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由于光的自旋轨道相互作用导致的回音壁模式的交叉极化耦合。

Cross-polarization coupling of whispering-gallery modes due to the spin-orbit interaction of light.

作者信息

Rosenberger A T, Dale Elijah B, Bui Khoa V, Gonzales Erik K, Ganta D, Ke Limu, Rajagopal Sreekul Raj

出版信息

Opt Lett. 2019 Sep 1;44(17):4163-4166. doi: 10.1364/OL.44.004163.

Abstract

Light can couple between two orthogonally polarized whispering-gallery modes of a microresonator; the effect is easily observable when those modes are frequency degenerate, and can result in coupled-mode induced transparency (CMIT). Experimental observations of CMIT show that the cross-polarization coupling (CPC) strength is typically 10-10 per round trip. It is shown in this Letter that polarization rotation resulting from optical spin-orbit interaction through the experimentally realistic asymmetry of a microresonator about its equator can produce CPC with strengths in the same range as observed in experiments.

摘要

光可以在微谐振器的两个正交偏振回音壁模式之间耦合;当这些模式频率简并时,这种效应很容易观察到,并且会导致耦合模式诱导透明(CMIT)。CMIT的实验观察表明,交叉偏振耦合(CPC)强度通常为每往返10-10。本文表明,通过微谐振器关于其赤道的实验上实际存在的不对称性,由光学自旋 - 轨道相互作用引起的偏振旋转可以产生强度与实验中观察到的强度在同一范围内的CPC。

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