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Wide-Angle Absorption with Broadband Response by Composite Meta-Atoms

  • Beihang University

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

Abstract

Advances in antenna technology require controlled electromagnetic environments for precise radar cross-section (RCS) measurements and reduced parasitic scattering, highlighting the need for multifunctional absorbers. Traditional single-mechanism designs inherently compromise between bandwidth expansion, low-frequency absorption, and angular robustness. Addressing this trilemma, composite multilayer architecture is proposed through tactical fusion of resistive interfaces and reconfigurable metasurfaces. The proposed resistive surface absorber achieves high-efficiency absorption (>90%) across a broad angular range (0°-60°) for both TE and TM polarizations, demonstrating robust angular stability and polarization insensitivity. Numerical results demonstrate over 0.9 absorptivity across 2.6-20 GHz through active-passive co-design, with an active tuning range of 2.2 GHz (2.59-4.8 GHz). The structure achieves a sub-wavelength thickness of 0.099λ0(11.5 mm) at the fundamental frequency. This hybrid architecture unlocks transformative potential for intelligent electromagnetic absorbers, particularly in adaptive wideband scattering suppression and contrast-enhanced RCS measurements.

Original languageEnglish
Title of host publication2025 International Conference on Microwave and Millimeter Wave Technology, ICMMT 2025 - Proceedings
PublisherInstitute of Electrical and Electronics Engineers Inc.
Edition2025
ISBN (Electronic)9798331525736
DOIs
StatePublished - 2025
Event16th International Conference on Microwave and Millimeter Wave Technology, ICMMT 2025 - Xi�an, China
Duration: 19 May 202522 May 2025

Conference

Conference16th International Conference on Microwave and Millimeter Wave Technology, ICMMT 2025
Country/TerritoryChina
CityXi�an
Period19/05/2522/05/25

Keywords

  • angular stability
  • electromagnetic wave absorber
  • low-frequency
  • multilayer architecture

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