Tunable Metasurfaces: A Polarization Rotator Design

Metasurfaces have enabled unprecedented control over electromagnetic waves, providing new opportunities in areas such as wireless communications, energy harvesting, imaging, and cloaking. Despite significant progress in this area, most metasurface designs provide static functionalities. Here, we the...

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Bibliographic Details
Main Authors: Zhanni Wu, Younes Ra’di, Anthony Grbic
Format: Article
Language:English
Published: American Physical Society 2019-02-01
Series:Physical Review X
Online Access:http://doi.org/10.1103/PhysRevX.9.011036
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spelling doaj-ffe267cf6f94464e86e486b17f29ea502020-11-24T23:54:41ZengAmerican Physical SocietyPhysical Review X2160-33082019-02-019101103610.1103/PhysRevX.9.011036Tunable Metasurfaces: A Polarization Rotator DesignZhanni WuYounes Ra’diAnthony GrbicMetasurfaces have enabled unprecedented control over electromagnetic waves, providing new opportunities in areas such as wireless communications, energy harvesting, imaging, and cloaking. Despite significant progress in this area, most metasurface designs provide static functionalities. Here, we theoretically propose and experimentally validate a transparent metasurface with dynamically tunable properties. Notably, we present an electronically tunable metasurface that is capable of rotating the polarization of an arbitrarily polarized incident wave, without changing its axial ratio. The designed polarization rotator consists of a tunable birefringent structure sandwiched between two ±45° rotated metasurface-based quarter-wave plates. The birefringent structure is a bandpass metasurface which relies on integrated varactor diodes for tunability. Through a simple biasing mechanism, different voltages are applied to the diodes to rotate the polarization of a transmitted wave. The proposed idea may find application in various areas where dynamic polarization control is required.http://doi.org/10.1103/PhysRevX.9.011036
collection DOAJ
language English
format Article
sources DOAJ
author Zhanni Wu
Younes Ra’di
Anthony Grbic
spellingShingle Zhanni Wu
Younes Ra’di
Anthony Grbic
Tunable Metasurfaces: A Polarization Rotator Design
Physical Review X
author_facet Zhanni Wu
Younes Ra’di
Anthony Grbic
author_sort Zhanni Wu
title Tunable Metasurfaces: A Polarization Rotator Design
title_short Tunable Metasurfaces: A Polarization Rotator Design
title_full Tunable Metasurfaces: A Polarization Rotator Design
title_fullStr Tunable Metasurfaces: A Polarization Rotator Design
title_full_unstemmed Tunable Metasurfaces: A Polarization Rotator Design
title_sort tunable metasurfaces: a polarization rotator design
publisher American Physical Society
series Physical Review X
issn 2160-3308
publishDate 2019-02-01
description Metasurfaces have enabled unprecedented control over electromagnetic waves, providing new opportunities in areas such as wireless communications, energy harvesting, imaging, and cloaking. Despite significant progress in this area, most metasurface designs provide static functionalities. Here, we theoretically propose and experimentally validate a transparent metasurface with dynamically tunable properties. Notably, we present an electronically tunable metasurface that is capable of rotating the polarization of an arbitrarily polarized incident wave, without changing its axial ratio. The designed polarization rotator consists of a tunable birefringent structure sandwiched between two ±45° rotated metasurface-based quarter-wave plates. The birefringent structure is a bandpass metasurface which relies on integrated varactor diodes for tunability. Through a simple biasing mechanism, different voltages are applied to the diodes to rotate the polarization of a transmitted wave. The proposed idea may find application in various areas where dynamic polarization control is required.
url http://doi.org/10.1103/PhysRevX.9.011036
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AT anthonygrbic tunablemetasurfacesapolarizationrotatordesign
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