Radiation Pattern Synthesis with Uniform Nonlocal Metasurfaces

Fuente: arXiv
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Main Authors: Zhuravlev, Alexander, Kurenkov, Yury, Wang, Xuchen, Dushko, Fedor, Zalipaev, Viktor, Glybovski, Stanislav
Format: Preprint
Published: 2024
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_version_ 1866910713147031552
author Zhuravlev, Alexander
Kurenkov, Yury
Wang, Xuchen
Dushko, Fedor
Zalipaev, Viktor
Glybovski, Stanislav
author_facet Zhuravlev, Alexander
Kurenkov, Yury
Wang, Xuchen
Dushko, Fedor
Zalipaev, Viktor
Glybovski, Stanislav
contents One of the main applications of electromagnetic metasurfaces (MSs) is to tailor spatial field distributions. The radiation pattern of a given source can be desirably modified upon reflection on an MS having proper spatial modulation of its local macroscopic parameters. At the microscopic level, spatial modulation requires individually engineered meta-atoms at different points. In contrast, the present research demonstrates the opportunity for radiation pattern engineering in the reflection regime without using any spatial modulation. The principle consists in the deliberate tailoring of the surface impedance of an unmodulated but spatially dispersive (nonlocal) MS. A 2D synthesis problem with a magnetic line current source is solved analytically by finding a required form of the surface impedance as a function of the tangential wave vector in both visible and evanescent parts of the spatial spectrum. To prove the principle, three different pattern shapes are implemented via full-wave numerical simulations by tuning the spatial dispersion in a realistic mushroom-type high-impedance electromagnetic surface with loaded vias. This work extends the synthesis methods and the application area of spatially dispersive MSs, showing the latter as a promising platform for new types of antennas.
format Preprint
id arxiv_https___arxiv_org_abs_2411_16210
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Radiation Pattern Synthesis with Uniform Nonlocal Metasurfaces
Zhuravlev, Alexander
Kurenkov, Yury
Wang, Xuchen
Dushko, Fedor
Zalipaev, Viktor
Glybovski, Stanislav
Optics
Applied Physics
One of the main applications of electromagnetic metasurfaces (MSs) is to tailor spatial field distributions. The radiation pattern of a given source can be desirably modified upon reflection on an MS having proper spatial modulation of its local macroscopic parameters. At the microscopic level, spatial modulation requires individually engineered meta-atoms at different points. In contrast, the present research demonstrates the opportunity for radiation pattern engineering in the reflection regime without using any spatial modulation. The principle consists in the deliberate tailoring of the surface impedance of an unmodulated but spatially dispersive (nonlocal) MS. A 2D synthesis problem with a magnetic line current source is solved analytically by finding a required form of the surface impedance as a function of the tangential wave vector in both visible and evanescent parts of the spatial spectrum. To prove the principle, three different pattern shapes are implemented via full-wave numerical simulations by tuning the spatial dispersion in a realistic mushroom-type high-impedance electromagnetic surface with loaded vias. This work extends the synthesis methods and the application area of spatially dispersive MSs, showing the latter as a promising platform for new types of antennas.
title Radiation Pattern Synthesis with Uniform Nonlocal Metasurfaces
topic Optics
Applied Physics
url https://arxiv.org/abs/2411.16210