Broadband diffuse terahertz wave scattering by flexible metasurface with randomized phase distribution

نویسندگان

  • Yin Zhang
  • Lanju Liang
  • Jing Yang
  • Yijun Feng
  • Bo Zhu
  • Junming Zhao
  • Tian Jiang
  • Biaobing Jin
  • Weiwei Liu
چکیده

Suppressing specular electromagnetic wave reflection or backward radar cross section is important and of broad interests in practical electromagnetic engineering. Here, we present a scheme to achieve broadband backward scattering reduction through diffuse terahertz wave reflection by a flexible metasurface. The diffuse scattering of terahertz wave is caused by the randomized reflection phase distribution on the metasurface, which consists of meta-particles of differently sized metallic patches arranged on top of a grounded polyimide substrate simply through a certain computer generated pseudorandom sequence. Both numerical simulations and experimental results demonstrate the ultralow specular reflection over a broad frequency band and wide angle of incidence due to the re-distribution of the incident energy into various directions. The diffuse scattering property is also polarization insensitive and can be well preserved when the flexible metasurface is conformably wrapped on a curved reflective object. The proposed design opens up a new route for specular reflection suppression, and may be applicable in stealth and other technology in the terahertz spectrum.

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عنوان ژورنال:

دوره 6  شماره 

صفحات  -

تاریخ انتشار 2016