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耦合旋转光机械谐振器中的光学非互易性与慢光

Optical nonreciprocity and slow light in coupled spinning optomechanical resonators.

作者信息

Mirza Imran M, Ge Wenchao, Jing Hui

出版信息

Opt Express. 2019 Sep 2;27(18):25515-25530. doi: 10.1364/OE.27.025515.

Abstract

We study the optical transmission characteristics of coupled spinning optomechanical resonators with pump-probe driven lasers. Under the steady-state conditions, we focus on how changing the optical Sagnac effect due to same or opposite spinning directions of the resonators can give rise to non-reciprocal and delayed probe light transmission. We find that coupled resonators can exhibit distinct transmission features, can generate negative group delays (slow as well as fast light) and offer additional control of the probe light transmission as compared to the case of a single spinning resonator. Our results can be useful in achieving chiral light propagation in quantum communication technologies without using traditional magneto-optical means.

摘要

我们研究了由泵浦 - 探测驱动激光器驱动的耦合旋转光机械谐振器的光传输特性。在稳态条件下,我们关注由于谐振器相同或相反的旋转方向而改变光学萨格纳克效应如何导致非互易和延迟的探测光传输。我们发现,与单个旋转谐振器的情况相比,耦合谐振器可以展现出独特的传输特性,能够产生负群延迟(慢光以及快光)并提供对探测光传输的额外控制。我们的结果对于在不使用传统磁光手段的情况下实现量子通信技术中的手性光传播可能是有用的。

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