Plasmonic electromagnetically-induced transparency in symmetric structures

A broken symmetry is generally believed to be a prerequisite for plasmonic electromagnetically-induced transparency (EIT), since the asymmetry allows the excitation of the otherwise forbidden dark mode. Nevertheless, according to the picture of magnetic plasmon resonance (MPR)-mediated plasmonic EIT...

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Published in:Optics express Vol. 18; no. 13; pp. 13396 - 13401
Main Authors: Jin, Xingri, Lu, Yuehui, Zheng, Haiyu, Lee, YoungPak, Rhee, Joo Yull, Jang, Won Ho
Format: Journal Article
Language:English
Published: United States 21-06-2010
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Abstract A broken symmetry is generally believed to be a prerequisite for plasmonic electromagnetically-induced transparency (EIT), since the asymmetry allows the excitation of the otherwise forbidden dark mode. Nevertheless, according to the picture of magnetic plasmon resonance (MPR)-mediated plasmonic EIT, we show that plasmonic EIT can be achieved even in symmetric structures based on the second-order MPR. This not only sharpens our understanding of the existing concept, but also provides a profound insight into the plasmonic coherent interference in the near-field zone.
AbstractList A broken symmetry is generally believed to be a prerequisite for plasmonic electromagnetically-induced transparency (EIT), since the asymmetry allows the excitation of the otherwise forbidden dark mode. Nevertheless, according to the picture of magnetic plasmon resonance (MPR)-mediated plasmonic EIT, we show that plasmonic EIT can be achieved even in symmetric structures based on the second-order MPR. This not only sharpens our understanding of the existing concept, but also provides a profound insight into the plasmonic coherent interference in the near-field zone.
Author Zheng, Haiyu
Rhee, Joo Yull
Jang, Won Ho
Lu, Yuehui
Jin, Xingri
Lee, YoungPak
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BackLink https://www.ncbi.nlm.nih.gov/pubmed/20588469$$D View this record in MEDLINE/PubMed
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Snippet A broken symmetry is generally believed to be a prerequisite for plasmonic electromagnetically-induced transparency (EIT), since the asymmetry allows the...
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StartPage 13396
SubjectTerms Electromagnetic Fields
Magnetics - methods
Optics and Photonics - methods
Quantum Theory
Surface Plasmon Resonance - methods
Title Plasmonic electromagnetically-induced transparency in symmetric structures
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