Dual-band multifunctional coding metasurface with a mingled anisotropic aperture for polarized manipulation in full space

被引:1
|
作者
YIBO PAN [1 ]
FENG LAN [1 ,2 ]
YAXIN ZHANG [1 ,2 ]
HONGXIN ZENG [1 ]
LUYANG WANG [1 ]
TIANYANG SONG [1 ]
GUIJU HE [1 ]
ZIQIANG YANG [1 ,2 ]
机构
[1] School of Electronic Science and Engineering, University of Electronic Science and Technology of China
[2] Yangtze Delta Region Institute (Huzhou), University of Electronic Science and Technology of China
基金
中国博士后科学基金; 中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
O441 [电磁学]; TB34 [功能材料];
学科分类号
0809 ; 080501 ;
摘要
Integrated metasurfaces with diversified functionalities have demonstrated promising prospects for comprehensive implementations in compact 5G/6G communication systems by flexibly manipulating electromagnetic(EM)waves. Increasingly emerged multifunctional metasurfaces have successfully revealed integrated wavefront manipulations via phase gradient arrays, coding apertures, independent polarization control, asymmetric transmission/reflection, etc. However, multifunctional metasurfaces with more degrees of freedom in terms of multi-band/broadband operation frequencies, full-space coverage, and computable array factors are still in dire demand.As a step forward in extending manipulation dimensions, we propose and corroborate a dual-band multifunctional coding metasurface for anomalous reflection, radar cross-section reduction, and vortex beam generation through full-wave analysis and experiment. Our tri-layer meta-device comprises a shared coding aperture of splitring and cross-shaped resonators sandwiched between two layers of orthogonal wire gratings. With an approach of independent control of a reflection–transmission wavefront under orthogonal polarization states and Fabry–Perot-like constructive interference, the low-cross-talk shared coding aperture features a smooth phase shift and high efficiency for 3-bit coding in the K-band and 1-bit coding in the Ka-band. Both numerical and measured results verify that the proposed coding metasurface can effectively realize full-space EM control and improve the capacity of the information channel, which could be developed for potential applications in multifunctional devices and integrated systems.
引用
收藏
页码:416 / 425
页数:10
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