English

Asymmetric Chiral Coupling in a Topological Resonator

Mesoscale and Nanoscale Physics 2023-05-24 v1

Abstract

Chiral light-matter interactions supported by topological edge modes at the interface of valley photonic crystals provide a robust method to implement the unidirectional spin transfer. The valley topological photonic crystals possess a pair of counterpropagating edge modes. The edge modes are robust against the sharp bend of 6060^{\circ} and 120120^{\circ}, which can form a resonator with whispering gallery modes. Here, we demonstrate the asymmetric emission of chiral coupling from single quantum dots in a topological resonator by tuning the coupling between a quantum emitter and a resonator mode. Under a magnetic field in Faraday configuration, the exciton state from a single quantum dot splits into two exciton spin states with opposite circularly polarized emissions due to Zeeman effect. Two branches of the quantum dot emissions couple to a resonator mode in different degrees, resulting in an asymmetric chiral emission. Without the demanding of site-control of quantum emitters for chiral quantum optics, an extra degree of freedom to tune the chiral contrast with a topological resonator could be useful for the development of on-chip integrated photonic circuits.

Keywords

Cite

@article{arxiv.2304.13904,
  title  = {Asymmetric Chiral Coupling in a Topological Resonator},
  author = {Shushu Shi and Xin Xie and Sai Yan and Jingnan Yang and Jianchen Dang and Shan Xiao and Longlong Yang and Danjie Dai and Bowen Fu and Yu Yuan and Rui Zhu and Xiangbin Su and Hanqing Liu and Zhanchun Zuo and Can Wang and Haiqiao Ni and Zhichuan Niu and Qihuang Gong and Xiulai Xu},
  journal= {arXiv preprint arXiv:2304.13904},
  year   = {2023}
}

Comments

13 pages, 4 figures