All-dielectric nanophotonics: Magnetic response, Fano resonances, functional metasurfaces, and nonlinear effects
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Staude, Isabelle
Kivshar, Yuri
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Optical Society of American (OSA)
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Rapid progress in the fields of plasmonics and metamaterials is driven by their ability to enhance near-field effects with subwavelength localization of light, and a majority of such effects is usually associated with metallic structures. Recently, we observe the emergence of a new branch of nanophotonics aiming at the manipulation of strong optically-induced electric and magnetic Mie-type resonances in dielectric and semiconductor nanostructures with high refractive index. Unique advantages of dielectric resonant nanostructures over their metallic counterparts are low dissipative losses and the enhancement of both electric and magnetic fields that provide competitive alternatives for metal-based plasmonic structures including nanoantennas, nanoparticle sensors, and metasurfaces. In this talk, we review the new emerging field of nanophotonics and metamaterials and demonstrate that the co-existence of strong electric and magnetic resonances and resonant enhancement of magnetic field in dielectric nanoparticles bring new physics and entirely novel functionalities to simple geometries not much explored in plasmonic structures especially in the nonlinear regime.
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Proceedings 2015 European Conference on Lasers and Electro-Optics - European Quantum Electronics Conference