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Anapole enhanced on-chip routing of spin-valley photons in 2D materials for silicon integrated optical communication.

作者信息

Yao Qi, Bie Ya-Qing, Chen Jianfa, Li Jinyang, Li Feng, Cao Zhaolong

出版信息

Opt Lett. 2021 Sep 1;46(17):4080-4083. doi: 10.1364/OL.433457.

Abstract

Controlling the propagation direction of polarized light is crucial for optical communications and functional optical components. However, all-dielectric on-chip technology exploiting valley photon emission in transition metal dichalcogenides with enhanced emission has yet to be fully explored. Here, we report a design for enhancing valley emission and manipulating valley photon propagation based on degenerate non-radiating anapole states. By placing circularly polarized dipoles on top of a symmetric cross-slotted silicon disk, the rotating anapole state is excited with a Purcell factor up to two orders. In addition, the photon coupled to the preferred direction of the waveguide are about 2 times larger than that to the opposite direction. Our design could pave the way for realizing on-chip valley-dependent optical communication.

摘要

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