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RESEARCH PRODUCT
Plasmonic Stripes in Aqueous Environment Co-Integrated With Si3N4 Photonics
Dimitris TsiokosAlain DereuxGeorge DabosLaurent MarkeyDimitra KetzakiAnna Lena GieseckeA. ManolisCaroline PorschatisBartos ChmielakNikos PlerosJean-claude Weebersubject
lcsh:Applied optics. PhotonicsFabricationMaterials science02 engineering and technologyChemical vapor deposition01 natural sciencesplasmonicslaw.inventionPhotonic integrated circuits010309 opticslawplasmonic waveguide.0103 physical sciencesInsertion losslcsh:QC350-467Electrical and Electronic EngineeringPlasmonAqueous solutionbusiness.industrysurface plasmonslcsh:TA1501-1820021001 nanoscience & nanotechnologyAtomic and Molecular Physics and OpticsOptoelectronicsPhotonics0210 nano-technologybusinessWaveguideExcitationlcsh:Optics. Lightbutt-coupled interfacedescription
We demonstrate the design, fabrication, and the experimental characterization of gold-based plasmonic stripes butt-coupled with low-pressure-chemical-vapor-deposition (LPCVD)-based Si3N4 waveguides for the excitation of surface-plasmon-polariton (SPP) modes in aqueous environment. Plasmonic gold stripes, in aqueous environment, with cross-sectional dimensions of 100 nm × 7 μm were interfaced with 360 nm × 800 nm Si3N4 waveguides cladded with low-temperature-oxide, exploiting linear photonic tapers with appropriate vertical (VO) and longitudinal (LO) offsets between the plasmonic and photonic waveguide facets. An interface insertion loss of 2.3 ± 0.3 dB and a plasmonic propagation length (Lspp) of 75 μ m have been experimentally measured at 1.55 μm for a VO of 400 nm and an LO of 500 nm, with simulation results suggesting high tolerance to VO and LO misalignment errors. The proposed integration approach enables seamless co-integration of plasmonic stripes, in aqueous environment, with a low-loss and low-cost LPCVD-based Si3N4 waveguide platform, revealing its strong potential for future employment in biochemical sensing applications.
year | journal | country | edition | language |
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2018-02-01 | IEEE Photonics Journal |