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Plasmonic V-groove waveguides with Bragg grating filters via nanoimprint lithography
We demonstrate spectral filtering with state-of-the-art Bragg gratings in plasmonic V-groove waveguides fabricated by wafer scale processing based on nanoimprint lithography. Transmission spectra of the devices having 16 grating periods exhibit spectral rejection of the channel plasmon polaritons wi...
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Published in: | Optics express 2012-02, Vol.20 (5), p.5696-5706 |
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creator | Smith, Cameron L C Desiatov, Boris Goykmann, Ilya Fernandez-Cuesta, Irene Levy, Uriel Kristensen, Anders |
description | We demonstrate spectral filtering with state-of-the-art Bragg gratings in plasmonic V-groove waveguides fabricated by wafer scale processing based on nanoimprint lithography. Transmission spectra of the devices having 16 grating periods exhibit spectral rejection of the channel plasmon polaritons with 8.2 dB extinction ratio and -3 dB bandwidth of Δλ = 39.9 nm near telecommunications wavelengths. Near-field scanning optical microscopy measurements verify spectral reflection from the grating structures, and the oscillations of propagating modes along grating-less V-grooves correspond well with effective refractive index values calculated by finite element simulations in COMSOL. The results represent advancement towards the implementation of plasmonic V-grooves with greater functional complexity and mass-production compatibility. |
doi_str_mv | 10.1364/OE.20.005696 |
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subjects | Equipment Design Equipment Failure Analysis Molecular Imprinting - instrumentation Nanostructures - chemistry Nanostructures - ultrastructure Photography - instrumentation Refractometry - instrumentation Surface Plasmon Resonance - instrumentation |
title | Plasmonic V-groove waveguides with Bragg grating filters via nanoimprint lithography |
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