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Broadband circularly polarized periodically modulated leaky-wave antenna with open-stopband suppression and sidelobe control.

Created on 14 Aug 2026

Authors

Wenjie Zhang, Jianxing Li, Sifan Wu, Zeting Li, Juan Chen

Published in

Optics express. Volume 34. Issue 15. Pages 28816-28826. Jul 27, 2026.

Abstract

This paper presents a single-layer circularly polarized leaky-wave antenna (CPLWA) based on substrate-integrated waveguide (SIW) technology, simultaneously featuring open-stopband (OSB) suppression and sidelobe-level (SLL) control. The proposed LWA consists of 21 periodically modulated unit cells. To suppress the OSB effect, a CP unit cell with optimized impedance matching is proposed. An equivalent lumped-element circuit is then derived to theoretically investigate the underlying physical mechanisms of the unit cell. Then, to control the SLL, a Taylor-tapered aperture distribution is implemented by precisely tailoring the leakage constant of each unit cell. Numerical analysis and full-wave simulations are conducted to evaluate the performance across uniform and Taylor-tapered array configurations. Finally, a prototype is fabricated and measured. Experimental results demonstrate a 3-dB axial ratio (AR) bandwidth of 30% over 23.3-31.5 GHz, enabling a continuous beam-scanning range of 50° from -19° to 31°. A suppressed SLL of -23.9 dB is achieved at 28 GHz. Owing to its broadband CP radiation, continuous beam scanning, and low SLL, the proposed antenna could serve as a promising candidate for next-generation wireless sensing and communication applications.

PMID:
42596498
Bibliographic data and abstract were imported from PubMed on 14 Aug 2026.

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