학술논문

An X-Band Linear-to-Circular Polarizer With High Refractive-Index Metamaterials
Document Type
Periodical
Source
IEEE Open Journal of Antennas and Propagation IEEE Open J. Antennas Propag. Antennas and Propagation, IEEE Open Journal of. 5(1):190-200 Feb, 2024
Subject
Fields, Waves and Electromagnetics
Communication, Networking and Broadcast Technologies
Aerospace
Refractive index
Metamaterials
Strips
Insertion loss
Wideband
Substrates
Slabs
Circular polarization
polarization conversion
polarizer
metamaterial
refractive index
Language
ISSN
2637-6431
Abstract
This paper presents a novel wideband low-profile linear-to-circular polarizer based on high refractive-index metamaterials in the X band. The proposed design is a multilayer structure that is built from two kinds of metamaterial unit cells consisting of 4-H-shaped strips and 1-H-shaped strips. Combining the two unit cells realizes the flexible and independent control of the refractive index difference between two orthogonal E-field components and thus achieves a consistent 90-degree phase delay over a wide bandwidth. Moreover, the proposed unit cell shows a high refractive index, which contributes to lowering the height of the LP-CP polarizer. In order to improve the axial ratio (AR) bandwidth, two impedance-matching layers are introduced to combat the reflection loss on the metamaterial-air boundary. Nevertheless, the proposed design can provide a wide 3 dB AR bandwidth of 37.7% and a low insertion loss of 0.5 dB with a thin profile of $0.21~{\lambda }_{0}$ . The prototype was fabricated and measured, while the experimental results agree well with the simulated ones, thus validating the working mechanism and its practical feasibility.