English

Experimental demonstration of Cavity-Free Optical Isolators and Optical Circulators

Quantum Physics 2020-10-07 v2 Atomic Physics Optics

Abstract

Cavity-free optical nonreciprocity components, which have an inherent strong asymmetric interaction between the forward- and backward-propagation direction of the probe field, are key to produce such as optical isolators and circulators. According to the proposal presented by Xia et al., [Phys. Rev. Lett. 121, 203602 (2018)], we experimentally build a device that uses cross-Kerr nonlinearity to achieve a cavity-free optical isolator and circulator. Its nonreciprocal behavior arises from the thermal motion of N-type configuration atoms, which induces a strong chiral cross-Kerr nonlinear response for the weak probe beam. We obtain a two-port optical isolator for up to 20 dB of isolation ratio in a specially designed Sagnac interferometer. The distinct propagation directions of the weak probe field determine its cross-phase shift and transmission, by which we demonstrate the accessibility of a four-port optical circulator.

Keywords

Cite

@article{arxiv.1908.07210,
  title  = {Experimental demonstration of Cavity-Free Optical Isolators and Optical Circulators},
  author = {En-Ze Li and Dong-Sheng Ding and Yi-Chen Yu and Ming-Xin Dong and Lei Zeng and Wei-Hang Zhang and Ying-Hao Ye and Huai-Zhi Wu and Zhi-Han Zhu and Wei Gao and Guang-Can Guo and Bao-Sen Shi},
  journal= {arXiv preprint arXiv:1908.07210},
  year   = {2020}
}

Comments

5 pages, 3 figures

R2 v1 2026-06-23T10:51:51.122Z