• Photonics Research
  • Vol. 13, Issue 5, 1390 (2025)
Jing Yuan1,2,†, Guichuan Xu1,2,†, Zhengang Lu1,2,*, Xinmeng Zhuang3..., Huanping Zhou3, Heyan Wang1,2, Lin Han1,2 and Jiubin Tan1,2|Show fewer author(s)
Author Affiliations
  • 1Center of Ultra-precision Optoelectronic Instrument Engineering, Harbin Institute of Technology, Harbin 150080, China
  • 2Key Laboratory of Ultra-precision Intelligent Instrumentation (Harbin Institute of Technology), Ministry of Industry and Information Technology, Harbin 150080, China
  • 3Department of Materials Science and Engineering, College of Engineering, Peking University, Beijing 100871, China
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    DOI: 10.1364/PRJ.550483 Cite this Article Set citation alerts
    Jing Yuan, Guichuan Xu, Zhengang Lu, Xinmeng Zhuang, Huanping Zhou, Heyan Wang, Lin Han, Jiubin Tan, "Dual-frequency-range modulator based on a planar nested multiscale metasurface," Photonics Res. 13, 1390 (2025) Copy Citation Text show less
    References

    [1] T. Zhong, J. M. Kindem, J. G. Bartholomew. Nanophotonic rare-earth quantum memory with optically controlled retrieval. Science, 357, 1392-1395(2017).

    [2] F. Ashtiani, A. J. Geers, F. Aflatouni. An on-chip photonic deep neural network for image classification. Nature, 606, 501-506(2022).

    [3] E. Kuramochi, K. Nozaki, A. Shinya. Large-scale integration of wavelength-addressable all-optical memories on a photonic crystal chip. Nat. Photonics, 8, 474-481(2014).

    [4] C. Li, L. L. Liang, B. S. Zhang. Magneto-dielectric synergy and multiscale hierarchical structure design enable flexible multipurpose microwave absorption and infrared stealth compatibility. Light Sci. Appl., 17, 40(2025).

    [5] X. Y. Liu, H. Y. Fu. Highly-coherent second-harmonic generation in a chip-scale source. Light Sci. Appl., 13, 20(2024).

    [6] S. J. Tan, S. N. Guo, Y. Wu. Achieving broadband microwave shielding, thermal management, and smart window in energy-efficient buildings. Adv. Funct. Mater., 35, 2415921(2025).

    [7] J. H. Ma, Z. T. Luo, S. J. Tan. Achieving the low emissivity of graphene oxide based film for micron-level electromagnetic waves stealth application. Carbon, 218, 118771(2024).

    [8] C. Y. Liu, L. Xu, X. Y. Xiang. Achieving ultra-broad microwave absorption bandwidth around millimeter-wave atmospheric window through an intentional manipulation on multi-magnetic resonance behavior. Nano-Micro Lett., 16, 176(2024).

    [9] S. P. Dang, O. Amin, B. Shihada. What should 6G be?. Nat. Electronics, 3, 20-29(2020).

    [10] J. H. Wang, X. T. Ling, Y. W. Le. Blockchain-enabled wireless communications: a new paradigm towards 6G. Natl. Sci. Rev., 8, nwab069(2021).

    [11] Y. Huang, Y. C. Shen, J. Y. Wang. From terahertz imaging to terahertz wireless communications. Engineering, 22, 106-124(2023).

    [12] J. Jeong, S. K. Kim, J. Kim. Heterogeneous and monolithic 3D integration of III-V-based radio frequency devices on Si CMOS circuits. ACS Nano, 16, 9031-9040(2022).

    [13] J. T. Li, Z. Yue, J. Li. Diverse terahertz wavefront manipulations empowered by the spatially interleaved metasurfaces. Sci. China Inf. Sci., 66, 132301(2023).

    [14] M. J. H. Tan, F. Freire-Fernández, T. W. Odom. Symmetry-guided engineering of polarization by 2D moire metasurfaces. ACS Nano, 18, 23181-23188(2024).

    [15] W. B. He, X. A. Cheng, S. Y. Hu. Color coded metadevices toward programmed terahertz switching. Light Sci. Appl., 13, 142(2024).

    [16] H. T. Chen, J. F. O’Hara, A. K. Azad. Experimental demonstration of frequency-agile terahertz metamaterials. Nat. Photonics, 2, 295-298(2008).

    [17] Y. Shen, T. Watanabe, D. A. Arena. Nonlinear cross-phase modulation with intense single-cycle terahertz pulses. Phys. Rev. Lett., 99, 043901(2007).

    [18] H. Zhao, X. K. Wang, S. T. Liu. Highly efficient vectorial field manipulation using a transmitted tri-layer metasurface in the terahertz band. Opto-Electron. Adv., 6, 220012(2023).

    [19] X. L. Zhuang, W. Zhang, K. M. Wang. Active terahertz beam steering based on mechanical deformation of liquid crystal elastomer metasurface. Light Sci. Appl., 12, 14(2023).

    [20] H. F. Y. Watson, A. Ruocco, M. Tiberi. Graphene phase modulators operating in the transparency regime. ACS Nano, 18, 30269-30282(2024).

    [21] C. Schiattarella, S. Romano, L. Sirleto. Directive giant upconversion by supercritical bound states in the continuum. Nature, 626, 765-771(2024).

    [22] B. X. Wang, C. Y. Xu, G. Y. Duan. Review of broadband metamaterial absorbers: from principles, design strategies, and tunable properties to functional applications. Adv. Funct. Mater., 33, 2213818(2023).

    [23] G. C. Wang, B. Hu, H. Zhao. Pump-wavelength sensitive terahertz spatiotemporal metasurface. Adv. Opt. Mater., 12, 2301994(2024).

    [24] T. H. Liu, Y. Y. Meng, J. F. Wang. Six-channel programmable coding metasurface simultaneously for orthogonal circular and linear polarizations. Photonics Res., 11, 1047-1056(2023).

    [25] Z. Chen, Y. D. Weng, J. K. Liu. Dual-band perfect absorber for a mid-infrared photodetector based on a dielectric metal metasurface. Photonics Res., 9, 27-33(2021).

    [26] J. Zhang, P. Liu, Z. Y. Xu. Hyperband synergistic metadevices. Adv. Opt. Mater., 12, 2401187(2024).

    [27] X. He, Y. Z. Li, H. Yu. A microsized optical spectrometer based on an organic photodetector with an electrically tunable spectral response. Nat. Electron., 7, 694-704(2024).

    [28] Y. Z. Hu, H. Hao, J. Zhang. Anisotropic temporal metasurfaces for tunable ultrafast photoactive switching dynamics. Laser Photonics Rev., 15, 2100244(2021).

    [29] J. Yao, R. Lin, M. K. Chen. Integrated-resonant metadevices: a review. Adv. Photonics, 5, 024001(2023).

    [30] W. Y. Ji, J. Chang, H. X. Xu. Recent advances in metasurface design and quantum optics applications with machine learning, physics-informed neural networks, and topology optimization methods. Light Sci. Appl., 12, 169(2023).

    [31] Y. J. Zhou, X. B. Wu, X. D. Cai. Smart meta-device powered by stray microwave energies: a green approach to shielding external interference and detection. Appl. Energy, 378, 124770(2025).

    [32] Z. M. An, Y. X. Huang, R. B. Zhang. High-temperature multispectral stealth metastructure from the microwave-infrared compatible design. Compos. Part B Eng., 259, 110737(2023).

    [33] J. Tian, S. Y. Li, C. He. Wideband transmissive programmable metasurface for adaptive millimeter-wave beamforming. Laser Photonics Rev., 19, 2401333(2025).

    [34] X. Y. Wang, X. M. Wang, Q. Ren. Realization of secure robotic brain via programmable metasurface with robust high-order BIC. Adv. Opt. Mater., 12, 2401611(2025).

    [35] H. Jiang, Y. Chen, W. Guo. Metasurface-enabled broadband multidimensional photodetectors. Nat. Commun., 15, 8347(2024).

    [36] J. J. Feng, H. Y. Li, Q. S. Cao. Study of an optically controlled active frequency selective surface. IEEE Antennas Wireless Propag. Lett., 17, 1707-1711(2018).

    [37] M. Y. Geng, X. L. Yang, H. Chen. Optically transparent graphene-based cognitive metasurface for adaptive frequency manipulation. Photonics Res., 11, 129-136(2023).

    [38] X. G. Zhao, Y. Wang, J. Schalch. Optically modulated ultra-broadband all-silicon metamaterial terahertz absorbers. ACS Photonics, 6, 830-837(2019).

    [39] R. Degl’Innocenti, H. Y. Lin, M. Navarro-Cía. Recent progress in terahertz metamaterial modulators. Nanophotonics, 11, 1485-1514(2022).

    [40] Y. C. Wang, J. Z. Ou, S. Balendhran. Electrochemical control of photoluminescence in two-dimensional MoS2 nanoflakes. ACS Nano, 7, 10083-10093(2013).

    [41] J. Yuan, Z. G. Lu, G. C. Xu. Pump-wavelength selective all-optical terahertz metasurface with independent amplitude and frequency modulations. Nano Lett., 24, 15414-15420(2024).

    [42] R. Chakraborty, P. K. Rajput, G. M. Anilkumar. Rational design of non-centrosymmetric hybrid halide perovskites. J. Am. Chem. Soc., 145, 1378-1388(2023).

    [43] Y. L. Wu, P. T. Zheng, J. Peng. 27.6% perovskite/c-Si tandem solar cells using industrial fabricated TOPCon device. Adv. Energy Mater., 12, 2200821(2022).

    [44] X. B. Hou, X. T. Hong, F. Y. Lin. Perovskite/GaAs-nanowire hybrid structure photodetectors with ultrafast multiband response enhancement by band engineering. Photonics Res., 11, 541-548(2023).

    Jing Yuan, Guichuan Xu, Zhengang Lu, Xinmeng Zhuang, Huanping Zhou, Heyan Wang, Lin Han, Jiubin Tan, "Dual-frequency-range modulator based on a planar nested multiscale metasurface," Photonics Res. 13, 1390 (2025)
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