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Highly Integrated Full-Space Coding Metasurface for LP and CP Waves Manipulation Spanning Millimeter-Wave and Sub-THz Bands

Authors :
Tan, Xiaohui
Yang, Rongcao
Chen, Shu-Lin
Chan, Ka Fai
Chen, Bao Jie
Cui, Zhao-Qi
Qin, Pei-Yuan
Guo, Y. Jay
Chan, Chi Hou
Source :
Journal of Lightwave Technology; January 2025, Vol. 43 Issue: 1 p288-298, 11p
Publication Year :
2025

Abstract

Coding metasurfaces (MSs) provide an effective strategy for designing highly integrated devices due to their powerful ability to flexibly manipulate the wavefront of electromagnetic (EM) waves. To date, it remains a great challenge to theoretically construct and experimentally verify highly integrated MSs for manipulating both linear polarization (LP) and circular polarization (CP) waves in full-space at millimeter-wave (mmWave) and sub-terahertz (sub-THz) bands. In this work, a highly-integrated, low-crosstalk, six-channel coding meta-atom is developed using hybrid phase manipulations, which can achieve independent full-space phase controls for three LP channels and three CP channels across three mmWave and sub-THz bands. To validate the concept, we designed and fabricated a compact coding MS, including refracted four-beam splitting for LP wave at 65 GHz; radar cross section (RCS) reduction, anomalous reflection and dual-vortex beam generation for LP and CP waves at 0.12 THz; two-beam splitting for two decoupled CP waves at 0.154 THz. All the theoretical, simulated, and experimental results agree well with each other. The developed highly integrated MS with multiple independent channels presents a promising candidate for future advanced 5G and 6G systems.

Details

Language :
English
ISSN :
07338724 and 15582213
Volume :
43
Issue :
1
Database :
Supplemental Index
Journal :
Journal of Lightwave Technology
Publication Type :
Periodical
Accession number :
ejs68413795
Full Text :
https://doi.org/10.1109/JLT.2024.3450581