Optics Express · 2019 · 17 citations · 48 references
Energy Band GapPhotonicsPlasmonicsEngineeringMagnetoplasmonicsPhysicsNear Infrared RegimeOptical PropertiesThin MicrostructurePhotonic MaterialsApplied PhysicsNatural SciencesDynamic MetamaterialsElectromagnetic MetamaterialsNanophotonicsPlasmonic Material
We propose a novel compound grating structure that exhibits a tunable ultra-narrowband transmission in the near infrared regime. The thin microstructure can realize a steep wave form through a Fano-like resonance by coupling different propagation-type SPP modes and with a narrow line width formed by the energy band gap. Additionally, the out-of-band suppression is remarkably enhanced. It effectively solves the constraint relationship between high transmittance, narrow line width, and weak side peak of the plasmonic filter, and the structure is suitable for integration with detectors in the near infrared regime.
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Surface plasmon subwavelength optics
William L. Barnes, Alain Dereux, Thomas W. Ebbesen · Nature · 2003 · 11.4K citations
The Fano resonance in plasmonic nanostructures and metamaterials
Boris Luk’yanchuk, Nikolay I. Zheludev, Stefan A. Maier et al. · Nature Materials · 2010 · 3.8K citations
Plasmonics, Engineering, Physics +7
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Dmitri K. Gramotnev, Sergey I. Bozhevolnyi · Nature Photonics · 2010 · 3.8K citations