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动量空间中拓扑极化奇点的磁调制。

Magnetic modulation of topological polarization singularities in momentum space.

作者信息

Zhao Chen, Dong Shaohua, Zhang Qing, Zeng Yixuan, Hu Guangwei, Zhang Yongzhe

出版信息

Opt Lett. 2022 Jun 1;47(11):2754-2757. doi: 10.1364/OL.458285.

Abstract

The polarization singularities in momentum space, rather than in real space, are capturing interest for active singular optics with exotic light scattering and various topological phenomena, which have potential applications in vortex nano-lasers, valley exciton emission, and others. Here, we propose to magnetically control the polarization singularities in momentum space in the photonic crystal slabs with inversion spatial symmetry (P symmetry). A pair of C points (circular polarization points) with the same topological charge is spawned from a V point (polarization vortex center), and they can be dynamically shifted in momentum space with the variation of the magnetic field. Moreover, the coupling between transverse electric (TE) and transverse magnetic (TM) modes induced by the magnetic field gives rise to a hybrid mode, which can close certain leaky channels to achieve an accidental V point. Such active manipulation of polarization singularities with magnetic field is promised for various applications in light-matter interactions and reveals novel phenomena and physics in singular optics and topological photonics.

摘要

动量空间而非实空间中的偏振奇点,正因其具有奇异光散射和各种拓扑现象的有源奇异光学而备受关注,这些现象在涡旋纳米激光器、谷激子发射等方面具有潜在应用。在此,我们提议在具有空间反演对称性(P 对称性)的光子晶体平板中通过磁场控制动量空间中的偏振奇点。一对具有相同拓扑电荷的 C 点(圆偏振点)从一个 V 点(偏振涡旋中心)产生,并且它们可以随着磁场的变化在动量空间中动态移动。此外,磁场诱导的横向电(TE)模式和横向磁(TM)模式之间的耦合产生了一种混合模式,该模式可以关闭某些泄漏通道以实现一个偶然的 V 点。这种利用磁场对偏振奇点进行的有源操控有望应用于光与物质相互作用的各个方面,并揭示奇异光学和拓扑光子学中的新现象和物理规律。

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