logo
ResearchBunny Logo
Arbitrary aperture synthesis with nonlocal leaky-wave metasurface antennas

Engineering and Technology

Arbitrary aperture synthesis with nonlocal leaky-wave metasurface antennas

G. Xu, A. Overvig, et al.

This groundbreaking research by Gengyu Xu, Adam Overvig, Yoshiaki Kasahara, Enrica Martini, Stefano Maci, and Andrea Alù presents innovative leaky-wave metasurface antennas designed with quasi-bound states in the continuum, offering unprecedented control over wireless communication through advanced amplitude, phase, and polarization capabilities.... show more
Abstract
The emergence of new technological needs in 5G/6G networking and broadband satellite internet access amplifies the demand for innovative wireless communication hardware, including high-performance low-profile transceivers. In this context, antennas based on metasurfaces – artificial surfaces engineered to manipulate electromagnetic waves at will – represent highly promising solutions. In this article, we introduce leaky-wave metasurface antennas operating at micro/millimeter-wave frequencies that are designed using the principles of quasi-bound states in the continuum, exploiting judiciously tailored spatial symmetries that enable fully customized radiation. Specifically, we unveil additional degrees of control over leaky-wave radiation by demonstrating pointwise control of the amplitude, phase and polarization state of the metasurface aperture fields by carefully breaking relevant symmetries with tailored perturbations. We design and experimentally demonstrate metasurface antenna prototypes showcasing a variety of functionalities advancing capabilities in wireless communications, including single-input multi-output and multi-input multi-output near-field focusing, as well as far-field beam shaping.
Publisher
Nature Communications
Published On
Jul 20, 2023
Authors
Gengyu Xu, Adam Overvig, Yoshiaki Kasahara, Enrica Martini, Stefano Maci, Andrea Alù
Tags
leaky-wave antennas
metasurfaces
micro/millimeter-wave frequencies
wireless communication
phased arrays
beam shaping
near-field focusing
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny