Wide Band Cross Polarization Converting Metasurface Based on Circular Split Rings Resonators

Babar Kamal, Jingdong Chen, Yingzing Yin, Jian Ren, Sadiq Ullah

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

12 Scopus citations

Abstract

A compact wideband cross polarization conversion metasurface is presented, whose structure consists of double slit circular split ring resonators (CSRRs) imprinted on a metal backed Rogers dielectric substrate. This presented metasurface has the potential for polarization conversion of x- or y-polarized incident waves into their orthogonal counterparts. Cross polarization conversion (CPC) is attained with a ratio of 71% within the 0.5-dB bandwidth, ranging from 8.52 to 17.93 GHz. Simulation results show that the polarization conversion efficiency is approximately equal to 100% in the three studied frequency bands of interest. Moreover, the responses of the proposed metasurface in both the x and y polarizations are the same, which is due to the symmetric structure of the CSRRs. The proposed structure is compact and it has a unit cell size of 0.32λ0 and thickness of 0.11λ0 at the center frequency of the CPC bandwidth.

Original languageEnglish
Title of host publicationProceedings of the 2020 IEEE International Conference on Computational Electromagnetics, ICCEM 2020
PublisherInstitute of Electrical and Electronics Engineers Inc.
Pages223-225
Number of pages3
ISBN (Electronic)9781728168234
DOIs
StatePublished - Aug 2020
Event6th IEEE International Conference on Computational Electromagnetics, ICCEM 2020 - Singapore, Singapore
Duration: 24 Aug 202026 Aug 2020

Publication series

NameProceedings of the 2020 IEEE International Conference on Computational Electromagnetics, ICCEM 2020

Conference

Conference6th IEEE International Conference on Computational Electromagnetics, ICCEM 2020
Country/TerritorySingapore
CitySingapore
Period24/08/2026/08/20

Keywords

  • Circular split ring resonator
  • Cross polarization con-version
  • Metasurface
  • Wideband

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