Mie-driven directional nanocoupler for Bloch surface wave photonic platform

Modern integrated photonic platforms should combine low-loss guiding, spectral flexibility, high light confinement, and close packing of optical components. One of the prominent platforms represents a one-dimensional photonic crystal combined with dielectric nanostructures that manipulate low-loss B...

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Veröffentlicht in:Nanophotonics (Berlin, Germany) Germany), 2021-09, Vol.10 (11), p.2939-2947
Hauptverfasser: Gulkin, Dmitry N., Popkova, Anna A., Afinogenov, Boris I., Shilkin, Daniil A., Kuršelis, Kęstutis, Chichkov, Boris N., Bessonov, Vladimir O., Fedyanin, Andrey A.
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Sprache:eng
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Zusammenfassung:Modern integrated photonic platforms should combine low-loss guiding, spectral flexibility, high light confinement, and close packing of optical components. One of the prominent platforms represents a one-dimensional photonic crystal combined with dielectric nanostructures that manipulate low-loss Bloch surface waves (BSWs). Proper design of nanostructures gives rise to a variety of optical resonances suitable for efficient capturing and controlling light. In this work, we achieve color-selective directional excitation of BSWs mediated by Mie resonances in a semiconductor nanoparticle. We show that a single silicon nanoparticle can be used as a subwavelength multiplexer switching the BSW excitation direction from forward to backward within the 30 nm spectral range with its central wavelength governed by the nanoparticle size. Our work opens a route for the on-demand fabrication of photonic nanocouplers with tailored optical properties and submicron footprint.
ISSN:2192-8606
2192-8614
2192-8614
DOI:10.1515/nanoph-2021-0295