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Design and Performance of a Dual-Layer ITO-Based Ultra-Wideband Metamaterial Absorber for Enhanced Polarization Insensitivity and Wide-Angle Stability

  • Nasir Ali*
  • , Ji Jinzu
  • *Corresponding author for this work
  • Beihang University

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

Abstract

A two-layer ultra-thin and ultra-wideband planar metamaterial absorber with the top layer unit cell made of a square ring and a spider-web-shaped resistance patch is presented in this study. Ohmic losses along with powerful local electromagnetic resonance, are enhancing this absorber's performance. The unit cell is small, with dimensions of 10.0 mm by 10.0 mm by 3.0 mm. According to numerical studies, the absorber attains an outstanding absorption rate of almost 99.0% at normal incidence in the frequency range of 15.8 GHz to 81 GHz with a total bandwidth of 65.2 GHz. Furthermore, the bandwidth for relative absorption reaches 134.7%. These results provide important information for creating effective wideband absorbers in metamaterial designs. Even at high incidence angles, the absorber shows efficacy for both transverse magnetic (TM) and transverse electric (TE) polarizations. This demonstrates its strong performance throughout a broad range of incidence angles and complete polarization states, further validating its adaptability in several real-world applications.

Original languageEnglish
Title of host publication2025 International Applied Computational Electromagnetics Society Symposium, ACES-China 2025 - Proceedings
PublisherInstitute of Electrical and Electronics Engineers Inc.
ISBN (Electronic)9781733467711
DOIs
StatePublished - 2025
Event2025 International Applied Computational Electromagnetics Society Symposium, ACES-China 2025 - Huangshan, China
Duration: 8 Aug 202511 Aug 2025

Publication series

Name2025 International Applied Computational Electromagnetics Society Symposium, ACES-China 2025 - Proceedings

Conference

Conference2025 International Applied Computational Electromagnetics Society Symposium, ACES-China 2025
Country/TerritoryChina
CityHuangshan
Period8/08/2511/08/25

Keywords

  • RCS reduction
  • broad bandwidth
  • metamaterial absorber
  • polarization insensitive
  • ultra-wideband

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