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- W2036331371 abstract "Waveguide-resonator systems are particularly useful for the development of several integrated photonic devices, such astunable filters, optical switches, channel drop filters, reflectors, and impedance matching elements. In this paper, weintroduce nanoscale devices based on plasmonic coaxial waveguide resonators. In particular, we investigate threedimensionalnanostructures consisting of plasmonic coaxial stub resonators side-coupled to a plasmonic coaxialwaveguide. We use coaxial waveguides with square cross sections, which can be fabricated using lithography-basedtechniques. The waveguides are placed on top of a silicon substrate, and the space between inner and outer coaxialmetals is filled with silica. We use silver as the metal. We investigate structures consisting of a single plasmonic coaxialresonator, which is terminated either in a short or an open circuit, side-coupled to a coaxial waveguide. We show that theincident waveguide mode is almost completely reflected on resonance, while far from the resonance the waveguide modeis almost completely transmitted. We also show that the properties of the waveguide systems can be accurately describedusing a single-mode scattering matrix theory. The transmission and reflection coefficients at waveguide junctions areeither calculated using the concept of the characteristic impedance or are directly numerically extracted using full-wavethree-dimensional finite-difference frequency-domain simulations." @default.
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- W2036331371 date "2015-02-27" @default.
- W2036331371 modified "2023-09-23" @default.
- W2036331371 title "Nanoscale devices based on plasmonic coaxial waveguide resonators" @default.
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- W2036331371 doi "https://doi.org/10.1117/12.2077893" @default.
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