物理
光子
量子
纺纱
谐振器
量子力学
量子信息科学
光隔离器
量子光学
腔量子电动力学
光学
开放量子系统
激光器
量子纠缠
机械工程
工程类
作者
Yonglin Xiang,Yunlan Zuo,Xun‐Wei Xu,Ran Huang,Hui Jing
出处
期刊:Physical review
[American Physical Society]
日期:2023-10-04
卷期号:108 (4)
被引量:13
标识
DOI:10.1103/physreva.108.043702
摘要
We study how to achieve, manipulate, and switch classical or quantum nonreciprocal effects of light with a spinning Kerr resonator. In particular, we show that even when there is no classical nonreciprocity (i.e., with the same mean number of photons for both clockwise and counterclockwise propagating modes), it is still possible to realize nonreciprocity of quantum correlations of photons in such a device. Also, by tuning the angular velocity and the optical backscattering strength, purely higher-order quantum nonreciprocity can appear, featuring qualitatively different third-order optical correlations, even in the absence of any nonreciprocity for both the mean photon number and its second-order correlations. The possibility to switch a single device between a classical isolator and a purely quantum directional system can provide more functions for nonreciprocal materials and new opportunities to realize novel quantum effects and applications, such as nonreciprocal multiphoton blockade, one-way photon bundles, and back-action-immune quantum communications.
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