• Infrared and Laser Engineering
  • Vol. 49, Issue 9, 20201035 (2020)
Yueqiang Hu1、2, Xin Li1, Xudong Wang1, Jiajie Lai1, and Huigao Duan1、2
Author Affiliations
  • 1National Research Center for High-Efficiency Grinding, College of Mechanical and Vehicle Engineering, Hunan University, Changsha 410082, China
  • 2Advanced Manufacturing Laboratory of Micro-nano Optical Devices, Shenzhen Research Institute, Hunan University, Shenzhen 518000, China
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    DOI: 10.3788/IRLA20201035 Cite this Article
    Yueqiang Hu, Xin Li, Xudong Wang, Jiajie Lai, Huigao Duan. Progress of micro-nano fabrication technologies for optical metasurfaces[J]. Infrared and Laser Engineering, 2020, 49(9): 20201035 Copy Citation Text show less
    References

    [1] V G Veselago. The electrodynamics of substances with simultaneously negative values of ϵ and μ. Physicsm-Uspekhi, 10, 509-514(1968).

    [2] J B Pendry, A J Holden, D J Robbins. Magnetism from conductors and enhanced nonlinear phenomena. IEEE Transactions on Microwave Theory and Techniques, 47, 2075-2084(1999).

    [3] W J Padilla, D N Basov, D R Smith. Negative refractive index metamaterials. Materials Today, 9, 28-35(2006).

    [4] B Vasic, G Isic, R Gajic. Controlling electromagnetic fields with graded photonic crystals in metamaterial regime. Optics Express, 18, 20321-20333(2010).

    [5] J D Joannopoulos, P R Villeneuve, S Fan. Photonic crystals. Solid State Communications, 102, 165-173(1997).

    [6] H Chen, L Ran, F J Huang. Left-handed materials composed of only S-shaped resonators. Physical Review E, 70, 057605(2004).

    [7] D R Smith, N Kroll. Negative refractive index in left-handed materials. Physical Review Letters, 85, 2933(2000).

    [8] W Cai, U K Chettiar, A V Kildishev. Optical cloaking with metamaterials. Nature Photonics, 1, 224-227(2007).

    [9] D Schurig, J J Mock, B Justice. Metamaterial electromagnetic cloak at microwave frequencies. Science, 314, 977-980(2006).

    [10] H T Chen, W J Padilla, J M Zide. Active terahertz metamaterial devices. Nature, 444, 597-600(2006).

    [11] H Tao, W J Padilla, X Zhang. Recent progress in electromagnetic metamaterial devices for terahertz applications. IEEE Journal of Selected Topics in Quantum Electronics, 17, 92-101(2010).

    [12] Q Wang, E T Rogers, B Gholipour. Optically reconfigurable metasurfaces and photonic devices based on phase change materials. Nature Photonics, 10, 60-65(2016).

    [13] P Genevet, N Yu, F Aieta. Ultra-thin plasmonic optical vortex plate based on phase discontinuities. Applied Physics Letters, 100, 13101(2012).

    [14] Krasnok A, Makarov S, Petrov M, et al. Towards alldielectric metamaterials nanophotonics[C]Metamaterials X. International Society f Optics Photonics, 2015, 9502: 950203.

    [15] Y F Yu, A Y Zhu, D R Paniagua. High-transmission dielectric metasurface with 2 pi phase control at visible wavelengths. Laser & Photonics Reviews, 9, 412-418(2015).

    [16] A Zhan, S Colburn, R Trivedi. Low-contrast dielectric metasurface optics. ACS Photonics, 3, 209-214(2016).

    [17] M I Shalaev, J Sun, A Tsukernik. High-efficiency all-dielectric metasurfaces for ultracompact beam manipulation in transmission mode. Nano Letters, 15, 6261-6266(2015).

    [18] B H Chen, P C Wu, V C Su. GaN metalens for pixel-level full-color routing at visible light. Nano Letters, 17, 6345-6352(2017).

    [19] L Liu, X Zhang, M Kenney. Broadband metasurfaces with simultaneous control of phase and amplitude. Advanced Materials, 26, 5031-5036(2014).

    [20] G Y Lee, G Yoon, S Y Lee. Complete amplitude and phase control of light using broadband holographic metasurfaces. Nanoscale, 10, 4237-4245(2018).

    [21] P Dai, Y Wang, X Zhu. Transmissive structural color filters using vertically coupled aluminum nanohole/nanodisk array with a triangular-lattice. Nanotechnology, 29, 395202(2018).

    [22] K Kumar, H Duan, R S Hegde. Printing colour at the optical diffraction limit. Nature Nanotechnology, 7, 557-561(2012).

    [23] Y Wang, M Zheng, Q Ruan. Stepwise-nanocavity-assisted transmissive color filter array microprints. Research, 2018, 8109054(2018).

    [24] Z Yang, Y Chen, Y Zhou. Microscopic interference full-color printing using grayscale-patterned Fabry-Perot resonance cavities. Advanced Optical Materials, 5, 1700029(2017).

    [25] B Sain, C Meier, T Zentgraf. Nonlinear optics in all-dielectric nanoantennas and metasurfaces: a review. Advanced Photonics, 1, 024002(2019).

    [26] J Deng, Y Yang, J Tao. Spatial frequency multiplexed meta-holography and meta-nanoprinting. ACS Nano, 13, 9237-9246(2019).

    [27] W Zang, Q Yuan, R Chen. Chromatic dispersion manipulation based on metalenses. Advanced Materials, 32, 1904935(2020).

    [28] Y Hu, X Wang, X Luo. All-dielectric metasurfaces for polarization manipulation: principles and emerging applications. Nanophotonics, 9, 3755-3780(2020).

    [29] S Colburn, A Zhan, E Bayati. Broadband transparent and CMOS-compatible flat optics with silicon nitride metasurfaces. Optical Materials Express, 8, 2330-2344(2018).

    [30] A Arbabi, E Arbabi, S M Kamali. Miniature optical planar camera based on a wide-angle metasurface doublet corrected for monochromatic aberrations. Nature Communications, 7, 1-9(2016).

    [31] Y Hu, X Luo, Y Chen. 3D-Integrated metasurfaces for full-colour holography[J]. Light: Science & Applications. Nature Communications, 8, 1-9(2019).

    [32] L Huang, D R Chowdhury, S Ramani. Impact of resonator geometry and its coupling with ground plane on ultrathin metamaterial perfect absorbers. Applied Physics Letters, 101, 101102(2012).

    [33] X Liu, C Lan, B Li. Dual band metamaterial perfect absorber based on artificial dielectric “molecules”. Scientific Reports, 6, 28906(2016).

    [34] X Zhu, W Yan, U Levy. Resonant laser printing of structural colors on high-index dielectric metasurfaces. Science Advances, 3, e1602487(2017).

    [35] S Sun, Z Zhou, C Zhang. All-dielectric full-color printing with TiO2 metasurfaces. ACS Nano, 11, 4445-4452(2017).

    [36] H Butt, Y Montelongo, T Butler. Carbon nanotube based high resolution holograms. Advanced Materials, 24, OP331-OP336(2012).

    [37] S Liu, M B Sinclair, S Saravi. Resonantly enhanced second-harmonic generation using III-V semiconductor all-dielectric metasurfaces. Nano Letters, 16, 5426-5432(2016).

    [38] S Liu, P P Vabishchevich, A Vaskin. An all-dielectric metasurface as a broadband optical frequency mixer. Nature Communications, 9, 2507(2018).

    [39] Z S Keren, O Avayu, L Michaeli. Nonlinear beam shaping with plasmonic metasurfaces. ACS Photonics, 3, 117-123(2016).

    [40] C Schlickriede, N Waterman, B Reineke. Imaging through nonlinear metalens using second harmonic generation. Advanced Materials, 30, 1703843(2018).

    [41] Y Gao, Y Fan, Y Wang. Nonlinear holographic all-dielectric metasurfaces. Nano Letters, 18, 8054-8061(2018).

    [42] M Khorasaninejad, K B Crozier. Silicon nanofin grating as a miniature chirality-distinguishing beam-splitter. Nature Communications, 5, 1-6(2014).

    [43] N A Rubin, G Aversa, P Chevalier. Matrix Fourier optics enables a compact full-Stokes polarization camera. Science, 365, eaax1839(2019).

    [44] Z Yang, Z Wang, Y Wang. Generalized Hartmann-Shack array of dielectric metalens sub-arrays for polarimetric beam profiling. Nature Communications, 9, 1-7(2018).

    [45] O Avayu, E Almeida, Y Prior. Composite functional metasurfaces for multispectral achromatic optics. Nature Communications, 8, 1-7(2017).

    [46] W T Chen, A Y Zhu, V Sanjeev. A broadband achromatic metalens for focusing and imaging in the visible. Nature Nanotechnology, 13, 220-226(2018).

    [47] S Wang, P C Wu, V C Su. A broadband achromatic metalens in the visible. Nature Nanotechnology, 13, 227-232(2018).

    [48] Z Zhao, M Pu, H Gao. Multispectral optical metasurfaces enabled by achromatic phase transition. Scientific Reports, 5, 1-9(2015).

    [49] W Zhao, B Liu, H Jiang. Full-color hologram using spatial multiplexing of dielectric metasurface. Opt Lett, 41, 147-150(2016).

    [50] N Yu, P Genevet, M A Kats. Light propagation with phase discontinuities: generalized laws of reflection and refraction. Science, 334, 333-337(2011).

    [51] X Ni, N K Emani, A V Kildishev. Broadband light bending with plasmonic nanoantennas. Science, 335, 427-427(2012).

    [52] X Chen, L Huang, H Mühlenbernd. Dual-polarity plasmonic metalens for visible light. Nature Communications, 3, 1-6(2012).

    [53] L Huang, X Chen, H Muhlenbernd. Three-dimensional optical holography using a plasmonic metasurface. Nature Communications, 4, 1-8(2013).

    [54] L Huang, H Muhlenbernd, X Li. Broadband hybrid holographic multiplexing with geometric metasurfaces. Advanced Materials, 27, 6444-6449(2015).

    [55] X Luo, Y Hu, X Li. Integrated metasurfaces with microprints and helicity-multiplexed holograms for real-time optical encryption. Advanced Optical Materials, 8, 1902020(2020).

    [56] X Li, L Chen, Y Li. Multicolor 3D meta-holography by broadband plasmonic modulation. Science Advances, 2, e1601102(2016).

    [57] P Yu, J Li, X Li. Generation of switchable singular beams with dynamic metasurfaces. ACS Nano, 13, 7100-7106(2019).

    [58] J Li, S Kamin, G Zheng. Addressable metasurfaces for dynamic holography and optical information encryption. Science Advances, 4, eaar6768(2018).

    [59] P Yu, J Li, S Zhang. Dynamic Janus metasurfaces in the visible spectral region. Nano Letters, 18, 4584-4589(2018).

    [60] S Sun, K Y Yang, C M Wang. High-efficiency broadband anomalous reflection by gradient meta-surfaces. Nano Letters, 12, 6223-6229(2012).

    [61] A Pors, O Albrektsen, I P Radko. Gap plasmon-based metasurfaces for total control of reflected light. Scientific Reports, 3, 1-6(2013).

    [62] W T Chen, K Y Yang, C M Wang. High-efficiency broadband meta-hologram with polarization-controlled dual images. Nano Letters, 14, 225-230(2014).

    [63] G Zheng, H Muhlenbernd, M Kenney. Metasurface holograms reaching 80% efficiency. Nature Nanotechnology, 10, 308-312(2015).

    [64] D Wen, F Yue, G Li. Helicity multiplexed broadband metasurface holograms. Nature Communications, 6, 1-7(2015).

    [65] Y W Huang, W T Chen, W Y Tsai. Aluminum plasmonic multicolor meta-hologram. Nano Letters, 15, 3122-3127(2015).

    [66] Z L Deng, J Deng, X Zhuang. Diatomic metasurface for vectorial holography. Nano Letters, 18, 2885-2892(2018).

    [67] Z L Deng, M Jin, X Ye. Full-Color complex-amplitude vectorial holograms based on multi-freedom metasurfaces. Advanced Functional Materials, 30, 1910610(2020).

    [68] S Wang, P C Wu, V C Su. Broadband achromatic optical metasurface devices. Nature Communications, 8, 1-9(2017).

    [69] C Zhang, F Yue, D Wen. Multichannel metasurface for simultaneous control of holograms and twisted light beams. ACS Photonics, 4, 1906-1912(2017).

    [70] M Semmlinger, M Zhang, M L Tseng. Generating third harmonic vacuum ultraviolet light with a TiO2 metasurface. Nano Letters, 19, 8972-8978(2019).

    [71] D Lin, P Fan, E Hasman. Dielectric gradient metasurface optical elements. Science, 345, 298-302(2014).

    [72] A Arbabi, Y Horie, M Bagheri. Dielectric metasurfaces for complete control of phase and polarization with subwavelength spatial resolution and high transmission. Nature Nanotechnology, 10, 937-943(2015).

    [73] F Aieta, M A Kats, P Genevet. Multiwavelength achromatic metasurfaces by dispersive phase compensation. Science, 347, 1342-1345(2015).

    [74] B Wang, F Dong, Q T Li. Visible-frequency dielectric metasurfaces for multiwavelength achromatic and highly dispersive holograms. Nano Letters, 16, 5235-5240(2016).

    [75] L Wang, S Kruk, H Tang. Grayscale transparent metasurface holograms. Optica, 3, 1504-1505(2016).

    [76] B Wang, F Dong, D Yang. Polarization-controlled color-tunable holograms with dielectric metasurfaces. Optica, 4, 1368-1371(2017).

    [77] K Huang, Z Dong, S Mei. Silicon multi-metaholograms for the broadband visible light. Laser & Photonics Reviews, 10, 500-509(2016).

    [78] L Jin, Z Dong, S Mei. Noninterleaved metasurface for (26-1) spin-and wavelength-encoded holograms. Nano Letters, 18, 8016-8024(2018).

    [79] R Zhao, B Sain, Q Wei. Multichannel vectorial holographic display and encryption. Light: Science & Applications, 7, 1-9(2018).

    [80] E Arbabi, S M Kamali, A Arbabi. Vectorial holograms with a dielectric metasurface: ultimate polarization pattern generation. ACS Photonics, 6, 2712-2718(2019).

    [81] E Arbabi, A Arbabi, S M Kamali. Multiwavelength metasurfaces through spatial multiplexing. Scientific Reports, 6, 32803(2016).

    [82] E Arbabi, A Arbabi, S M Kamali. Multiwavelength polarization-insensitive lenses based on dielectric metasurfaces with meta-molecules. Optica, 3, 628-633(2016).

    [83] E Arbabi, A Arbabi, S M Kamali. Controlling the sign of chromatic dispersion in diffractive optics with dielectric metasurfaces. Optica, 4, 625-632(2017).

    [84] D R Paniagua, Y F Yu, E Khaidarov. A metalens with a near-unity numerical aperture. Nano Letters, 18, 2124-2132(2018).

    [85] S Shrestha, A C Overvig, M Lu. Broadband achromatic dielectric metalenses. Light: Science & Applications, 7, 1-11(2018).

    [86] K Wang, J G Titchener, S S Kruk. Quantum metasurface for multiphoton interference and state reconstruction. Science, 361, 1104-1108(2018).

    [87] T Stav, A Faerman, E Maguid. Quantum entanglement of the spin and orbital angular momentum of photons using metamaterials. Science, 361, 1101-1104(2018).

    [88] S M Kamali, E Arbabi, A Arbabi. Angle-multiplexed metasurfaces: encoding independent wavefronts in a single metasurface under different illumination angles. Physical Review X, 7, 041056(2017).

    [89] O Yavas, M Svedendahl, P Dobosz. On-a-chip biosensing based on all-dielectric nanoresonators. Nano Letters, 17, 4421-4426(2017).

    [90] F Yesilkoy, E R Arvelo, Y Jahani. Ultrasensitive hyperspectral imaging and biodetection enabled by dielectric metasurfaces. Nature Photonics, 13, 390-396(2019).

    [91] A Leitis, A Tittl, M Liu. Angle-multiplexed all-dielectric metasurfaces for broadband molecular fingerprint retrieval. Science Advances, 5, eaaw2871(2019).

    [92] E Arbabi, S M Kamali, A Arbabi. Full-Stokes imaging polarimetry using dielectric metasurfaces. ACS Photonics, 5, 3132-3140(2018).

    [93] Y Yang, W Wang, P Moitra. Dielectric meta-reflectarray for broadband linear polarization conversion and optical vortex generation. Nano Letters, 14, 1394-1399(2014).

    [94] G Yoon, D Lee, K T Nam. “Crypto-display” in dual-mode metasurfaces by simultaneous control of phase and spectral responses. ACS Nano, 12, 6421-6428(2018).

    [95] Q Wei, B Sain, Y Wang. Simultaneous spectral and spatial modulation for color printing and holography using all-dielectric metasurfaces. Nano Letters, 19, 8964-8971(2019).

    [96] A C Overvig, S Shrestha, S C Malek. Dielectric metasurfaces for complete and independent control of the optical amplitude and phase. Light: Science & Applications, 8, 1-12(2019).

    [97] Y Bao, Y Yu, H Xu. Full-colour nanoprint-hologram synchronous metasurface with arbitrary hue-saturation-brightness control. Light: Science & Applications, 8, 1-10(2019).

    [98] R J Lin, V C Su, S Wang. Achromatic metalens array for full-colour light-field imaging. Nature Nanotechnology, 14, 227-231(2019).

    [99] H Ren, G Briere, X Fang. Metasurface orbital angular momentum holography. Nature Communications, 10, 1-8(2019).

    [100] L Li, Z Liu, X Ren. Metalens-array–based high-dimensional and multiphoton quantum source. Science, 368, 1487-1490(2020).

    [101] Y Hu, L Li, Y Wang. Trichromatic and tripolarization-channel holography with noninterleaved dielectric metasurface. Nano Letters, 20, 994-1002(2019).

    [102] M Khorasaninejad, W T Chen, R C Devlin. Metalenses at visible wavelengths: Diffraction-limited focusing and subwavelength resolution imaging. Science, 352, 1190-1194(2016).

    [103] M Khorasaninejad, A Y Zhu, C C Roques. Polarization-insensitive metalenses at visible wavelengths. Nano Letters, 16, 7229-7234(2016).

    [104] M Khorasaninejad, Z Shi, A Y Zhu. Achromatic metalens over 60 nm bandwidth in the visible and metalens with reverse chromatic dispersion. Nano Letters, 17, 1819-1824(2017).

    [105] W T Chen, A Y Zhu, J Sisler. Broadband achromatic metasurface-refractive optics. Nano Letters, 18, 7801-7808(2018).

    [106] W T Chen, A Y Zhu, J Sisler. A broadband achromatic polarization-insensitive metalens consisting of anisotropic nanostructures. Nature Communications, 10, 1-7(2019).

    [107] M Khorasaninejad, W Chen, A Zhu. Multispectral chiral imaging with a metalens. Nano Letters, 16, 4595-4600(2016).

    [108] R C Devlin, A Ambrosio, N A Rubin. Arbitrary spin-to–orbital angular momentum conversion of light. Science, 358, 896-901(2017).

    [109] H Sroor, Y W Huang, B Sephton. High-purity orbital angular momentum states from a visible metasurface laser. Nature Photonics, 14, 1-6(2020).

    [110] K Huang, J Deng, H S Leong. Ultraviolet metasurfaces of ~80% efficiency with antiferromagnetic resonances for optical vectorial anti-counterfeiting. Laser & Photonics Reviews, 13, 1800289(2019).

    [111] C Zhang, S Divitt, Q Fan. Low-loss metasurface optics down to the deep ultraviolet region. Light: Science & Applications, 9, 1-10(2020).

    [112] D Andren, L J Martinez, P Tassin. Large-scale metasurfaces made by an exposed resist. ACS Photonics, 7, 885-892(2020).

    [113] X Ni, A V Kildishev, V M Shalaev. Metasurface holograms for visible light. Nature Communications, 4, 1-6(2013).

    [114] W Wan, J Gao, X Yang. Full-color plasmonic metasurface holograms. ACS Nano, 10, 10671-10680(2016).

    [115] S Choudhury, U Guler, A Shaltout. Pancharatnam–Berry phase manipulating metasurface for visible color hologram based on low loss silver thin film. Advanced Optical Materials, 5, 1700196(2017).

    [116] Y Lee, J Kim, J Woo. Electro-optic switching in phase-discontinuity complementary metasurface twisted nematic cell. Optics Express, 22, 20816-20827(2014).

    [117] Y Zhang, W Liu, J Gao. Generating focused 3D perfect vortex beams by plasmonic metasurfaces. Advanced Optical Materials, 6, 1701228(2018).

    [118] S Chen, Y Cai, G Li. Geometric metasurface fork gratings for vortex-beam generation and manipulation. Laser & Photonics Reviews, 10, 322-326(2016).

    [119] C F Chen, C T Ku, Y H Tai. Creating optical near-field orbital angular momentum in a gold metasurface. Nano Letters, 15, 2746-2750(2015).

    [120] Y Chen, X Yang, J Gao. Spin-selective second-harmonic vortex beam generation with babinet-inverted plasmonic metasurfaces. Advanced Optical Materials, 6, 1800646(2018).

    [121] J Lin, J B Mueller, Q Wang. Polarization-controlled tunable directional coupling of surface plasmon polaritons. Science, 340, 331-334(2013).

    [122] Z Xu, T Li, D H Zhang. Groove-structured metasurfaces for modulation of surface plasmon propagation. Applied Physics Express, 7, 052001(2014).

    [123] F Cheng, J Gao, T S Luk. Structural color printing based on plasmonic metasurfaces of perfect light absorption. Scientific Reports, 5, 11045(2015).

    [124] X Ma, M Pu, X Li. A planar chiral meta-surface for optical vortex generation and focusing. Scientific Reports, 5, 10365(2015).

    [125] Z Li, W Wang, D Rosenmann. All-metal structural color printing based on aluminum plasmonic metasurfaces. Optics Express, 24, 20472-20480(2016).

    [126] Y Chen, J Gao, X Yang. Direction-controlled bifunctional metasurface polarizers. Laser & Photonics Reviews, 12, 1800198(2018).

    [127] Z Liu, H Du, Z Y Li. Invited article: Nano-kirigami metasurfaces by focused-ion-beam induced close-loop transformation. APL Photonics, 3, 100803(2018).

    [128] A Karvounis, B Gholipour, K F MacDonald. All-dielectric phase-change reconfigurable metasurface. Applied Physics Letters, 109, 051103(2016).

    [129] B Gholipour, G Adamo, D Cortecchia. Organometallic perovskite metasurfaces. Advanced Materials, 29, 1604268(2017).

    [130] J Smalley, F Vallini, S Montoya. Luminescent hyperbolic metasurfaces. Nature Communications, 8, 1-8(2017).

    [131] M V Gorkunov, O Y Rogov, A V Kondratov. Chiral visible light metasurface patterned in monocrystalline silicon by focused ion beam. Scientific Reports, 8, 1-10(2018).

    [132] M Semmlinger, M L Tseng, J Yang. Vacuum ultraviolet light-generating metasurface. Nano Letters, 18, 5738-5743(2018).

    [133] M S Komlenok, S G Tikhodeev, T Weiss. All-carbon diamond/graphite metasurface: Experiment and modeling. Applied Physics Letters, 113, 041101(2018).

    [134] C Yan, X Li, M Pu. Generation of polarization-sensitive modulated optical vortices with all-dielectric metasurfaces. ACS Photonics, 6, 628-633(2019).

    [135] J Berzins, S Indrisiunas, Erve K van. Direct and high-throughput fabrication of Mie-resonant metasurfaces via single-pulse laser interference. ACS Nano, 14, 6138-6149(2020).

    [136] Y He, Z Liu, Y Liu. Higher-order laser mode converters with dielectric metasurfaces. Opt Lett, 40, 5506-5509(2015).

    [137] R Drevinskas, M Beresna, J Zhang. Ultrafast laser-induced metasurfaces for geometric phase manipulation. Advanced Optical Materials, 5, 1600575(2017).

    [138] B Li, X Li, R Zhao. Polarization multiplexing terahertz metasurfaces through spatial femtosecond laser-shaping fabrication. Advanced Optical Materials, 8, 10.1022/adom.2017000(2020).

    [139] Z Wang, T Yang, Y Zhang. Flat lenses based on 2D perovskite nanosheets. Adv Mater, e2001388(2020).

    [140] J Zhou, H Qian, G Hu. Broadband photonic spin hall metalens. ACS Nano, 12, 82-88(2018).

    [141] W R Zipfel, R M Williams, W W Webb. Nonlinear magic: multiphoton microscopy in the biosciences. Nature Biotechnology, 21, 1369-1377(2003).

    [142] Yang Dong, Liu Lipu, Yang Hong,et al. Laser micronano threedimensional printing[J]. Laser & Optoelectronics Progress, 2018, 55(1): 011411. (in Chinese)

    [143] M V Rybin, K B Samusev, S Y Lukashenko. Transition from two-dimensional photonic crystals to dielectric metasurfaces in the optical diffraction with a fine structure. Sci Rep, 6, 30773(2016).

    [144] I Faniayeu, V Mizeikis. Realization of a helix-based perfect absorber for IR spectral range using the direct laser write technique. Optical Materials Express, 7, 1453(2017).

    [145] H Wang, Y Liu, Q Ruan. Off-axis holography with uniform ollumination via 3D printed diffractive optical elements. Advanced Optical Materials, 7, 1900068(2019).

    [146] H Wang, H Wang, W Zhang. Toward near-perfect diffractive optical elements via nanoscale 3D printing. ACS Nano, 7, 04313(2020).

    [147] Z Xu, Y Dong, C K Tseng. CMOS-compatible all-Si metasurface polarizing bandpass filters on 12-inch wafers. Opt Express, 27, 26060-26069(2019).

    [148] T Hu, C K Tseng, Y H Fu. Demonstration of color display metasurfaces via immersion lithography on a 12-inch silicon wafer. Opt Express, 26, 19548-19554(2018).

    [149] M Liu, Q Fan, L Yu. Polarization-independent infrared micro-lens array based on all-silicon metasurfaces. Opt Express, 27, 10738-10744(2019).

    [150] T Hu, Q Zhong, N Li. CMOS-compatible a-Si metalenses on a 12-inch glass wafer for fingerprint imaging. Nanophotonics, 9, 823-830(2020).

    [151] A She, S Zhang, S Shian. Large area metalenses: design, characterization, and mass manufacturing. Opt Express, 26, 1573-1585(2018).

    [152] Y Dong, Z Xu, N Li. Si metasurface half-wave plates demonstrated on a 12-inch CMOS platform. Nanophotonics, 9, 149-157(2019).

    [153] J S Park, S Zhang, A She. All-glass, large metalens at visible wavelength using deep-ultraviolet projection lithography. Nano Letters, 19, 8673-8682(2019).

    [154] T Roy, S Zhang, I W Jung. Dynamic metasurface lens based on MEMS technology. APL Photonics, 3, 021302(2018).

    [155] J Luo, B Zeng, C Wang. Fabrication of anisotropically arrayed nano-slots metasurfaces using reflective plasmonic lithography. Nanoscale, 7, 18805-18812(2015).

    [156] L Liu, X Zhang, Z Zhao. Batch fabrication of metasurface holograms enabled by plasmonic cavity lithography. Advanced Optical Materials, 5, 1700429(2017).

    [157] S V Makarov, V Milichko, E V Ushakova. Multifold emission enhancement in nanoimprinted hybrid perovskite metasurfaces. ACS Photonics, 4, 728-735(2017).

    [158] W Chen, M Tymchenko, P Gopalan. Large-area nanoimprinted colloidal Au nanocrystal-based nanoantennas for ultrathin polarizing plasmonic petasurfaces. Nano Letters, 15, 5254-5260(2015).

    [159] Y Yao, W Wu. All-dielectric heterogeneous metasurface as an efficient ultra-broadband reflector. Advanced Optical Materials, 5, 1700090(2017).

    [160] Iwanaga M. Largearea metasurfaces produced with nm precision by UV nanoimprint lithography[C]2016 Progress in Electromagic Research Symposium (PIERS). IEEE, 2016: 18571861.

    [161] H T Miyazaki, T Kasaya, H Oosato. Ultraviolet-nanoimprinted packaged metasurface thermal emitters for infrared CO2 sensing. Sci Technol Adv Mater, 16, 035005(2015).

    [162] Y Yao, H Liu, Y Wang. Nanoimprint-defined, large-area meta-surfaces for unidirectional optical transmission with superior extinction in the visible-to-infrared range. Optics Express, 24, 15362-15372(2016).

    [163] G Y Lee, J Y Hong, S Hwang. Metasurface eyepiece for augmented reality. Nature Communications, 9, 4562(2018).

    [164] R M M Hasan, X Luo, J Sun. Rolling nanoelectrode lithography. Micromachines (basel), 11, 070656(2020).

    [165] K Nagato, K Takahashi, T Sato. Laser-assisted replication of large-area nanostructures. Journal of Materials Processing Technology, 214, 2444-2449(2014).

    [166] N Bonod. Silicon photonics: Large-scale dielectric metasurfaces. Nat Mater, 14, 664-665(2015).

    [167] A Nemiroski, M Gonidec, J M Fox. Engineering shadows to fabricate optical metasurfaces. ACS Nano, 8, 11061-11070(2014).

    [168] Z Jaksic, R D Vasiljevic, M Maksimovic. Nanofabrication of negative refractive index metasurfaces. Microelectronic Engineering, 83, 1786-1791(2006).

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    [2] Shaoqi Huang, Zeyuan Song, Mingliang Pan, Yan Long, Bo Dai, Dawei Zhang. Rapid fabrication and characteristics analysis of high-filling-factor microlens array[J]. Infrared and Laser Engineering, 2021, 50(10): 20200476

    [3] Yaoyuan Lei, Qikai Chen, Yitian Liu, Yaoguang Ma. Principles and application progress of mid-infrared metasurfaces in imaging and detection (Invited)[J]. Infrared and Laser Engineering, 2022, 51(3): 20220082

    Yueqiang Hu, Xin Li, Xudong Wang, Jiajie Lai, Huigao Duan. Progress of micro-nano fabrication technologies for optical metasurfaces[J]. Infrared and Laser Engineering, 2020, 49(9): 20201035
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