Zeng Yixuan, Hu Guangwei, Liu Kaipeng, Tang Zhixiang, Qiu Cheng-Wei
College of Computer Science and Electronic Engineering, Hunan University, Changsha 410082, China.
Department of Electrical and Computer Engineering, National University of Singapore, Singapore 117583, Singapore.
Phys Rev Lett. 2021 Oct 22;127(17):176101. doi: 10.1103/PhysRevLett.127.176101.
The polarization singularity in momentum space has recently been discovered as a new class of topological signatures of Bloch modes in photonic crystal slabs concerning the far-field radiations, beyond its near-field description with widely explored topological band theory. Bound states in the continuum (BICs) in photonic crystal slabs are demonstrated as vortex eigenpolarization singularities in momentum space and the circular polarization points (C points) are also obtained based on BICs, opening up more possibilities for exotic light scattering and various topological phenomena of singular optics. Here, focusing on the nondegenerate bands, we report the generation to annihilation of two pairs of C points in momentum space in the photonic crystal slabs with inversion symmetry but broken up-down mirror symmetry. Interestingly, as the C points evolve with the structure parameter, we find two merging processes of C points, where an accidental at-Γ BIC and unidirectional radiative resonances with leaky channels of drastically different radiative lifetime emerge. The whole evolution is governed by the global charge conservation and the sum of topological charges equals to zero. Our findings suggest a novel recipe for dynamic generation and manipulation of various polarization singularities in momentum space and might shed new light to control the resonant and topological properties of light-matter interactions.
动量空间中的极化奇点最近被发现是光子晶体平板中布洛赫模式的一类新的拓扑特征,涉及远场辐射,超越了其用广泛探索的拓扑能带理论进行的近场描述。光子晶体平板中的连续统束缚态(BICs)被证明是动量空间中的涡旋本征极化奇点,并且基于BICs还获得了圆极化点(C点),为奇异光散射和奇异光学的各种拓扑现象开辟了更多可能性。在此,聚焦于非简并能带,我们报道了在具有反演对称性但上下镜面对称性破缺的光子晶体平板中,动量空间中两对C点的产生到湮灭。有趣的是,随着C点随结构参数演化,我们发现了C点的两个合并过程,其中出现了一个偶然的Γ点处的BIC和具有截然不同辐射寿命泄漏通道的单向辐射共振。整个演化由全局电荷守恒支配,拓扑电荷之和等于零。我们的发现为动量空间中各种极化奇点的动态产生和操纵提供了一种新颖的方法,并且可能为控制光 - 物质相互作用的共振和拓扑性质带来新的启示。