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通过金属纳米结构实现电子诱导的谷光子手性选择路由

Electron-Induced Chirality-Selective Routing of Valley Photons via Metallic Nanostructure.

作者信息

Zheng Liheng, Dang Zhibo, Ding Dongdong, Liu Zhixin, Dai Yuchen, Lu Jianming, Fang Zheyu

机构信息

School of Physics, State Key Lab for Mesoscopic Physics, Academy for Advanced Interdisciplinary Studies, Collaborative Innovation Center of Quantum Matter, and Nano-optoelectronics Frontier Center of Ministry of Education, Peking University, Beijing, 100871, P. R. China.

出版信息

Adv Mater. 2023 Aug;35(34):e2204908. doi: 10.1002/adma.202204908. Epub 2023 Mar 23.

DOI:10.1002/adma.202204908
PMID:36877955
Abstract

Valleytronics in 2D transition metal dichalcogenides has raised a great impact in nanophotonic information processing and transport as it provides the pseudospin degree of freedom for carrier control. The imbalance of carrier occupation in inequivalent valleys can be achieved by external stimulations such as helical light and electric field. With metasurfaces, it is feasible to separate the valley exciton in real space and momentum space, which is significant for logical nanophotonic circuits. However, the control of valley-separated far-field emission by a single nanostructure is rarely reported, despite the fact that it is crucial for subwavelength research of valley-dependent directional emission. Here, it is demonstrated that the electron beam permits the chirality-selective routing of valley photons in a monolayer WS with Au nanostructures. The electron beam can locally excite valley excitons and regulate the coupling between excitons and nanostructures, hence controlling the interference effect of multipolar electric modes in nanostructures. Therefore, the separation degree can be modified by steering the electron beam, exhibiting the capability of subwavelength control of valley separation. This work provides a novel method to create and resolve the variation of valley emission distribution in momentum space, paving the way for the design of future nanophotonic integrated devices.

摘要

二维过渡金属二硫属化物中的能谷电子学在纳米光子信息处理和传输方面产生了重大影响,因为它为载流子控制提供了赝自旋自由度。通过诸如螺旋光和电场等外部刺激,可以实现不等价能谷中载流子占据的不平衡。利用超表面,在实空间和动量空间中分离能谷激子是可行的,这对于逻辑纳米光子电路具有重要意义。然而,尽管单纳米结构对能谷分离的远场发射的控制对于能谷依赖的定向发射的亚波长研究至关重要,但相关报道却很少。在此,证明了电子束能够在具有金纳米结构的单层WS₂中实现能谷光子的手性选择性路由。电子束可以局部激发能谷激子并调节激子与纳米结构之间的耦合,从而控制纳米结构中多极电模式的干涉效应。因此,可以通过操纵电子束来改变分离程度,展现出能谷分离的亚波长控制能力。这项工作提供了一种新颖的方法来产生和解决动量空间中能谷发射分布的变化,为未来纳米光子集成器件的设计铺平了道路。

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