Highly-Efficient, Dual-Polarized Huygens' Metasurfaces for Scan-Angle Enhancement Without Directivity Degradation

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We hereby propose a dual-polarized beam-deflecting metasurface that can double the scan-angle range of a phased-array antenna without compromising the directivity across all scan angles, including broadside. In particular, our research focuses on expanding the scanning range of a dual-polarized phased-array antenna capable of independently steering TE and TM waves. This is achieved by placing a dual-polarized phase-gradient Huygens' metasurface in front of the antenna. The Huygens' metasurface employs crossed meander lines in four impedance layers that are suitably optimized to independently control the local electric and magnetic responses for maximizing the transmission for all incident beams. We validate our approach through theoretical analysis, full-wave simulations, and experimental verification. It is demonstrated that the beam-deflecting HMS achieves effective scan range expansion to -30(degrees)similar to 0(degrees) and 0(degrees)similar to 30(degrees) for TE and TM beams, respectively, using a dual-polarized phased array antenna source that scans from -15 degrees and 15 degrees.

키워드

Phased arraysMetasurfacesAntennasGratingsBase stationsAperturesLensesSurface wavesSurface impedanceImpedancebeam steeringHuygens' metasurfacedual-polarizationPHASED-ARRAYDOMEANTENNADESIGN
제목
Highly-Efficient, Dual-Polarized Huygens' Metasurfaces for Scan-Angle Enhancement Without Directivity Degradation
저자
Kim, JaeminSoltani, MohammadKim, MinseokEleftheriades, George V.
DOI
10.1109/ACCESS.2025.3565892
발행일
2025
유형
Article
저널명
IEEE Access
13
페이지
83219 ~ 83228