Spin-orbit-coupled Fermi gases of two-electron ytterbium atoms

ORAL

Abstract

Spin-orbit coupling (SOC) has been realized in bosonic and fermionic atomic gases opening an avenue to novel physics associated with spin-momentum locking. In this talk, we will demonstrate all-optical method coupling two hyperfine ground states of $^{173}$Yb fermions through a narrow optical transition $^{1}$S$_0$ $\rightarrow$ $^{3}$P$_1$. An optical AC Stark shift is applied to split the ground hyperfine levels and separate out an effective spin-1/2 subspace from other spin states for the realization of SOC. The spin dephasing dynamics and the asymmetric momentum distribution of the spin-orbit coupled Fermi gas are observed as a hallmark of SOC. The implementation of all-optical SOC for ytterbium fermions should offer a new route to a long-lived spin-orbit coupled Fermi gas and greatly expand our capability in studying novel spin-orbit physics with alkaline-earth-like atoms. Other ongoing experimental works related to SOC will be also discussed.

*Funded by Croucher Foundation and Research Grants Council (RGC) of Hong Kong (Project ECS26300014, GRF16300215, GRF16311516, and Croucher Innovation grants); MOST (Grant No. 2016YFA0301604) and NSFC (No. 11574008)

Authors

  • Chengdong He

    • Hong Kong Univ of Sci \& Tech
  • Bo Song

    • Hong Kong Univ of Sci \& Tech
  • Elnur Haciyev

    • Hong Kong Univ of Sci \& Tech
  • Zejian Ren

    • Hong Kong Univ of Sci \& Tech
  • Bojeong Seo

    • Hong Kong Univ of Sci \& Tech
  • Shanchao Zhang

    • Hong Kong Univ of Sci \& Tech
  • Xiong-Jun Liu

    • Peking University
  • Gyu-Boong Jo

    • Hong Kong Univ of Sci \& Tech