• Laser & Optoelectronics Progress
  • Vol. 60, Issue 11, 1106014 (2023)
Tingting Wang1、2、*, Hongxing Cai1、2、**, Shuang Li1、2, Yu Ren1、2, Jing Shi1、2, Jianwei Zhou1、2, Dongliang Li1、2, Shuangshuang Ding1、2, Yangyang Hua1、2, and Guannan Qu1、2
Author Affiliations
  • 1School of physics, Changchun University of Science and Technology, Changchun 130022, Jilin, China
  • 2Key laboratory of Jilin Province for Spectral Detection Science and Technology, Changchun University of Science and Technology, Changchun 130022, Jilin, China
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    DOI: 10.3788/LOP231244 Cite this Article Set citation alerts
    Tingting Wang, Hongxing Cai, Shuang Li, Yu Ren, Jing Shi, Jianwei Zhou, Dongliang Li, Shuangshuang Ding, Yangyang Hua, Guannan Qu. Research Progress of Novel Metasurface Spectral Imaging Chips[J]. Laser & Optoelectronics Progress, 2023, 60(11): 1106014 Copy Citation Text show less
    Localized coordinate system for unit structure
    Fig. 1. Localized coordinate system for unit structure
    Folded metasurface-based imager[49]. (a) Design scheme; (b) spectral imaging system; (c) light transmission and device fabrication
    Fig. 2. Folded metasurface-based imager[49]. (a) Design scheme; (b) spectral imaging system; (c) light transmission and device fabrication
    Metasurface-based nanocavity[50]. (a) Structural design; (b) principle comparison; (c) imaging effect
    Fig. 3. Metasurface-based nanocavity[50]. (a) Structural design; (b) principle comparison; (c) imaging effect
    Pixelated metasurfaces[51]
    Fig. 4. Pixelated metasurfaces[51]
    Photonic crystal slab-based computationally reconstructive imaging spectroscopy chip[52]. (a) Schematic and optical images of the chip-scale spectrometer and transmission spectra of the filtered structures; (b) verification results of hyperspectral imaging and spatial maps of the reconstructed data cubes
    Fig. 5. Photonic crystal slab-based computationally reconstructive imaging spectroscopy chip[52]. (a) Schematic and optical images of the chip-scale spectrometer and transmission spectra of the filtered structures; (b) verification results of hyperspectral imaging and spatial maps of the reconstructed data cubes
    Metasurface-based hyperspectral imaging chip[53]
    Fig. 6. Metasurface-based hyperspectral imaging chip[53]
    Freeform shaped meta-atoms-based metasurface spectroscopy imaging chip[54]
    Fig. 7. Freeform shaped meta-atoms-based metasurface spectroscopy imaging chip[54]
    Imaging spectral chip based on metasurface computational reconstruction technology. (a) Structure of I-type metal metasurface; (b) chip structure
    Fig. 8. Imaging spectral chip based on metasurface computational reconstruction technology. (a) Structure of I-type metal metasurface; (b) chip structure
    Comparison of low-light imaging effects
    Fig. 9. Comparison of low-light imaging effects
    Tingting Wang, Hongxing Cai, Shuang Li, Yu Ren, Jing Shi, Jianwei Zhou, Dongliang Li, Shuangshuang Ding, Yangyang Hua, Guannan Qu. Research Progress of Novel Metasurface Spectral Imaging Chips[J]. Laser & Optoelectronics Progress, 2023, 60(11): 1106014
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