A non-Hermitian optical atomic mirror

ORAL

Abstract

Explorations of symmetry and topology have led to important breakthroughs in quantum optics, but much richer behaviors arise from the non-Hermitian nature of light-matter interactions. A high-reflectivity, non-Hermitian optical mirror can be realized by a two-dimensional subwavelength array of neutral atoms near the cooperative resonance associated with the collective dipole modes. Here we show that exceptional points develop from a nondefective degeneracy by lowering the crystal symmetry of a square atomic lattice, and dispersive bulk Fermi arcs that originate from exceptional points are truncated by the light cone. We also find, although the dipole-dipole interaction is reciprocal, the geometry-dependent non-Hermitian skin effect emerges. Furthermore, skin modes localized at a boundary show a scale-free behavior that stems from the long-range interaction and whose mechanism goes beyond the framework of non-Bloch band theory. Our work opens the door to the study of the interplay among non-Hermiticity, topology, and long-range interaction.

*Y.-C.W. and H.H.J. acknowledge support from the Ministry of Science and Technology (MOST), Taiwan, under the Grant No. MOST-109-2112-M-001-035-MY3. Y.-C.W. and J.-S.Y. are supported by the Ministry of Science and Technology, Taiwan (Grant No. MOST-110-2112-M-003-008-MY3). J.-S.Y. and H.H.J. is also grateful for support from National Center for Theoretical Sciences in Taiwan.

Publication: Y.-C. Wang, J.-S. You, and H. H. Jen, arXiv:2110.10070 (2021).

Presenters

  • Yi-Cheng Wang

    • Department of Physics, National Taiwan University; Institute of Atomic and Molecular Sciences, Academia Sinica

Authors

  • Yi-Cheng Wang

    • Department of Physics, National Taiwan University; Institute of Atomic and Molecular Sciences, Academia Sinica
  • Jhih-Shih You

    • National Taiwan Normal University, Taipei 11677, Taiwan
    • National Taiwan Normal University
  • Hsiang-Hua Jen

    • Institute of Atomic and Molecular Sciences, Academia Sinica