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- W4382195718 abstract "In this paper, an dual-polarization 4-bit coding metasurface is proposed to achieve flexible manipulation of different polarization electromagnetic wave reflection angles and generation of dual-mode vortex beams by independent manipulation of orthogonal linearly polarized waves. The proposed metasurface is composed of H type metal patch, dielectric substrate and metal grounding layer from top to bottom. To prove the proposed concept, we design and fabricate four coding metasurfaces based on superposition theorem and holographic theory. One of the coding metasurface was designed to verify the ability to manipulate the beam angle, and each of the other three was designed to carry a vortex beam with different topological charges under orthogonal linearly polarized waves, operating at a central frequency of 24GHz. The experimental results show that the theoretical design is highly consistent with the simulation results. Therefore, it is verified that our proposed 4bit dual-polarization coding metasurface has strong and flexible ability to manipulate beam reflection angle and generate high performance dual-mode vortex beam antenna. Because of the wide application prospect of vortex beam in communication field, we have reason to believe that the proposed ultra-thin dual-mode vortex generator will have potential application in wireless communication system in image and microwave field." @default.
- W4382195718 created "2023-06-28" @default.
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- W4382195718 date "2023-01-01" @default.
- W4382195718 modified "2023-10-05" @default.
- W4382195718 title "Ultrathin Dual-Mode Orbital Angular Momentum Generated Based On Dual-Polarization Coding Metasurface" @default.
- W4382195718 cites W1976353140 @default.
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- W4382195718 doi "https://doi.org/10.7498/aps.72.20230457" @default.
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