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表面等离激元超纤维电光调制器

Plasmonic metafibers electro-optic modulators.

作者信息

Zhang Lei, Sun Xinyu, Yu Hongyan, Deng Niping, Qiu Feng, Wang Jiyong, Qiu Min

机构信息

College of Information Science and Electronic Engineering, Zhejiang University, Hangzhou, 310027, China.

Key Laboratory of 3D Micro/Nano Fabrication and Characterization of Zhejiang Province, School of Engineering, Westlake University, 18 Shilongshan Road, Hangzhou, 310024, Zhejiang, China.

出版信息

Light Sci Appl. 2023 Aug 22;12(1):198. doi: 10.1038/s41377-023-01255-7.

Abstract

Digitalizing optical signals through electric driving signals, electro-optic modulators (EOMs) are one of the cardinal elements in modern optical communications. Most of current EOM devices are targeting on-chip integrations, which routinely suffer from high coupling losses, complex optical alignments and single-band operations. In this study, we for the first time integrate a lumped EOM device on the endfaces of a single-mode optical fiber jumper for fast amplitude modulations. Profiting from ultrathin and high quality-factor plasmonic metasurfaces, nanofabrication-friendly and highly efficient EO polymers and coupling-free connections with fiber networks, our EOM is demonstrated to allow dual-band operations (telecom O band and S band) and high-speed modulations (~1 GHz at a bias voltage of ±9 V). This work offers an avenue to 'plug-and-play' implementations of EO devices and ultracompact "all-in-fibers" optical systems for communications, imaging, sensing and many others.

摘要

通过电驱动信号将光信号数字化,电光调制器(EOM)是现代光通信中的关键元件之一。当前大多数EOM器件都致力于片上集成,这通常会面临高耦合损耗、复杂的光学对准以及单波段操作等问题。在本研究中,我们首次将集总式EOM器件集成在单模光纤跳线的端面上,以实现快速幅度调制。受益于超薄且高品质因数的等离子体超表面、便于纳米制造且高效的电光聚合物以及与光纤网络的无耦合连接,我们的EOM被证明能够实现双波段操作(电信O波段和S波段)以及高速调制(在±9 V偏置电压下约为1 GHz)。这项工作为实现即插即用的电光器件以及用于通信、成像、传感等诸多领域的超紧凑“全光纤”光学系统提供了一条途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/928c/10444839/d9b826324448/41377_2023_1255_Fig1_HTML.jpg

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