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扭曲双层范德华材料中的平带极化激元路由器

Flatband polaritonic router in twisted bilayer van der Waals materials.

作者信息

Lv Haoran, Bai Yihua, Zhang Qing, Yang Yuanjie

出版信息

Opt Lett. 2023 Aug 1;48(15):4073-4076. doi: 10.1364/OL.496630.

Abstract

In recent years, van der Waals (vdW) polaritons excited by the hybrid of matter and photons have shown great promise for applications in nanoimaging, biosensing, and on-chip light guiding. In particular, polaritons with a flatband dispersion allow for mode canalization and diffractionless propagation, which showcase advantages for on-chip technologies requiring long-range transportation of optical information. Here, we propose a flatband polaritonic router based on twisted α-MoO bilayers, which allows for on-chip routing of highly confined and low-loss phonon polaritons (PhPs) along multichannel propagating paths under different circular polarized dipole excitations. Our work combines flatband physics and optical spin- orbit coupling, with potential applications in nanoscale light propagation, on-chip optical switching, and communication.

摘要

近年来,由物质与光子混合激发的范德华(vdW)极化激元在纳米成像、生物传感和片上光导方面展现出了巨大的应用前景。特别是具有平带色散的极化激元能够实现模式通道化和无衍射传播,这对于需要长距离传输光学信息的片上技术而言具有显著优势。在此,我们提出了一种基于扭曲α-MoO双层的平带极化激元路由器,它能够在不同圆极化偶极子激发下,沿着多通道传播路径对高度受限且低损耗的声子极化激元(PhPs)进行片上路由。我们的工作将平带物理与光学自旋 - 轨道耦合相结合,在纳米级光传播、片上光开关和通信方面具有潜在应用价值。

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