• Infrared and Laser Engineering
  • Vol. 49, Issue 9, 20201034 (2020)
Zilan Deng, Qing'An Tu, and Xiangping Li*
Author Affiliations
  • Guangdong Provincial Key Laboratory of Optical Fiber Sensing and Communications, Institute of Photonics Technology, Jinan University, Guangzhou 510632, China
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    DOI: 10.3788/IRLA20201034 Cite this Article
    Zilan Deng, Qing'An Tu, Xiangping Li. Multi-dimensional metasurface and its application in information encryption and anti-counterfeiting[J]. Infrared and Laser Engineering, 2020, 49(9): 20201034 Copy Citation Text show less
    References

    [1] N Yu, F Capasso. Flat optics with designer metasurfaces. Nat Mater, 13, 139-150(2014).

    [2] H T Chen, A J Taylor, N Yu. A review of metasurfaces: physics and applications. Rep Prog Phys, 79, 076401(2016).

    [3] J B Pendry, D Schurig, D R Smith. Controlling electromagnetic fields. Science, 312, 1780-1782(2006).

    [4] U Leonhardt. Optical conformal mapping. Science, 312, 1777-1780(2006).

    [5] J Valentine, S Zhang, T Zentgraf. Three-dimensional optical metamaterial with a negative refractive index. Nature, 455, 376-379(2008).

    [6] D R Smith, J B Pendry, M C Wiltshire. Metamaterials and negative refractive index. Science, 305, 788-792(2004).

    [7] J B Pendry. Negative refraction makes a perfect lens. Phys Rev Lett, 85, 3966(2000).

    [8] N Fang, H Lee, C Sun. Sub–diffraction-limited optical imaging with a silver superlens. Science, 308, 534-537(2005).

    [9] X Chen, L Huang, H Muhlenbernd. Dual-polarity plasmonic metalens for visible light. Nat Commun, 3, 1198(2012).

    [10] E Arbabi, A Arbabi, S M Kamali. MEMS-tunable dielectric metasurface lens. Nat Commun, 9, 812(2018).

    [11] M Khorasaninejad, F Aieta, P Kanhaiya. Achromatic metasurface lens at telecommunication wavelengths. Nano Lett, 15, 5358-5362(2015).

    [12] Z L Deng, G X Li. Metasurface optical holography. Materials Today Physics, 3, 16-32(2017).

    [13] G Zheng, H Muhlenbernd, M Kenney. Metasurface holograms reaching 80% efficiency. Nat Nanotechnol, 10, 308-312(2015).

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

    [15] N Yu, F Aieta, P Genevet. A broadband, background-free quarter-wave plate based on plasmonic metasurfaces. Nano Lett, 12, 6328-6333(2012).

    [16] F Ding, Z Wang, S He. Broadband high-efficiency half-wave plate: a supercell-based plasmonic metasurface approach. ACS Nano, 9, 4111-4119(2015).

    [17] Z C Liu, Z C Li, Z Liu. Single-layer plasmonic metasurface half-wave plates with wavelength-independent polarization conversion angle. ACS Photonics, 4, 2061-2069(2017).

    [18] F Y Yue, D D Wen, J T Xin. Vector vortex beam generation with a single plasmonic metasurface. ACS Photonics, 3, 1558-1563(2016).

    [19] X Yi, X Ling, Z Zhang. Generation of cylindrical vector vortex beams by two cascaded metasurfaces. Opt Express, 22, 17207-17215(2014).

    [20] Hedayati M Keshavarz, M Elbahri. Review of metasurface plasmonic structural color. Plasmonics, 12, 1463-1479(2016).

    [21] M W Song, X Li, M B Pu. Color display and encryption with a plasmonic polarizing metamirror. Nanophotonics, 7, 323-331(2018).

    [22] W Yang, S Xiao, Q Song. All-dielectric metasurface for high-performance structural color. Nat Commun, 11, 1864(2020).

    [23] M Khorasaninejad, W Zhu, K B Crozier. Efficient polarization beam splitter pixels based on a dielectric metasurface. Optica, 2, 376-382(2015).

    [24] T Cai, G M Wang, X F Zhang. Ultra-thin polarization beam splitter using 2-D transmissive phase gradient metasurface. IEEE Transactions on Antennas and Propagation, 63, 5629-5636(2015).

    [25] Y Y Xie, P N Ni, Q H Wang. Metasurface-integrated vertical cavity surface-emitting lasers for programmable directional lasing emissions. Nat Nanotechnol, 15, 125-130(2020).

    [26] L Y Xu, C A Curwen, P W C Hon. Metasurface external cavity laser. Applied Physics Letters, 107, 221105(2015).

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

    [28] M A Kats, P Genevet, G Aoust. Giant birefringence in optical antenna arrays with widely tailorable optical anisotropy. Proceedings of the National Academy of Sciences of the United States of America, 109, 12364-12368(2012).

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

    [30] L L Huang, X Z Chen, H Muhlenbernd. Three-dimensional optical holography using a plasmonic metasurface. Nature Communications, 4, 2808(2013).

    [31] A Arbabi, E Arbabi, Y Horie. Planar metasurface retroreflector. Nature Photonics, 11, 415(2017).

    [32] Z L Deng, J Deng, X Zhuang. Facile metagrating holograms with broadband and extreme angle tolerance. Light Sci Appl, 7, 78(2018).

    [33] J X Li, P Yu, C C Tang. Bidirectional perfect absorber using free substrate plasmonic metasurfaces. Advanced Optical Materials, 5, 1700152(2017).

    [34] Z L Deng, N Yogesh, X D Chen. Full controlling of Fano resonances in metal-slit superlattice. Sci Rep, 5, 18461(2015).

    [35] D C Marinica, A G Borisov, S V Shabanov. Bound states in the continuum in photonics. Phys Rev Lett, 100, 183902(2008).

    [36] K Huang, H Liu, F J Garcia-Vidal. Ultrahigh-capacity non-periodic photon sieves operating in visible light. Nat Commun, 6, 7059(2015).

    [37] F Yue, C Zhang, X F Zang. High-resolution grayscale image hidden in a laser beam. Light Sci Appl, 7, 17129(2018).

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

    [39] R W Gerchberg, W O Saxton. A practical algorithm for the determination of phase from image and diffraction plane pictures. Optik, 35, 237-246(1972).

    [40] R Z Zhao, L L Huang, C C Tang. Nanoscale polarization manipulation and encryption based on dielectric metasurfaces. Advanced Optical Materials, 6, 1800490(2018).

    [41] Y Intaravanne, X Z Chen. Recent advances in optical metasurfaces for polarization detection and engineered polarization profiles. Nanophotonics, 9, 1003-1014(2020).

    [42] Y Liu, X Ling, X Yi. Realization of polarization evolution on higher-order Poincaré sphere with metasurface. Applied Physics Letters, 104, 191110(2014).

    [43] C Zhang, D Wen, F Yue. Optical metasurface generated vector beam for anticounterfeiting. Physical Review Applied, 10, 034028(2018).

    [44] J Deng, L Deng, Z Guan. Multiplexed anticounterfeiting meta-image displays with single-sized nanostructures. Nano Lett, 20, 1830-1838(2020).

    [45] C Zhang, F Dong, Y Intaravanne. Multichannel metasurfaces for anticounterfeiting. Physical Review Applied, 12, 034028(2019).

    [46] F Dong, W Chu. Multichannel-independent information encoding with optical metasurfaces. Adv Mater, 31, e1804921(2019).

    [47] H Mühlenbernd, P Georgi, N Pholchai. Amplitude- and phase-controlled surface plasmon polariton excitation with metasurfaces. ACS Photonics, 3, 124-129(2016).

    [48] A Chizari, S Abdollahramezani, M V Jamali. Analog optical computing based on a dielectric meta-reflect array. Opt Lett, 41, 3451-3454(2016).

    [49] H Babashah, Z Kavehvash, S Koohi. Integration in analog optical computing using metasurfaces revisited: toward ideal optical integration. Journal of the Optical Society of America B-Optical Physics, 34, 1270-1279(2017).

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

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

    [52] Q Wang, X Zhang, Y Xu. Broadband metasurface holograms: toward complete phase and amplitude engineering. Sci Rep, 6, 32867(2016).

    [53] A C Overvig, S Shrestha, S C Malek. Dielectric metasurfaces for complete and independent control of the optical amplitude and phase. Light Sci Appl, 8, 92(2019).

    [54] S Chen, F Zeuner, M Weismann. Giant nonlinear optical activity of achiral origin in planar metasurfaces with quadratic and cubic nonlinearities. Adv Mater, 28, 2992-2999(2016).

    [55] X Zang, F Dong, F Yue. Polarization encoded color image embedded in a dielectric metasurface. Adv Mater, 30, e1707499(2018).

    [56] L Duempelmann, A Luu-Dinh, B Gallinet. Four-fold color filter based on plasmonic phase retarder. ACS Photonics, 3, 190-196(2015).

    [57] G Li, S Chen, N Pholchai. Continuous control of the nonlinearity phase for harmonic generations. Nat Mater, 14, 607-612(2015).

    [58] W Ye, F Zeuner, X Li. Spin and wavelength multiplexed nonlinear metasurface holography. Nat Commun, 7, 11930(2016).

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

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

    [61] Z Li, C Chen, Z Guan. Three‐channel metasurfaces for simultaneous meta‐holography and meta‐nanoprinting: A single‐cell design approach. Laser & Photonics Reviews, 14, 2000032(2020).

    [62] L Deng, J Deng, Z Guan. Malus-metasurface-assisted polarization multiplexing. Light Sci Appl, 9, 101(2020).

    [63] Q Song, A Baroni, R Sawant. Ptychography retrieval of fully polarized holograms from geometric-phase metasurfaces. Nat Commun, 11, 2651(2020).

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

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

    [66] Mueller J P Balthasar, N A Rubin, R C Devlin. Metasurface polarization optics: Independent phase control of arbitrary orthogonal states of polarization. Phys Rev Lett, 118, 113901(2017).

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

    [68] J Chen, T Li, S Wang. Multiplexed holograms by surface plasmon propagation and polarized scattering. Nano Lett, 17, 5051-5055(2017).

    [69] J X Li, S Q Chen, H F Yang. Simultaneous control of light polarization and phase distributions using plasmonic metasurfaces. Advanced Functional Materials, 25, 704-710(2015).

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

    [71] R Zhao, B Sain, Q Wei. Multichannel vectorial holographic display and encryption. Light Sci Appl, 7, 95(2018).

    [72] J Zhang, X Wei, I D Rukhlenko. Electrically tunable metasurface with independent frequency and amplitude modulations. ACS Photonics, 7, 265-271(2019).

    [73] V Flauraud, M Reyes, R Paniagua-Domínguez. Silicon nanostructures for bright field full color prints. ACS Photonics, 4, 1913-1919(2017).

    [74] Y Bao, Y Yu, H Xu. Full-colour nanoprint-hologram synchronous metasurface with arbitrary hue-saturation-brightness control. Light Sci Appl, 8, 95(2019).

    [75] J Ding, N Xu, H Ren. Dual-wavelength terahertz metasurfaces with independent phase and amplitude control at each wavelength. Sci Rep, 6, 34020(2016).

    [76] F Dong, H Feng, L Xu. Information encoding with optical dielectric metasurface via independent multichannels. ACS Photonics, 6, 230-237(2018).

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

    [78] 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).

    [79] H Zhao, C M Zhang, J Y Guo. Metasurface hologram for multi-image hiding and seeking. Physical Review Applied, 12, 054021(2019).

    [80] H X Xu, G Hu, L Han. Chirality‐assisted high‐efficiency metasurfaces with independent control of phase, amplitude, and polarization. Advanced Optical Materials, 7, 1801479(2019).

    [81] G Minatti, F Caminita, E Martini. Synthesis of modulated-metasurface antennas with amplitude, phase, and polarization control. IEEE Transactions on Antennas and Propagation, 64, 3907-3919(2016).

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

    [83] H Ren, G Briere, X Fang. Metasurface orbital angular momentum holography. Nat Commun, 10, 2986(2019).

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

    [85] H Zhou, B Sain, Y Wang. Polarization-encrypted orbital angular momentum multiplexed metasurface holography. ACS Nano, 14, 5553-5559(2020).

    [86] H Q Zhou, Y T Wang, X W Li. Switchable active phase modulation and holography encryption based on hybrid metasurfaces. Nanophotonics, 9, 905-912(2020).

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

    [88] S Q Jia, J Liu, A U R Khalid. Composite nanostructured design for dynamic control of metasurface holograms. Journal of the Optical Society of America B-Optical Physics, 37, 658-664(2020).

    [89] J Li, P Yu, H Cheng. Optical polarization encoding using graphene‐loaded plasmonic metasurfaces. Advanced Optical Materials, 4, 91-98(2015).

    [90] A Chanana, A Paulsen, S Guruswamy. Hiding multi-level multi-color images in terahertz metasurfaces. Optica, 3, 1466-1470(2016).

    [91] J Sautter, I Staude, M Decker. Active tuning of all-dielectric metasurfaces. ACS Nano, 9, 4308-4315(2015).

    [92] L Wang, T Li, R Y Guo. Active display and encoding by integrated plasmonic polarizer on light-emitting-diode. Sci Rep, 3, 2603(2013).

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

    [94] X Yang, D Zhang, S Wu. Reconfigurable all-dielectric metasurface based on tunable chemical systems in aqueous solution. Sci Rep, 7, 3190(2017).

    [95] S C Malek, H S Ee, R Agarwal. Strain multiplexed metasurface holograms on a stretchable substrate. Nano Lett, 17, 3641-3645(2017).

    [96] S M Kamali, E Arbabi, A Arbabi. Highly tunable elastic dielectric metasurface lenses. Laser & Photonics Reviews, 10, 1002-1008(2016).

    [97] A Colombi, V Ageeva, R J Smith. Enhanced sensing and conversion of ultrasonic Rayleigh waves by elastic metasurfaces. Sci Rep, 7, 6750(2017).

    [98] M Rahmani, G Leo, I Brener. Nonlinear frequency conversion in optical nanoantennas and metasurfaces: materials evolution and fabrication. Opto-Electronic Advances, 1, 18002101-18002112(2018).

    [99] B Liu, B Sain, B Reineke. Nonlinear wavefront control by geometric‐phase dielectric metasurfaces: influence of mode field and rotational symmetry. Advanced Optical Materials, 8, 1902050(2020).

    [100] S M Chen, G X Li, K W Cheah. Controlling the phase of optical nonlinearity with plasmonic metasurfaces. Nanophotonics, 7, 1013-1024(2018).

    [101] A E Minovich, A E Miroshnichenko, A Y Bykov. Functional and nonlinear optical metasurfaces. Laser & Photonics Reviews, 9, 195-213(2015).

    [102] M Celebrano, X Wu, M Baselli. Mode matching in multiresonant plasmonic nanoantennas for enhanced second harmonic generation. Nat Nanotechnol, 10, 412(2015).

    [103] Y T Tang, Y Intaravanne, J H Deng. Nonlinear vectorial metasurface for optical encryption. Physical Review Applied, 12, 024028(2019).

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

    [105] Z Lin, L Huang, Z T Xu. Four‐wave mixing holographic multiplexing based on nonlinear metasurfaces. Advanced Optical Materials, 7, 1900782(2019).

    [106] F Walter, G Li, C Meier. Ultrathin nonlinear metasurface for optical image encoding. Nano Lett, 17, 3171-3175(2017).

    [107] J Xue, Z K Zhou, L Lin. Perturbative countersurveillance metaoptics with compound nanosieves. Light Sci Appl, 8, 101(2019).

    [108] L Li, Cui T Jun, W Ji. Electromagnetic reprogrammable coding-metasurface holograms. Nat Commun, 8, 197(2017).

    [109] L Zhang, X Q Chen, S Liu. Space-time-coding digital metasurfaces. Nat Commun, 9, 4334(2018).

    [110] A Nemati, Q Wang, M H Hong. Tunable and reconfigurable metasurfaces and metadevices. Opto-Electronic Advances, 1, 18000901-18000925(2018).

    [111] A M Shaltout, V M Shalaev, M L Brongersma. Spatiotemporal light control with active metasurfaces. Science, 364, eaat3100(2019).

    [112] M Kim, I Kim, J Jang, D Lee. Active color control in a metasurface by polarization rotation. Applied Sciences-Basel, 8, 982(2018).

    [113] C Huang, J Yang, X Wu. Reconfigurable metasurface cloak for dynamical electromagnetic illusions. ACS Photonics, 5, 1718-1725(2017).

    Zilan Deng, Qing'An Tu, Xiangping Li. Multi-dimensional metasurface and its application in information encryption and anti-counterfeiting[J]. Infrared and Laser Engineering, 2020, 49(9): 20201034
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