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Analysis of the influence of dispersion of metamaterials in a cylindrical Luneberg lens with extended focus
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Cylindrical Lunebeg lenses allow azimuthal scanning in a wide sector of angles. The article discusses a cylindrical Luneberg lens with an out-of-focus parallel printed circuit boards made of thin fiberglass (FR-4) with an etched H-shaped metamaterial structure. The distribution of the electric field in the azimuthal plane is shown when a linearly polarized plane wave is incident on the lens surface parallel to the printed circuit boards. The dependence of the focal length on the frequency is shown. Conclusions are drawn about the effect of dispersion on the focal length. To clarify the value of the focal length, thedirectional characteristics of the antenna system are considered when the focal length is changed. Directional characteristics are investigated when the feed is rotated in the azimuthal plane. The results presented in the article are planned to be used to create broadband Luneberg lenses from metamaterials.
Povolzhskiy State University of Telecommunications and Informatics
Title: Analysis of the influence of dispersion of metamaterials in a cylindrical Luneberg lens with extended focus
Description:
Cylindrical Lunebeg lenses allow azimuthal scanning in a wide sector of angles.
The article discusses a cylindrical Luneberg lens with an out-of-focus parallel printed circuit boards made of thin fiberglass (FR-4) with an etched H-shaped metamaterial structure.
The distribution of the electric field in the azimuthal plane is shown when a linearly polarized plane wave is incident on the lens surface parallel to the printed circuit boards.
The dependence of the focal length on the frequency is shown.
Conclusions are drawn about the effect of dispersion on the focal length.
To clarify the value of the focal length, thedirectional characteristics of the antenna system are considered when the focal length is changed.
Directional characteristics are investigated when the feed is rotated in the azimuthal plane.
The results presented in the article are planned to be used to create broadband Luneberg lenses from metamaterials.
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