Paper
8 December 2022 X-band multi-layer phase gradient metasurface for high efficiency far field subwavelength imaging
Jinyu Wang, Yaoliang Song, Jinfeng Mao, Rui Chen
Author Affiliations +
Proceedings Volume 12474, Second International Symposium on Computer Technology and Information Science (ISCTIS 2022); 124742D (2022) https://doi.org/10.1117/12.2653455
Event: Second International Symposium on Computer Technology and Information Science (ISCTIS 2022), 2022, Guilin, China
Abstract
The evanescent wave that can only exist on the surface of the objects is the main reason for diffraction limit, which limits the subwavelength details of the objects to the near field. This paper designs a multi-layer phase gradient metasurface with 10°/mm increment and 69% transmission efficiency in X-band. Evanescent wave can be converted into propagation wave and transmitted to the far field with the help of this metasurface. Through Fourier transform and spectrum analysis, two targets with 10mm subwavelength distance are successfully resolved and imaged around 10GHz.
© (2022) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Jinyu Wang, Yaoliang Song, Jinfeng Mao, and Rui Chen "X-band multi-layer phase gradient metasurface for high efficiency far field subwavelength imaging", Proc. SPIE 12474, Second International Symposium on Computer Technology and Information Science (ISCTIS 2022), 124742D (8 December 2022); https://doi.org/10.1117/12.2653455
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KEYWORDS
Radio propagation

Wave propagation

Near field

Electromagnetic radiation

Fourier transforms

Metals

Metamaterials

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