AIP Advances · 2014 · 29 citations · 52 references
PhotonicsPlasmonicsPlasmon HybridizationEngineeringDouble Fano ResonancesPhysicsOptical PropertiesCavity QedApplied PhysicsDouble ResonanceDark ModeDark ModesFano EffectCavity Dimers
Dark mode which is subradiant plays a key role in the generation of Fano effect. This study proposes that plasmon interaction between dark modes is a favorable method to generate multiple Fano resonances, where plasmon hybridization leads to the formation of a subradiant bonding and a subradiant antibonding combination. It demonstrates that a concentric ring/ring cavity dimer introduces interactions that render bonding quadrupolar ring mode dipole active, resulting in a pronounced Fano resonance. The corresponding antibonding quadrupolar ring mode is excited in a symmetry breaking nonconcentric cavity dimer, and double Fano resonances appear in the spectra.
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Optical Constants of the Noble Metals
P. B. Johnson, R. W. Christy · Physical review. B, Solid state · 1972 · 19.5K citations
A Hybridization Model for the Plasmon Response of Complex Nanostructures
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