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ARTICLES

Design of programmable beam splitting metasurface

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Pages 1495-1508 | Received 03 May 2023, Accepted 08 Sep 2023, Published online: 15 Sep 2023

References

  • Cui TJ, Qi MQ, Wan X, et al. Coding metamaterials, digital metamaterials and programmable metamaterials. Light Sci Appl. 2014;3(10):e218. doi:10.1038/lsa.2014.99
  • Jiaqi H, Long L, Xiangjin M, et al. Adaptively smart wireless power transfer using 2-bit programmable metasurface. IEEE Trans Ind Electron. 2022;69(8):8524–8534. doi:10.1109/TIE.2021.3105988
  • Boo Z, Junming Z, Yijun F. Active impedance metasurface with full 360° reflection phase tuning. Sci Rep. 2013;3(1):3059. doi:10.1038/srep03059
  • Qiang W, Xinge Z, Hanwei T, et al. Millimeter-wave digital coding metasurfaces based on nematic liquid crystals. Adv Theory Simul. 2019;2(12):1900141. doi:10.1002/adts.201900141
  • Hao C, Weibing L, Zhenguo L, et al. Microwave programmable graphene metasurface. ACS Photonics. 2020;7(6):1425–1435. doi:10.1021/acsphotonics.9b01807
  • Longqing C, Pitchappa P, Nan W, et al. Electrically programmable terahertz diatomic metamolecules for chiral optical control. Research. 2019;2019:7084251
  • Benwen C, Jingbo W, Weili L, et al. Programmable terahertz metamaterials with non-volatile memory. Laser Photon Rev. 2022;16(4):2100472. doi:10.1002/lpor.202100472
  • Li C, Teng Y, Duan S, et al. Electrically terahertz switchable device based on superconducting composite structure metamaterial. Appl Phys Lett. 2022;121:031702. doi:10.1063/5.0100561
  • Yan S, Haoxuan M, Huajie W. Polarization conversion metasurface design based on characteristic mode rotation and its application into wideband and miniature antennas with a low radar cross section. Opt Express. 2021;29(5):6794–6809. doi:10.1364/OE.416976
  • Zhu HL, Chenung SW, Chung KL, et al. Linear-to-circular polarization conversion using metasurface. IEEE Trans Antennas Propag. 2013;61(9):4615–4623. doi:10.1109/TAP.2013.2267712
  • Zhuochao W, Xumin D, Kuang Z, et al. Huygens metasurface holograms with the modulation of focal energy distribution. Adv Opt Mater. 2018;6(12):1800121. doi:10.1002/adom.201800121
  • Qian M, Chuanbo S, Guodong B, et al. Beam-Editing coding metasurfaces based on polarization Bit and orbital-angular-momentum-mode Bit. Adv Opt Mater. 2017;5(23):1700548. doi:10.1002/adom.201700548
  • Moumeni I, Labbani A. Very high efficient of 1 × 2, 1 × 4 and 1 × 8 Y beam splitters based on photonic crystal ring slot cavity. Opt Quantum Electron. 2021;53:1–15. doi:10.1007/s11082-021-02780-8
  • Tao SH, Fang Q, Song JF, et al. Cascade wide-angle Y-junction 1 × 16 optical power splitter based on silicon wire waveguides on silicon-on-insulator. Opt Express. 2008;16:21456–21461. doi:10.1364/OE.16.021456
  • Defrance F, Casaletti M, Sarrazin J, et al. Structured surface reflector design for oblique incidence beam splitter at 610 GHz. Opt Express. 2016;24(18):20335–20345. doi:10.1364/OE.24.020335
  • Yao R, Li H, Zhang B, et al. Compact and low-insertion-loss 1×N power splitter in silicon photonics. J Lightwave Technol. 2021;39(19):6253–6259. doi:10.1109/JLT.2021.3098346
  • Khorasaninejad M, Zhu W, Crozier KB. Efficient polarization beam splitter pixels based on a dielectric metasurface. Optica. 2015;2:376–382. doi:10.1364/OPTICA.2.000376
  • Zhang X, Deng R, Yang F, et al. Metasurface-based ultrathin beam splitter with variable split angle and power distribution. ACS Photonics. 2018;5(8):2997–3002. doi:10.1021/acsphotonics.8b00626
  • Yan T, Chun L, Shaochen L, et al. Broadband terahertz multi-beam splitters with uniform power distribution based on coding metasurfaces. Opt Mater. 2022;126(126):112228. doi:10.1016/j.optmat.2022.112228
  • Ren Y, Liang Z, Shi X, et al. Infrared all dielectric metasurface beam splitter based on translative structures. App Sci. 2023;13:5027.
  • Lina D, Li D, Cui Y, et al. Machine learning-based error compensation for high precision laser arbitrary beam splitting. Opt Laser Eng. 2023;160:107245.
  • Huang M, Zheng B, Cai T. Machine–learning-enabled metasurface for direction of arrival estimation. Nanophotonics. 2022;11(9):2001–2010. doi:10.1515/nanoph-2021-0663
  • Huang C, Sun B, Pan W, et al. Dynamical beam manipulation based on 2-bit digitally-controlled coding metasurface. Sci Rep. 2017;7:42302. doi:10.1038/srep42302
  • Yang H, Cao X, Yang F, et al. A programmable metasurface with dynamic polarization, scattering and focusing control. Sci Rep. 2016;6:35692. doi:10.1038/srep35692

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