Published January 1, 2020 | Version v1
Journal article Open

Broadband Enhancement of Faraday Effect Using Magnetoplasmonic Metasurfaces

  • 1. Koc Univ, Dept Mat Sci & Engn, Istanbul, Turkey
  • 2. Koc Univ, Dept Elect & Elect Engn, Istanbul, Turkey

Description

Magnetooptical Faraday effect enables ultrafast photonic devices based on nonreciprocal polarization rotation; however, the intrinsic weakness of Faraday effect prevents miniaturization and practical applications of nonreciprocal photonic devices. Magnetoplasmonics offers new mechanisms for enhancing magnetooptical effects using surface plasmon resonances, which generally have narrow bandwidths. Using finite-difference time-domain modeling, we demonstrate a magnetoplasmonic metasurface, which remarkably enhances the Faraday effect in a wide spectral range. While Faraday rotation in a bare bismuth-substituted yttrium iron garnet film is below 0.02 degrees in the studied range of 600-1600 nm, the proposed metasurface yields few degrees of rotation in a broad band with a maximum exceeding 6.5 degrees, which indicates about three orders of magnitude enhancement. We also show that by optimizing the configuration of the system including the geometry and excitation parameters, the metasurface response and operation band can be tuned further, and rotation values higher than 20 degrees can be achieved. Finally, we present guidelines for designing magnetoplasmonic metasurfaces.

Files

bib-3582642e-edc2-4ff7-8242-a2e11b4b291f.txt

Files (135 Bytes)

Name Size Download all
md5:a06d0d91ab4d874a6d7bde6e8193b2dd
135 Bytes Preview Download