Slow light based on plasmon-induced transparency in dual-ring resonator-coupled MDM waveguide system

We report a theoretical and numerical investigation of the plasmon-induced transparency (PIT) effect in a dual-ring resonator-coupled metal-dielectric-metal waveguide system. A transfer matrix method (TMM) is introduced to analyse the transmission and dispersion properties in the transparency window...

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Veröffentlicht in:Journal of physics. D, Applied physics Applied physics, 2014-05, Vol.47 (20), p.1-6
Hauptverfasser: Zhan, Shiping, Li, Hongjian, Cao, Guangtao, He, Zhihui, Li, Boxun, Yang, Hui
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Sprache:eng
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Zusammenfassung:We report a theoretical and numerical investigation of the plasmon-induced transparency (PIT) effect in a dual-ring resonator-coupled metal-dielectric-metal waveguide system. A transfer matrix method (TMM) is introduced to analyse the transmission and dispersion properties in the transparency window. A tunable PIT is realized in a constant separation design. The phase dispersion and slow-light effect are discussed in both the resonance and non-resonance conditions. Finally, a propagation constant based on the TMM is derived for the periodic system. It is found that the group index in the transparency window of the proposed structure can be easily tuned by the period p, which provides a new understanding, and a group index ∼51 is achieved. The quality factor of resonators can also be effective in adjusting the dispersion relation. These observations could be helpful to fundamental research and applications for integrated plasmonic devices.
ISSN:0022-3727
1361-6463
DOI:10.1088/0022-3727/47/20/205101