Flexible and conformable broadband metamaterial absorber with wide-angle and polarization stability for radar application

Huijie Chen, Xiaoqing Yang, Shiyue Wu, Di Zhang, Hui Xiao, Kama Huang, Zhanxia Zhu, Jianping Yuan

Research output: Contribution to journalArticlepeer-review

50 Scopus citations

Abstract

In this work, a type of flexible, broadband electromagnetic microwave absorber is designed, fabricated and experimentally characterized. The absorber is composed of lumped resistors loaded frequency selective surface which is mounted on flexible substrate using silicone rubber and in turn backed by copper film. The simulated results show that an effective absorption (over 90%) bandwidth spans from 7.6 to 18.3 GHz, which covers both X (8-12 GHz) and Ku (12-18 GHz) bands, namely a 82.6% fraction bandwidth. And the bandwidth performs a good absorption response by varying the incident angle up to 60° for both TE and TM polarization. Moreover, the flexibility of the substrate enables the absorber conformably to bend and attach to cylinders of various radius without breakdown of the absorber. The designed structure has been fabricated and measured for both planar and conformable cases, and absorption responses show a good agreement of the broadband absorption feature with the simulated ones. This work has demonstrated specifically that proposed structure provides polarization-insensitive, wide-angle, flexible and conformable wideband absorption, which extends the absorber's application to practical radar cross section reductions for radars and warships.

Original languageEnglish
Article number015804
JournalMaterials Research Express
Volume5
Issue number1
DOIs
StatePublished - Jan 2018

Keywords

  • broadband
  • flexible
  • metamaterial
  • polarization-insensitive
  • wide-angle

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