Abstract

The transmission and Faraday rotation effect of a heterostructure composed of an all-dielectric magnetophotonic crystal and a magneto-optical metal are theoretically studied. When impedance and phase matching conditions are satisfied in the heterostructure, the transmission and Faraday rotation effect can simultaneously be enhanced due to the slow-wave effect of the localized electric field at the interface between the magnetophotonic crystal and the magneto-optical metal layer.

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