Fan Qingbin, Xu Weizhu, Lin Peicheng, Sun Yunfei, Yan Feng, Hu Xuemei, Yue Tao, Xu Ting
Opt Lett. 2024 Jan 1;49(1):21-24. doi: 10.1364/OL.503626.
Reconstructive spectrometers/spectral cameras have immense potential for portable applications in various fields, including environmental monitoring, biomedical research and diagnostics, and agriculture and food safety. However, the performance of these spectrometers/spectral cameras is severely limited by the operational bandwidth, spectral diversity, and angle sensitivity of the spectral modulation devices. In this work, we propose a compact spectrometer based on plasmonic metasurfaces that operate across the entire visible wavelength range, covering wavelengths from 400 to 750 nm. We experimentally demonstrate the effective spectral reconstruction achieved by the designed metasurface spectrometer, exhibiting angle tolerance to the incident light within the range of ± 12°. Our results highlight the potential for constructing broadband, large field-of-view hyperspectral cameras.
重构光谱仪/光谱相机在包括环境监测、生物医学研究与诊断以及农业与食品安全等各个领域的便携式应用中具有巨大潜力。然而,这些光谱仪/光谱相机的性能受到光谱调制器件的工作带宽、光谱多样性和角度灵敏度的严重限制。在这项工作中,我们提出了一种基于等离子体超表面的紧凑型光谱仪,其在整个可见波长范围内工作,涵盖400至750 nm的波长。我们通过实验证明了所设计的超表面光谱仪实现的有效光谱重构,在± 12°范围内对入射光表现出角度耐受性。我们的结果突出了构建宽带、大视场高光谱相机的潜力。