• Photonics Research
  • Vol. 13, Issue 5, 1165 (2025)
Huanhuan Gao1,2, Xiaojun Huang2,3,4, Zhengjie Wang1, Xiongwei Ma2..., Wentao Li2, Hui Wang2 and He-Xiu Xu1,*|Show fewer author(s)
Author Affiliations
  • 1Air and Missile Defense College, Air Force Engineering University, Xi’an 710051, China
  • 2College of Communication and Information Engineering, Xi’an University of Science and Technology, Xi’an 710054, China
  • 3Engineering Research Center of Smart Coal Mine Advanced Communication Technology, Universities of Shaanxi Province, Xi’an 710054, China
  • 4e-mail: hxj@xust.edu.cn
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    DOI: 10.1364/PRJ.543810 Cite this Article Set citation alerts
    Huanhuan Gao, Xiaojun Huang, Zhengjie Wang, Xiongwei Ma, Wentao Li, Hui Wang, He-Xiu Xu, "Two-dimensional anomalous reflection with high efficiency and arbitrary direction based on a low-profile wideband metasurface," Photonics Res. 13, 1165 (2025) Copy Citation Text show less
    References

    [1] H. X. Xu, G. Hu, L. Han. Chirality-assisted high-efficiency metasurfaces with independent control of phase, amplitude, and polarization. Adv. Opt. Mater., 7, 1801479(2019).

    [2] Y. Jiao, H. Shi, X. Chen. Polarization-correlation-based metasurface for full-space independent amplitude and phase modulation. IEEE Trans. Antennas Propag., 72, 4670-4675(2024).

    [3] H. X. Xu, Y. Shao, H. Luo. Janus reflective polarization-division metadevices with versatile functions. IEEE Trans. Microw. Theory Tech., 71, 3273-3283(2023).

    [4] H. X. Xu, J. Xu, Y. Wang. Multichannel metasurfaces with frequency-direction multiplexed amplitude and phase modulations. Adv. Opt. Mater., 11, 2301299(2023).

    [5] C. Liu, W. M. Yu, Q. Ma. Intelligent coding metasurface holograms by physics-assisted unsupervised generative adversarial network. Photonics Res., 9, B159-B167(2021).

    [6] B. Zeng, C. Li, B. Fang. Flexible tuning of multifocal holographic imaging based on electronically controlled metasurfaces. Photonics Res., 12, 61-69(2024).

    [7] F. Li, Y. Li, T. Tang. All-dielectric terahertz metasurface for linearly-polarized multichannel transmission and superposition states of spherical and vortex waves. Photonics Res., 11, 485-493(2023).

    [8] H. X. Xu, H. Liu, X. Ling. Broadband vortex beam generation using multimode Pancharatnam–Berry metasurface. IEEE Trans. Antennas Propag., 65, 7378-7382(2017).

    [9] Q. Lou, Z. N. Chen. Sidelobe suppression of metalens antenna by amplitude and phase controllable metasurfaces. IEEE Trans. Antennas Propag., 69, 6977-6981(2021).

    [10] C. Xue, J. Sun, X. Gao. An ultrathin, low-profile and high-efficiency metalens antenna based on chain Huygens’ metasurface. IEEE Trans. Antennas Propag., 70, 11442-11453(2022).

    [11] H. X. Xu, S. Tang, G. M. Wang. Multifunctional microstrip array combining a linear polarizer and focusing metasurface. IEEE Trans. Antennas Propag., 64, 3676-3682(2016).

    [12] H. X. Xu, T. Cai, Y. Q. Zhuang. Dual-mode transmissive metasurface and its applications in multibeam transmitarray. IEEE Trans. Antennas Propag., 65, 1797-1806(2017).

    [13] R. Malleboina, J. C. Dash, D. Sarkar. Design of anomalous reflectors by phase gradient unit cell-based digitally coded metasurface. IEEE Antennas Wirel. Propag. Lett., 22, 2305-2309(2023).

    [14] S. K. R. Vuyyuru, R. Valkonen, D. H. Kwon. Efficient anomalous reflector design using array antenna scattering synthesis. IEEE Antennas Wirel. Propag. Lett., 22, 1711-1715(2023).

    [15] Z. L. Deng, Y. Cao, X. Li. Multifunctional metasurface: from extraordinary optical transmission to extraordinary optical diffraction in a single structure. Photonics Res., 6, 443-450(2018).

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

    [17] H. Luo, Y. Wang, M. Wang. Reconfigurable high-efficiency metadevice using Kirigami-inspired phase gradient metasurfaces. Results Phys., 53, 106949(2023).

    [18] Y. Saifullah, A. B. Waqas, G.-M. Yang. Multi-Bit dielectric coding metasurface for EM wave manipulation and anomalous reflection. Opt. Express, 28, 1139-1149(2020).

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

    [20] A. Díaz-Rubio, V. S. Asadchy, A. Elsakka. From the generalized reflection law to the realization of perfect anomalous reflectors. Sci. Adv., 3, e1602714(2017).

    [21] H. Gao, X. Huang, X. Ma. An ultra-wideband coding polarizer for beam control and RCS reduction. Front. Phys., 18, 42301(2023).

    [22] C. Qi, A. M. H. Wong. Broadband efficient anomalous reflection using an aggressively discretized metasurface. Opt. Express, 30, 15737-15746(2022).

    [23] H. B. Jing, Q. Ma, G. D. Bai. Anomalously perfect reflections based on 3-bit coding metasurfaces. Adv. Opt. Mater., 7, 1801742(2019).

    [24] C. Liu, J. He, J. Zhou. Broadband, high-efficiency and wide-incident-angle anomalous reflection in groove metagratings. Ann. Phys., 533, 2100149(2021).

    [25] Y. Li, X. Ma, X. Wang. All-angle scanning perfect anomalous reflection by using passive aperiodic gratings. IEEE Trans. Antennas Propag., 72, 877-889(2024).

    [26] P. Thureja, G. K. Shirmanesh, K. T. Fountaine. Array-level inverse design of beam steering active metasurfaces. ACS Nano, 14, 15042-15055(2020).

    [27] L. Yuan, L. Wang, X. S. Yang. An efficient artificial neural network model for inverse design of metasurfaces. IEEE Antennas Wirel. Propag. Lett., 20, 1013-1017(2021).

    [28] J. Zhang, G. Wang, T. Wang. Genetic algorithms to automate the design of metasurfaces for absorption bandwidth broadening. ACS Appl. Mater. Interfaces, 13, 7792-7800(2021).

    [29] P. Naseri, S. V. Hum. A generative machine learning-based approach for inverse design of multilayer metasurfaces. IEEE Trans. Antennas Propag., 69, 5725-5739(2021).

    [30] Z. Zhen, C. Qian, Y. Jia. Realizing transmitted metasurface cloak by a tandem neural network. Photonics Res., 9, B159-B235(2021).

    [31] T. J. Cui, M. Q. Qi, X. Wan. Coding metamaterials, digital metamaterials and programmable metamaterials. Light Sci. Appl., 3, e218(2014).

    Huanhuan Gao, Xiaojun Huang, Zhengjie Wang, Xiongwei Ma, Wentao Li, Hui Wang, He-Xiu Xu, "Two-dimensional anomalous reflection with high efficiency and arbitrary direction based on a low-profile wideband metasurface," Photonics Res. 13, 1165 (2025)
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