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Design of a broadband electromagnetic wave absorber using a metamaterial technology

Author

Listed:
  • Wensong Wang
  • Yinchao Chen
  • Shuhui Yang
  • Xin Zheng
  • Qunsheng Cao

Abstract

A novel design of electromagnetic wave absorber is presented with the characteristics of broad bandwidth, low profile, and polarization independence to a normal incident electromagnetic wave. The absorber is composed of a single-layer, highly resistive frequency selective surface layer printed on a 1-mm-thickness foam substrate. It is observed that the absorptance of 90% or greater in the frequency range of 20–31 GHz has been achieved. It is also found that good electromagnetic wave absorption is achieved for a wide incident wave angle spanning up to 40°. An equivalent circuit modal for the proposed absorber has been developed using an ADS schematic circuit, which shows a fairly good consistency with that derived from high frequency structure system field solver in the frequency range of interest.

Suggested Citation

  • Wensong Wang & Yinchao Chen & Shuhui Yang & Xin Zheng & Qunsheng Cao, 2015. "Design of a broadband electromagnetic wave absorber using a metamaterial technology," Journal of Electromagnetic Waves and Applications, Taylor & Francis Journals, vol. 29(15), pages 2080-2091, October.
  • Handle: RePEc:taf:tewaxx:v:29:y:2015:i:15:p:2080-2091
    DOI: 10.1080/09205071.2015.1006733
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