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Multipolar-sensitive engineering of magnetic dipole spontaneous emission with a dielectric nanoresonator antenna
Mojtaba Karimi Habil1, Carlos J Zapata-Rodríguez2, Mauro Cuevas3,4
1Faculty of Physics, University of Tabriz, 51664, Tabriz, Iran. m.karimi@tabrizu.ac.ir.
Abstract:
We propose an axisymmetric silicon nanoresonator with designed tapered angle well for the extraordinary enhancement of the decay rate of magnetic dipole (MD) emitters. Due to the resonant coupling of a MD emitter and the MD mode of the subwavelength resonator, the Purcell factor (PF) can easily reach 500, which is significantly higher than the PF when using a silicon nanosphere of the same size. The PF and the resonance frequency are conveniently tuned through the resonator diameter and the taper angle of the blind hole. When supported by a metallic substrate, further enhancement ([Formula: see text]) of the MD spontaneous emission is triggered by an image-induced quadrupolar high-Q mode of the nanoantenna. For the sake of comparison we include a critical analysis of the canonical problem that considers a Si spherical shell. Our results might facilitate a novel strategy for promising realizations of chip-scale nanophotonic applications.
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