Wang Ruoxing, Ansari Muhammad Afnan, Ahmed Hammad, Li Yan, Cai Wenfeng, Liu Yanjun, Li Songtao, Liu Jianlong, Li Li, Chen Xianzhong
Department of Mathematics and Physics, North China Electric Power University, 071003, Baoding, China.
Institute of Photonics and Quantum Sciences, School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh, EH14 4AS, UK.
Light Sci Appl. 2023 May 4;12(1):103. doi: 10.1038/s41377-023-01148-9.
A lightweight and portable spectrometer is desirable for miniaturization and integration. The unprecedented capability of optical metasurfaces has shown much promise to perform such a task. We propose and experimentally demonstrate a compact high-resolution spectrometer with a multi-foci metalens. The novel metalens is designed based on wavelength and phase multiplexing, which can accurately map the wavelength information into its focal points located on the same plane. The measured wavelengths in the light spectra agree with simulation results upon the illumination of various incident light spectra. The uniqueness of this technique lies in the novel metalens that can simultaneously realize wavelength splitting and light focusing. The compactness and ultrathin nature of the metalens spectrometer render this technology have potential applications in on-chip integrated photonics where spectral analysis and information processing can be performed in a compact platform.
对于小型化和集成化而言,一款轻便且便携的光谱仪是很有必要的。光学超表面前所未有的能力已显示出完成这项任务的巨大潜力。我们提出并通过实验证明了一种带有多焦点金属透镜的紧凑型高分辨率光谱仪。这种新型金属透镜是基于波长和相位复用设计的,它能够将波长信息精确地映射到位于同一平面上的焦点处。在各种入射光谱照明下,光谱中测得的波长与模拟结果相符。这项技术的独特之处在于这种新型金属透镜能够同时实现波长分离和光聚焦。金属透镜光谱仪的紧凑性和超薄特性使得该技术在片上集成光子学中具有潜在应用,在这个紧凑的平台上可以进行光谱分析和信息处理。