A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application

The intent of this study is to realize efficient wideband DRA using unbiased low permittivity yttrium ion garnet (YIG) with excess Fe2O3. The fabricated YIG resonators with the same dimension but different ɛr are used together to produce wideband stacked YIG resonator antenna (YRA). Three stacked YI...

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Main Authors: Othman, M., Wan Ramli, W. F. F., Ahmad Zubir, I., Ain, M. F., Ahmad, Z. A.
Format: Article
Published: John Wiley and Sons Inc. 2017
Subjects:
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author Othman, M.
Wan Ramli, W. F. F.
Ahmad Zubir, I.
Ain, M. F.
Ahmad, Z. A.
author_facet Othman, M.
Wan Ramli, W. F. F.
Ahmad Zubir, I.
Ain, M. F.
Ahmad, Z. A.
author_sort Othman, M.
collection ePrints
description The intent of this study is to realize efficient wideband DRA using unbiased low permittivity yttrium ion garnet (YIG) with excess Fe2O3. The fabricated YIG resonators with the same dimension but different ɛr are used together to produce wideband stacked YIG resonator antenna (YRA). Three stacked YIG resonators with excess Fe2O3 of 8% (YR8), 14% (YR14), and 17% (YR17) present the best YIG resonator combinations with bandwidth of 24.22%. Findings also indicate broadband radiation pattern throughout the design frequency range. The simulated and measured results are all in agreement. In conclusion, this work offers an improved and efficient YRA using YIG resonator with excess Fe2O3.
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institution Universiti Teknologi Malaysia - ePrints
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publisher John Wiley and Sons Inc.
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spelling utm.eprints-810782019-07-24T03:09:21Z http://eprints.utm.my/81078/ A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application Othman, M. Wan Ramli, W. F. F. Ahmad Zubir, I. Ain, M. F. Ahmad, Z. A. TJ Mechanical engineering and machinery The intent of this study is to realize efficient wideband DRA using unbiased low permittivity yttrium ion garnet (YIG) with excess Fe2O3. The fabricated YIG resonators with the same dimension but different ɛr are used together to produce wideband stacked YIG resonator antenna (YRA). Three stacked YIG resonators with excess Fe2O3 of 8% (YR8), 14% (YR14), and 17% (YR17) present the best YIG resonator combinations with bandwidth of 24.22%. Findings also indicate broadband radiation pattern throughout the design frequency range. The simulated and measured results are all in agreement. In conclusion, this work offers an improved and efficient YRA using YIG resonator with excess Fe2O3. John Wiley and Sons Inc. 2017 Article PeerReviewed Othman, M. and Wan Ramli, W. F. F. and Ahmad Zubir, I. and Ain, M. F. and Ahmad, Z. A. (2017) A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application. Microwave and Optical Technology Letters, 59 (12). pp. 3036-3041. ISSN 0895-2477 http://dx.doi.org/10.1002/mop.30878 DOI:10.1002/mop.30878
spellingShingle TJ Mechanical engineering and machinery
Othman, M.
Wan Ramli, W. F. F.
Ahmad Zubir, I.
Ain, M. F.
Ahmad, Z. A.
A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application
title A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application
title_full A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application
title_fullStr A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application
title_full_unstemmed A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application
title_short A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application
title_sort novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application
topic TJ Mechanical engineering and machinery
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