Results 211 to 220 of about 1,504,880 (252)
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Multiple adjustable Fano resonance based on double half ring resonator and its application
Physica Scripta, 2021In this paper, a compact nanostructure is proposed that includes a metal insulator metal (MIM) waveguide with a metal wall and a side-coupled half-ring resonator.
Q. He +7 more
semanticscholar +1 more source
2014 USNC-URSI Radio Science Meeting (Joint with AP-S Symposium), 2014
The resonances with asymmetric Fano line-shapes were originally discovered in the context of quantum mechanics (U. Fano, Phys. Rev., 124, 1866–1878, 1961). Quantum Fano resonances were generated from destructive interference of a discrete state with a continuum one.
Muhammad Amin +2 more
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The resonances with asymmetric Fano line-shapes were originally discovered in the context of quantum mechanics (U. Fano, Phys. Rev., 124, 1866–1878, 1961). Quantum Fano resonances were generated from destructive interference of a discrete state with a continuum one.
Muhammad Amin +2 more
openaire +1 more source
Fano resonances in kagome fibers
SPIE Proceedings, 2012Confinement Loss of microstructured fibers whose cladding is composed by a triangular arrangement of tubes of various shapes is theoretically and numerically investigated. Kagome Fibers belong from this family of fibers with cladding tubes with hexagonal shape.
VINCETTI, Luca +2 more
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Silicon slot waveguide Fano resonator
Optics Letters, 2018The growing interest for Fano resonators during the past decade is due to the narrow line shape observable in their optical spectra. The drastic phase shift occurring at the resonance yields a steep drop from a high to low amplitude. Fano resonances can be obtained by a combination of nanostructures.
Bera Arijit +3 more
openaire +2 more sources
, 2020
Terahertz metasurface biosensors have gained significant attention in biological field due to its label-free, real-time and in-situ detection properties.
Ruijia Cheng +5 more
semanticscholar +1 more source
Terahertz metasurface biosensors have gained significant attention in biological field due to its label-free, real-time and in-situ detection properties.
Ruijia Cheng +5 more
semanticscholar +1 more source
Terahertz tunable graphene Fano resonance
Nanotechnology, 2016By depositing graphene circular double rings (DR) on a SiO2/Si/polymer substrate, the tunable Fano resonance has been theoretically investigated in the terahertz regime, including the effects of the graphene Fermi level, structural parameters and operation frequency.
Xiaoyong, He +3 more
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Advanced Optical Materials, 2020
Seeking active and effective control over electromagnetic waves has always been an important focus in optics. Fano resonances occur in planar terahertz (THz) metamaterials by introducing a weak asymmetry in a two‐gap split ring resonator.
Jing Lou +7 more
semanticscholar +1 more source
Seeking active and effective control over electromagnetic waves has always been an important focus in optics. Fano resonances occur in planar terahertz (THz) metamaterials by introducing a weak asymmetry in a two‐gap split ring resonator.
Jing Lou +7 more
semanticscholar +1 more source
Fano Resonance in Artificial Photonic Molecules
Advanced Optical Materials, 2020The spectral signatures of chemical molecules are dependent on the hybridization of electronic states. The artificial photonic molecules formed by structured optical microcavities, exhibiting Fano features with sharp asymmetric line shape and strong ...
Guangtao Cao +9 more
semanticscholar +1 more source
Applied Optics, 2020
Fano resonance is a pervasive resonance phenomenon which can be applied to high sensitivity sensing, perfect absorption, electromagnetic-induced transparency, and slow-light photonic devices.
Xing Liu +5 more
semanticscholar +1 more source
Fano resonance is a pervasive resonance phenomenon which can be applied to high sensitivity sensing, perfect absorption, electromagnetic-induced transparency, and slow-light photonic devices.
Xing Liu +5 more
semanticscholar +1 more source
Fano resonances in bilayer phosphorene nanoring
Nanotechnology, 2018Tunable transport properties and Fano resonances are predicted in a circular bilayer phosphorene nanoring. The conductance exhibits Fano resonances with varying incident energy and applied perpendicular magnetic field. These Fano resonance peaks can be accurately fitted with the well known Fano curves.
Rui Zhang +6 more
openaire +3 more sources

