Graphene‐Based Microwave Metasurfaces and Radio‐Frequency Devices

Graphene, as a 2D material, has attracted significant attention due to its particular electronic band structure and unique physical properties. Metasurfaces integrated with graphene hold great promise for dynamic manipulation of the electromagnetic waves, where metasurfaces with strong resonances en...

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Autores principales: Jin Zhang, Weiren Zhu
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Lenguaje:EN
Publicado: Wiley-VCH 2021
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Acceso en línea:https://doaj.org/article/6f7417252f9f42d79f3c6521cff2909f
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spelling oai:doaj.org-article:6f7417252f9f42d79f3c6521cff2909f2021-11-04T09:00:27ZGraphene‐Based Microwave Metasurfaces and Radio‐Frequency Devices2699-929310.1002/adpr.202100142https://doaj.org/article/6f7417252f9f42d79f3c6521cff2909f2021-11-01T00:00:00Zhttps://doi.org/10.1002/adpr.202100142https://doaj.org/toc/2699-9293Graphene, as a 2D material, has attracted significant attention due to its particular electronic band structure and unique physical properties. Metasurfaces integrated with graphene hold great promise for dynamic manipulation of the electromagnetic waves, where metasurfaces with strong resonances enhance the interaction with incident waves and in turn facilitate a deep modulation through electrical doping of graphene. However, the tunable surface conductivity of graphene is very frequency dependent that makes graphene behave significantly different in THz and microwave band. Due to the novel tuning method of graphene–electrolyte‐based sandwich structures, experimental studies of tunable microwave metadevices have aroused wide interests in the past few years. Herein, the recent progress of graphene‐based microwave metasurfaces and related devices, involved but not limited to tunable absorbers, dynamic beam steering, reconfigurable antennas, and attenuators, are reviewed, enriching the experimental developments of graphene in the microwave region.Jin ZhangWeiren ZhuWiley-VCHarticlegraphenemetasurfacesmicrowave devicesApplied optics. PhotonicsTA1501-1820Optics. LightQC350-467ENAdvanced Photonics Research, Vol 2, Iss 11, Pp n/a-n/a (2021)
institution DOAJ
collection DOAJ
language EN
topic graphene
metasurfaces
microwave devices
Applied optics. Photonics
TA1501-1820
Optics. Light
QC350-467
spellingShingle graphene
metasurfaces
microwave devices
Applied optics. Photonics
TA1501-1820
Optics. Light
QC350-467
Jin Zhang
Weiren Zhu
Graphene‐Based Microwave Metasurfaces and Radio‐Frequency Devices
description Graphene, as a 2D material, has attracted significant attention due to its particular electronic band structure and unique physical properties. Metasurfaces integrated with graphene hold great promise for dynamic manipulation of the electromagnetic waves, where metasurfaces with strong resonances enhance the interaction with incident waves and in turn facilitate a deep modulation through electrical doping of graphene. However, the tunable surface conductivity of graphene is very frequency dependent that makes graphene behave significantly different in THz and microwave band. Due to the novel tuning method of graphene–electrolyte‐based sandwich structures, experimental studies of tunable microwave metadevices have aroused wide interests in the past few years. Herein, the recent progress of graphene‐based microwave metasurfaces and related devices, involved but not limited to tunable absorbers, dynamic beam steering, reconfigurable antennas, and attenuators, are reviewed, enriching the experimental developments of graphene in the microwave region.
format article
author Jin Zhang
Weiren Zhu
author_facet Jin Zhang
Weiren Zhu
author_sort Jin Zhang
title Graphene‐Based Microwave Metasurfaces and Radio‐Frequency Devices
title_short Graphene‐Based Microwave Metasurfaces and Radio‐Frequency Devices
title_full Graphene‐Based Microwave Metasurfaces and Radio‐Frequency Devices
title_fullStr Graphene‐Based Microwave Metasurfaces and Radio‐Frequency Devices
title_full_unstemmed Graphene‐Based Microwave Metasurfaces and Radio‐Frequency Devices
title_sort graphene‐based microwave metasurfaces and radio‐frequency devices
publisher Wiley-VCH
publishDate 2021
url https://doaj.org/article/6f7417252f9f42d79f3c6521cff2909f
work_keys_str_mv AT jinzhang graphenebasedmicrowavemetasurfacesandradiofrequencydevices
AT weirenzhu graphenebasedmicrowavemetasurfacesandradiofrequencydevices
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