Institute of Technology MIT
  • Richard Fletcher

    • Massachusetts Institute of Technology MIT
    • MIT
  • Martin W Zwierlein

    • MIT