Ferrite Film Loaded Frequency Selective Metamaterials for Sub-GHz Applications

Electromagnetic metamaterials are constructed with sub-wavelength structures that exhibit particular electromagnetic properties under a certain frequency range. Because the form-factor of the substructures has to be comparable to the wavelength of the operating frequency, few papers have discussed t...

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Main Authors: Bo Gao, Matthew M. F. Yuen, Terry Ye
Format: Article
Language:English
Published: MDPI AG 2016-12-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/9/12/1009
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spelling doaj-6808360dc6704c5d9074376a60676d2c2020-11-25T00:07:55ZengMDPI AGMaterials1996-19442016-12-01912100910.3390/ma9121009ma9121009Ferrite Film Loaded Frequency Selective Metamaterials for Sub-GHz ApplicationsBo Gao0Matthew M. F. Yuen1Terry Ye2Department of Mechanical Engineering, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon 999077, Hong KongDepartment of Mechanical Engineering, Hong Kong University of Science and Technology, Clear Water Bay, Kowloon 999077, Hong KongSYSU-CMU Joint Institute of Engineering, SYSU-CMU International Joint Research Institute, Foshan 528000, ChinaElectromagnetic metamaterials are constructed with sub-wavelength structures that exhibit particular electromagnetic properties under a certain frequency range. Because the form-factor of the substructures has to be comparable to the wavelength of the operating frequency, few papers have discussed the metamaterials under GHz frequency. In this paper, we developed an innovative method to reduce the resonant frequency of metamaterals. By integrating the meta-structures with ferrite materials of higher permeability, the cell size of the meta-structure can be scaled down. This paper describes the methodology, design, and development of low-profile GHz ferrite loaded metamaterials. A ferrite film with a permeability of 20 could reduce the resonant frequency of metamaterials by up to 50%. A prototype has been fabricated and the measurement data align well with the simulation results. Because of the lowered operational frequency, the proposed ferrite loaded metamaterials offer more flexibility for various sub-GHz microwave applications, such as cloaks, absorbers, and frequency selective surfaces.http://www.mdpi.com/1996-1944/9/12/1009metamaterialssplit ring resonatorsferrite film
collection DOAJ
language English
format Article
sources DOAJ
author Bo Gao
Matthew M. F. Yuen
Terry Ye
spellingShingle Bo Gao
Matthew M. F. Yuen
Terry Ye
Ferrite Film Loaded Frequency Selective Metamaterials for Sub-GHz Applications
Materials
metamaterials
split ring resonators
ferrite film
author_facet Bo Gao
Matthew M. F. Yuen
Terry Ye
author_sort Bo Gao
title Ferrite Film Loaded Frequency Selective Metamaterials for Sub-GHz Applications
title_short Ferrite Film Loaded Frequency Selective Metamaterials for Sub-GHz Applications
title_full Ferrite Film Loaded Frequency Selective Metamaterials for Sub-GHz Applications
title_fullStr Ferrite Film Loaded Frequency Selective Metamaterials for Sub-GHz Applications
title_full_unstemmed Ferrite Film Loaded Frequency Selective Metamaterials for Sub-GHz Applications
title_sort ferrite film loaded frequency selective metamaterials for sub-ghz applications
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2016-12-01
description Electromagnetic metamaterials are constructed with sub-wavelength structures that exhibit particular electromagnetic properties under a certain frequency range. Because the form-factor of the substructures has to be comparable to the wavelength of the operating frequency, few papers have discussed the metamaterials under GHz frequency. In this paper, we developed an innovative method to reduce the resonant frequency of metamaterals. By integrating the meta-structures with ferrite materials of higher permeability, the cell size of the meta-structure can be scaled down. This paper describes the methodology, design, and development of low-profile GHz ferrite loaded metamaterials. A ferrite film with a permeability of 20 could reduce the resonant frequency of metamaterials by up to 50%. A prototype has been fabricated and the measurement data align well with the simulation results. Because of the lowered operational frequency, the proposed ferrite loaded metamaterials offer more flexibility for various sub-GHz microwave applications, such as cloaks, absorbers, and frequency selective surfaces.
topic metamaterials
split ring resonators
ferrite film
url http://www.mdpi.com/1996-1944/9/12/1009
work_keys_str_mv AT bogao ferritefilmloadedfrequencyselectivemetamaterialsforsubghzapplications
AT matthewmfyuen ferritefilmloadedfrequencyselectivemetamaterialsforsubghzapplications
AT terryye ferritefilmloadedfrequencyselectivemetamaterialsforsubghzapplications
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