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Excitation of dark plasmonic modes in symmetry broken terahertz metamaterials
Author(s) -
Dibakar Roy Chowdhury,
Xiaofang Su,
Yong Zeng,
Xiaohong Chen,
Antoinette J. Taylor,
Abul K. Azad
Publication year - 2014
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.22.019401
Subject(s) - metamaterial , physics , terahertz radiation , split ring resonator , plasmon , resonator , q factor , optics , excitation , dipole , negative refraction , quantum mechanics
Plasmonic structures with high symmetry, such as double-identical gap split ring resonators, possess dark eigenmodes. These dark eigenmodes are dominated by magnetic dipole and/or higher-order multi-poles such as electric quadrapoles. Consequently these dark modes interact very weakly with the surrounding environment, and can have very high quality factors (Q). In this work, we have studied, experimentally as well as theoretically, these dark eigenmodes in terahertz metamaterials. Theoretical investigations with the help of classical perturbation theory clearly indicate the existence of these dark modes in symmetric plasmonic metamaterials. However, these dark modes can be excited experimentally by breaking the symmetry within the constituting metamaterial resonators cell, resulting in high quality factor resonance mode. The symmetry broken metamaterials with such high quality factor can pave the way in realizing high sensitivity sensors, in addition to other applications.

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