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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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Published in:Microwave and optical technology letters 2017-12, Vol.59 (12), p.3036-3041
Main Authors: Othman, Mohamadariff, Ali, Wan Fahmin Faiz Wan, Ahmad Zubir, Ihsan, Ain, Mohd Fadzil, Ahmad, Zainal Arifin
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cited_by cdi_FETCH-LOGICAL-c2978-606e31e0ed1c865f32239e5423c28d19e65e07f314b9824b649e9990cd02dd703
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container_title Microwave and optical technology letters
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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.
doi_str_mv 10.1002/mop.30878
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subjects Antenna
Broadband
dielectric resonator
dielectric resonator antenna
Resonators
wideband
YIG
Yttrium
title A novel homogeneous stacked yttrium ion garnet resonator antenna for wideband application
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