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Local high chirality near exceptional points based on asymmetric backscattering

Optics 2024-10-08 v1

Abstract

We investigate local high chirality inside a microcavity near exceptional points (EPs) achieved via asymmetric backscattering by two internal weak scatterers. At EPs, coalescent eigenmodes exhibit position-dependent and symmetric high chirality characteristics for a large azimuthal angle between the two scatterers. However, asymmetric mode field features appear near EPs. Two azimuthal regions in the microcavity classified by the scatterers exhibit different wave types and chirality. Such local mode field features are attributed to the symmetries of backscattering in direction and spatial distribution. The connections between the wave types, the symmetry of mode field distribution and different symmetries of backscattering near EPs are also analyzed and discussed. Benefiting from the small size of weak scatterers, such microcavities with a high Q/V near EPs can be used to achieve circularly polarized quantum light sources and explore EP modified quantum optical effects in cavity quantum electrodynamics systems.

Keywords

Cite

@article{arxiv.2410.04375,
  title  = {Local high chirality near exceptional points based on asymmetric backscattering},
  author = {Jingnan Yang and Hancong Li and Sai Yan and Qihuang Gong and Xiulai Xu},
  journal= {arXiv preprint arXiv:2410.04375},
  year   = {2024}
}

Comments

8pages, 5 figures

R2 v1 2026-06-28T19:10:05.963Z