[1] Kacic P, Kuenzer C. Forest biodiversity monitoring based on remotely sensed spectral diversity: a review[J]. Remote Sensing, 14, 5363(2022).
[2] Flynn C, Stoian R I, Weers B D et al. Ruggedized, field-ready snapshot light-guide-based imaging spectrometer for environmental and remote sensing applications[J]. Optics Express, 30, 10614-10632(2022).
[3] Lu B, Dao P D, Liu J G et al. Recent advances of hyperspectral imaging technology and applications in agriculture[J]. Remote Sensing, 12, 2659(2020).
[4] Wei L F, Wang K, Lu Q K et al. Crops fine classification in airborne hyperspectral imagery based on multi-feature fusion and deep learning[J]. Remote Sensing, 13, 2917(2021).
[5] Huang S A, Chen S B, Wang D M et al. Hydrocarbon micro-seepage detection from airborne hyper-spectral images by plant stress spectra based on the PROSPECT model[J]. International Journal of Applied Earth Observation and Geoinformation, 74, 180-190(2019).
[6] Zhong Y F, Wang X Y, Wang S Y et al. Advances in spaceborne hyperspectral remote sensing in China[J]. Geo-Spatial Information Science, 24, 95-120(2021).
[7] Koerting F, Koellner N, Kuras A et al. A solar optical hyperspectral library of rare-earth-bearing minerals, rare-earth oxide powders, copper-bearing minerals and Apliki mine surface samples[J]. Earth System Science Data, 13, 923-942(2021).
[8] Clancy N T, Jones G, Maier-Hein L et al. Surgical spectral imaging[J]. Medical Image Analysis, 63, 101699(2020).
[9] Ding H, Chen C, Zhao H C et al. Smartphone based multispectral imager and its potential for point-of-care testing[J]. The Analyst, 144, 4380-4385(2019).
[10] Kim S, Kim J, Hwang M et al. Smartphone-based multispectral imaging and machine-learning based analysis for discrimination between seborrheic dermatitis and psoriasis on the scalp[J]. Biomedical Optics Express, 10, 879-891(2019).
[11] Chen J W, Gong H, Yuan J. Multispectral imaging technology and its applications in biomedicine[J]. Laser & Optoelectronics Progress, 58, 0400001(2021).
[12] Xie D J, Lü C L, Zu M et al. Research progress of bionic materials simulating vegetation visible-near infrared reflectance spectra[J]. Spectroscopy and Spectral Analysis, 41, 1032-1038(2021).
[13] Wang J Y, Li C L, Ji H Z et al. Status and prospect of thermal infrared hyperspectral imaging technology[J]. Journal of Infrared and Millimeter Waves, 34, 51-59(2015).
[14] Sun H B, Wang Z, Chen Y W et al. Preliminary verification of hyperspectral LiDAR covering VIS-NIR-SWIR used for objects classification[J]. European Journal of Remote Sensing, 55, 291-303(2022).
[15] Gong W, Shi S, Chen B W et al. Development and application of airborne hyperspectral LiDAR imaging technology[J]. Acta Optica Sinica, 42, 1200002(2022).
[16] Huot M, Dalgleish F, Rehm E et al. Underwater multispectral laser serial imager for spectral differentiation of macroalgal and coral substrates[J]. Remote Sensing, 14, 3105(2022).
[17] Zhou K, Shan Z, Zhang Q et al. Research progresses of MEMS Fabry-Perot filtering chips and their applications for spectral detection[J]. Acta Optica Sinica, 42, 0800001(2022).
[18] Lee K J, Ko Y H, Gupta N et al. Unpolarized resonant Notch filters for the 8–12 µm spectral region[J]. Optics Letters, 45, 4452-4455(2020).
[19] Yang Z Y, Albrow-Owen T, Cai W W et al. Miniaturization of optical spectrometers[J]. Science, 371, eabe0722(2021).
[20] Zhao Y Q, Liu X Y, Tang C L. Progress in spectral filter arrays[J]. Laser & Optoelectronics Progress, 57, 190004(2020).
[21] Wang W P, Jin L. Research progress of on-chip spectrometer based on the silicon photonics platform[J]. Spectroscopy and Spectral Analysis, 40, 333-342(2020).
[22] Wang F, Yu X C, Luo Q L et al. Research progress and applications of spectral imaging system on chip[J]. Laser & Optoelectronics Progress, 58, 2000002(2021).
[23] Kim J, Rana A S, Kim Y et al. Chiroptical metasurfaces: principles, classification, and applications[J]. Sensors, 21, 4381(2021).
[24] Akram M R, Ding G W, Chen K et al. Ultrathin single layer metasurfaces with ultra-wideband operation for both transmission and reflection[J]. Advanced Materials, 32, 1907308(2020).
[25] Tsilipakos O, Tasolamprou A C, Pitilakis A et al. Toward intelligent metasurfaces: the progress from globally tunable metasurfaces to software-defined metasurfaces with an embedded network of controllers[J]. Advanced Optical Materials, 8, 2000783(2020).
[26] Zhou Y, Liang G F, Wen Z Q et al. Recent research progress in optical super-resolution planar meta-lenses[J]. Opto-Electronic Engineering, 48, 210399(2021).
[27] Zhu X S, Liu J, He J Z et al. Research and application of metasurfaces in quantum optics[J]. Acta Optica Sinica, 42, 0327006(2022).
[28] Ni Y B, Wen S, Shen Z C et al. Multidimensional light field sensing based on metasurfaces[J]. Chinese Journal of Lasers, 48, 1918003(2021).
[29] Yu N F, Genevet P, Kats M A et al. Light propagation with phase discontinuities: generalized laws of reflection and refraction[J]. Science, 334, 333-337(2011).
[30] Liu M J, Li T Y, Ge Q et al. Phase control mechanism and research progress of multifunctional superstructure surface[J]. Acta Optica Sinica, 42, 2126004(2022).
[31] Li X, Ma X L, Luo X G. Principles and applications of metasurfaces with phase modulation[J]. Opto-Electronic Engineering, 44, 255-275, 376(2017).
[32] Li X T, Li Y, Li C et al. High color saturation and angle-insensitive ultrathin color filter based on effective medium theory[J]. Chinese Optics Letters, 21, 033602(2023).
[33] Zhang R Z, Zhang R, Wang Z B et al. Liquid refractive index sensor based on terahertz metamaterials[J]. Plasmonics, 17, 457-465(2022).
[34] Zhao L M, Zhou Y S. Tunable multichannel photonic spin hall effect in metal-dielectric-metal waveguide[J]. Scientific Reports, 11, 14138(2021).
[35] Bauer C, Giessen H. Tailoring the plasmonic Fano resonance in metallic photonic crystals[J]. Nanophotonics, 9, 523-531(2020).
[36] Dong Y L, Bandaru P R. Interaction and hybridization of orthogonal Fabry-Pérot like surface plasmon modes in metal-dielectric grating structures[J]. Optics Express, 28, 3541-3551(2020).
[37] Pancharatnam S. Generalized theory of interference and its applications[J]. Proceedings of the Indian Academy of Sciences-Section A, 44, 398-417(1956).
[38] Berry M V. Quantal phase factors accompanying adiabatic changes[J]. Proceedings of the Royal Society of London. A. Mathematical and Physical Sciences, 392, 45-57(1984).
[39] Rubin N A, Zaidi A, Dorrah A H et al. Jones matrix holography with metasurfaces[J]. Science Advances, 7, eabg7488(2021).
[40] Wang H J, Wang Z, Tian A L et al. Modeling and analysis of commonpath phase shifting shear system based on birefringent optical devices[J]. Journal of Nonlinear Optical Physics & Materials, 17, 503-510(2008).
[41] Chen W T, Zhu A Y, Capasso F. Flat optics with dispersion-engineered metasurfaces[J]. Nature Reviews Materials, 5, 604-620(2020).
[42] Wang Z, Zhang H R, Zhao H T et al. Intelligent electromagnetic metasurface camera: system design and experimental results[J]. Nanophotonics, 11, 2011-2024(2022).
[43] Ouyang R, Wang D, Jin L X et al. Dual-gratings imaging spectrometer[J]. Applied Sciences, 11, 11048(2021).
[44] Lin R R, Hu H, Ding Y S et al. Improving the image quality of high-angle interfaces and subsalt sediments using high-order scattered seismic waves[J]. Pure and Applied Geophysics, 178, 1661-1675(2021).
[45] Zou J, Ma X, Xia X et al. High resolution and ultra-compact on-chip spectrometer using bidirectional edge-input arrayed waveguide grating[J]. Journal of Lightwave Technology, 38, 4447-4453(2020).
[46] Ma X, Li M Y, He J J. CMOS-compatible integrated spectrometer based on echelle diffraction grating and MSM photodetector array[J]. IEEE Photonics Journal, 5, 6600807(2013).
[47] Ruan Z L, Hao Z L, Zhang H et al. Topological-defect-induced superstructures on graphite surface[J]. Chinese Physics Letters, 38, 027201(2021).
[48] Faraji-Dana M, Arbabi E, Arbabi A et al. Compact folded metasurface spectrometer[J]. Nature Communications, 9, 4196(2018).
[49] Faraji-Dana M, Arbabi E, Kwon H et al. Hyperspectral imager with folded metasurface optics[J]. ACS Photonics, 6, 2161-2167(2019).
[50] Shaltout A M, Kim J, Boltasseva A et al. Ultrathin and multicolour optical cavities with embedded metasurfaces[J]. Nature Communications, 9, 2673(2018).
[51] Tittl A, Leitis A, Liu M K et al. Imaging-based molecular barcoding with pixelated dielectric metasurfaces[J]. Science, 360, 1105-1109(2018).
[52] Wang Z, Yi S, Chen A et al. Single-shot on-chip spectral sensors based on photonic crystal slabs[J]. Nature Communications, 10, 1020(2019).
[53] Xiong J, Cai X S, Cui K Y et al. Dynamic brain spectrum acquired by a real-time ultraspectral imaging chip with reconfigurable metasurfaces[J]. Optica, 9, 461-468(2022).
[54] Yang J W, Cui K Y, Cai X S et al. Ultraspectral imaging based on metasurfaces with freeform shaped meta-atoms[J]. Laser & Photonics Reviews, 16, 2100663(2022).