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Journal ArticleDOI

Plasmonic analog of electromagnetically induced transparency in multi-nanoresonator-coupled waveguide systems

Hua Lu, +2 more
- 04 May 2012 - 
- Vol. 85, Iss: 5, pp 053803
TLDR
In this paper, an analog of electromagnetically induced transparency (EIT) in plasmonic systems consisting of multiple cascaded nanodisk resonators, coupled to metal-insulator-metal bus waveguides, was theoretically and numerically investigated.
Abstract
We have theoretically and numerically investigated an analog of electromagnetically induced transparency (EIT) in plasmonic systems consisting of multiple cascaded nanodisk resonators, aperture-side-coupled to metal-insulator-metal bus waveguides. A simplified theoretical model is established to study spectral features in the plasmonic waveguide-resonator systems, and the calculated results are in good agreement with finite-difference time-domain simulations. The main dependent factors of EIT-like spectral response, namely, the resonance detuning, intrinsic Drude loss, and especially cavity-cavity separation, are discussed in detail. Similar to multiple EIT in quantum systems, multiple induced-transparency peaks are found in the areas of strong dispersion generated in our plasmonic system. The group indices and quality factors of transparency resonances with high transmission can reach levels of similar to 35 and similar to 200, respectively. These results pave a way toward dynamic control of light in the nanoscale domain, which can actualize some new devices for fundamental study and applications of plasmonic nanostructures.

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Citations
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Journal ArticleDOI

Active modulation of electromagnetically induced transparency analogue in terahertz hybrid metal-graphene metamaterials

TL;DR: In this paper, the authors integrate a monolayer graphene into metal-based terahertz (THz) metamaterials, and realize a complete modulation in the resonance strength of the EIT analogue via manipulating the Fermi level of graphene.
Journal ArticleDOI

Plasmonic sensors based on Metal-insulator-metal waveguides for refractive index sensing applications: A brief review

TL;DR: In this paper, the spectral performance of plasmonic waveguides is discussed, and various types of waveguide structures, geometries, materials, fabrication processes, and losses related to waveguide losses are explained to provide a better understanding of this topic.
Journal ArticleDOI

Dispersionless slow light in MIM waveguide based on a plasmonic analogue of electromagnetically induced transparency.

TL;DR: The proposed compact configuration of a metal-insulator-metal (MIM) waveguide system can avoid the distortion of signal pulse, and thus may find potential applications in plasmonic slow-light systems, especially optical buffers.
Journal ArticleDOI

Dynamic Control of Double Plasmon-Induced Transparencies in Aperture-Coupled Waveguide-Cavity System

TL;DR: In this paper, a theoretical model for dynamic control of double plasmon-induced transparencies in aperture-coupled metal-dielectric-metal (MDM) waveguide-cavity system is proposed.
Journal ArticleDOI

Absorption and slow-light analysis based on tunable plasmon-induced transparency in patterned graphene metamaterial.

TL;DR: It is found that the absorption efficiency of the designed structure can reach up to 50%, meaning the structure is competent to prominent terahertz absorber, and the slow-light performance of this structure is discussed via analyzing the group refractive index and phase shift.
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