Hua He, Zeng Chao, He Zhiwen, Lu Hua, Du Yueqing, Mao Dong, Zhao Jianlin
Key Laboratory of Light Field Manipulation and Information Acquisition, Ministry of Industry and Information Technology, Shaanxi Key Laboratory of Optical Information Technology, School of Physical Science and Technology, Northwestern Polytechnical University, Xi'An 710129, China.
Nanophotonics. 2023 Feb 14;12(4):725-735. doi: 10.1515/nanoph-2022-0696. eCollection 2023 Feb.
Metafibers, by integrating metasurface at the optical fiber tip, are emerging as the significant optical coupling platforms for nanophotonics and fiber-optic communities. Here, we propose a plasmonic metafiber for converting the fundamental mode to first-order mode in fiber, and as proof of device performance, demonstrate an all-fiber -switched cylindrical vector laser using the metafiber. Based on polarization-dependent plasmonic resonance, a polarization-independent mode conversion metasurface is designed theoretically and numerically, fabricated directly on fiber facet, and packaged as an all-fiber component with efficiency up to 21% at 1550-nm band. Using the metafiber in an all-fiber laser, -switched azimuthally polarized beam (APB) and radially polarized beam (RPB) are delivered at wavelength of 1548.5 nm with pulse durations from ∼7 to ∼2 μs when pump power increases from 30 to 120 mW. The mode purities of the APB and RPB are 86.5% and 90.7%, respectively. This work outlines a new strategy to integrate metasurfaces into "all-in-fiber" systems and offers a reliable route to construct next-generation laser sources, such as all-fiber ultrafast structured lasers.
通过在光纤尖端集成超表面,超纤维正成为纳米光子学和光纤领域重要的光耦合平台。在此,我们提出一种等离子体超纤维,用于在光纤中将基模转换为一阶模式,并作为器件性能的证明,展示了一种使用该超纤维的全光纤开关圆柱矢量激光器。基于偏振相关的等离子体共振,从理论和数值上设计了一种偏振无关的模式转换超表面,直接制作在光纤端面上,并封装成一个全光纤组件,在1550纳米波段效率高达21%。在全光纤激光器中使用该超纤维,当泵浦功率从30毫瓦增加到120毫瓦时,在1548.5纳米波长下输出开关方位角偏振光束(APB)和径向偏振光束(RPB),脉冲持续时间从约7微秒到约2微秒。APB和RPB的模式纯度分别为86.5%和90.7%。这项工作概述了一种将超表面集成到“全光纤”系统中的新策略,并为构建下一代激光源,如全光纤超快结构激光器,提供了一条可靠的途径。