Coupled acoustic resonance for wave control and sensing

Coupled resonance enables many intriguing physical phenomena, leading to wave control and sensing. This review discusses fundamental understanding of coupled resonance by providing detailed comparison between lumped parameter-based models including coupled mode theory (CMT) and harmonic oscillator m...

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Main Authors: Taehwa Lee, Xiaopeng Li, Ziqi Yu, Tsuyoshi Nomura, Ercan M. Dede, Hideo Iizuka
Format: Article
Language:English
Published: Frontiers Media S.A. 2022-10-01
Series:Frontiers in Physics
Subjects:
Online Access:https://www.frontiersin.org/articles/10.3389/fphy.2022.998253/full
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author Taehwa Lee
Xiaopeng Li
Ziqi Yu
Tsuyoshi Nomura
Ercan M. Dede
Hideo Iizuka
author_facet Taehwa Lee
Xiaopeng Li
Ziqi Yu
Tsuyoshi Nomura
Ercan M. Dede
Hideo Iizuka
author_sort Taehwa Lee
collection DOAJ
description Coupled resonance enables many intriguing physical phenomena, leading to wave control and sensing. This review discusses fundamental understanding of coupled resonance by providing detailed comparison between lumped parameter-based models including coupled mode theory (CMT) and harmonic oscillator model (HOM). While reviewing recent progress in research concerning coupled resonance, emerging research areas related to coupled resonance are discussed.
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spelling doaj.art-41510629bda94974a3eb5fb7e6187a1a2022-12-22T02:23:29ZengFrontiers Media S.A.Frontiers in Physics2296-424X2022-10-011010.3389/fphy.2022.998253998253Coupled acoustic resonance for wave control and sensingTaehwa LeeXiaopeng LiZiqi YuTsuyoshi NomuraErcan M. DedeHideo IizukaCoupled resonance enables many intriguing physical phenomena, leading to wave control and sensing. This review discusses fundamental understanding of coupled resonance by providing detailed comparison between lumped parameter-based models including coupled mode theory (CMT) and harmonic oscillator model (HOM). While reviewing recent progress in research concerning coupled resonance, emerging research areas related to coupled resonance are discussed.https://www.frontiersin.org/articles/10.3389/fphy.2022.998253/fullcoupled resonanceexceptional pointscritical couplingPT symmetryFano resonance
spellingShingle Taehwa Lee
Xiaopeng Li
Ziqi Yu
Tsuyoshi Nomura
Ercan M. Dede
Hideo Iizuka
Coupled acoustic resonance for wave control and sensing
Frontiers in Physics
coupled resonance
exceptional points
critical coupling
PT symmetry
Fano resonance
title Coupled acoustic resonance for wave control and sensing
title_full Coupled acoustic resonance for wave control and sensing
title_fullStr Coupled acoustic resonance for wave control and sensing
title_full_unstemmed Coupled acoustic resonance for wave control and sensing
title_short Coupled acoustic resonance for wave control and sensing
title_sort coupled acoustic resonance for wave control and sensing
topic coupled resonance
exceptional points
critical coupling
PT symmetry
Fano resonance
url https://www.frontiersin.org/articles/10.3389/fphy.2022.998253/full
work_keys_str_mv AT taehwalee coupledacousticresonanceforwavecontrolandsensing
AT xiaopengli coupledacousticresonanceforwavecontrolandsensing
AT ziqiyu coupledacousticresonanceforwavecontrolandsensing
AT tsuyoshinomura coupledacousticresonanceforwavecontrolandsensing
AT ercanmdede coupledacousticresonanceforwavecontrolandsensing
AT hideoiizuka coupledacousticresonanceforwavecontrolandsensing