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拓扑涡旋激光的自旋动量锁定边缘模式

Spin-Momentum-Locked Edge Mode for Topological Vortex Lasing.

作者信息

Yang Zhen-Qian, Shao Zeng-Kai, Chen Hua-Zhou, Mao Xin-Rui, Ma Ren-Min

机构信息

State Key Lab for Mesoscopic Physics and School of Physics, Peking University, Beijing, China.

Frontiers Science Center for Nano-optoelectronics & Collaborative Innovation Center of Quantum Matter, Beijing, China.

出版信息

Phys Rev Lett. 2020 Jul 3;125(1):013903. doi: 10.1103/PhysRevLett.125.013903.

Abstract

Spin-momentum locking is a direct consequence of bulk topological order and provides a basic concept to control a carrier's spin and charge flow for new exotic phenomena in condensed matter physics. However, up to date the research on spin-momentum locking solely focuses on its in-plane transport properties. Here, we report an emerging out-of-plane radiation feature of spin-momentum locking in a non-Hermitian topological photonic system and demonstrate a high performance topological vortex laser based on it. We find that the gain saturation effect lifts the degeneracy of the paired counterpropagating spin-momentum-locked edge modes enabling lasing from a single topological edge mode. The near-field spin and orbital angular momentum of the topological edge mode lasing has a one-to-one far-field radiation correspondence. The methodology of probing the near-field topology feature by far-field lasing emission can be used to study other exotic phenomena. The device can lead to applications in superresolution imaging, optical tweezers, free-space optical sensing, and communication.

摘要

自旋动量锁定是体拓扑序的直接结果,为凝聚态物理中的新奇特现象控制载流子的自旋和电荷流提供了一个基本概念。然而,迄今为止,关于自旋动量锁定的研究仅集中在其面内输运性质上。在此,我们报告了非厄米拓扑光子系统中自旋动量锁定的一种新出现的面外辐射特性,并展示了基于此的高性能拓扑涡旋激光器。我们发现增益饱和效应消除了成对反向传播的自旋动量锁定边缘模式的简并性,从而实现从单个拓扑边缘模式激射。拓扑边缘模式激射的近场自旋和轨道角动量与远场辐射具有一一对应关系。通过远场激射发射探测近场拓扑特征的方法可用于研究其他奇特现象。该器件可应用于超分辨率成像、光镊、自由空间光学传感和通信。

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