Millimeter-Wave Thin Lens Using Multi-Patch Incorporated Unit Cells for Polarization-Dependent Beam Shaping

  • Yoon, Inseop
  • Oh, Jungsuek
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초록

This paper describes a millimeter-wave thin lens that exhibits different beam-shaping characteristics depending on the polarization of the incident waves. The proposed unit cell topologies, which use multiple rectangular patches and rectangular-slotted grids, enable thinner (= 0.05 lambda(0)) and smaller (= 0.168 lambda(0)) features than in previous polarization-dependent lenses. An appropriate set of the proposed unit cells is shown to cover a tunable phase range of 180 degrees with respect to one polarized wave but have an almost-zero tunable range of phase shifts with respect to another polarized wave. Thus, using this unit cell set for x-polarized incident waves, the proposed lens operates as a convex lens, whereas for y-polarized incident waves, the lens operates as a frequency selective surface. This confirms that gain variations of 13 dB or more can be differentiated according to the polarization of the incident waves on the lens, supporting polarization-dependent beam-shaping capability as a function of the polarization of incident waves.

키워드

Lensmetasurfacemillimeter-wave antennapolarizationspatial filtertransmit arrayFREQUENCY-SELECTIVE SURFACESLOW-PROFILETRANSMITARRAYS
제목
Millimeter-Wave Thin Lens Using Multi-Patch Incorporated Unit Cells for Polarization-Dependent Beam Shaping
저자
Yoon, InseopOh, Jungsuek
DOI
10.1109/ACCESS.2019.2909175
발행일
2019
유형
Article
저널명
IEEE Access
7
페이지
45504 ~ 45511