Tamm plasmon-polaritons and Fabry-Perot excitation in a magnetophotonic structure

  • Mikhailova T
  • Tomilin S
  • Lyashko S
  • et al.
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Abstract

A magnetophotonic Tamm structure with a bilayer film of Bi-substituted iron garnets (Bi:IG) with a significant magneto-optical (MO) response, placed in microcavity, and Tamm plasmon-polaritons (TPP) excited at the interface of the Au layer, were proposed. Optical and MO spectra of the hybrid state were investigated theoretically and experimentally in Faraday effect geometry at a normal incidence of the light wave. Anticrossing behavior of the TPP and Fabry-Perot resonances and dependence of spectral splitting on their hybrid state on the thickness of the Au layer was shown. By varying the thickness of the top SiO 2 layer in the structure, the modifications of spectra on the TPP spectral position were described in detail. The results can be used to design tunable MO devices and sensors.

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Mikhailova, T., Tomilin, S., Lyashko, S., Kozhaev, M., Shaposhnikov, A., Karavainikov, A., … Belotelov, V. (2022). Tamm plasmon-polaritons and Fabry-Perot excitation in a magnetophotonic structure. Optical Materials Express, 12(2), 685. https://doi.org/10.1364/ome.446811

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