4.8 Article

Gyromagnetically Induced Transparency of Metasurfaces

Journal

PHYSICAL REVIEW LETTERS
Volume 112, Issue 11, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.112.117402

Keywords

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Funding

  1. AFOSR Lab Task [13RY02COR]
  2. Air Force Research Laboratory (AFRL/RY), through the Advanced Materials, Manufacturing and Testing Information Analysis Center (AMMTIAC) contract with Alion Science and Technology [FA4600-06-D003]

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We demonstrate that the presence of a (gyro) magnetic substrate can produce an analog of electromagnetically induced transparency in Fano-resonant metamolecules. The simplest implementation of such gyromagnetically induced transparency (GIT) in a metasurface, comprised of an array of resonant antenna pairs placed on a gyromagnetic substrate and illuminated by a normally incident electromagnetic wave, is analyzed. Time reversal and spatial inversion symmetry breaking introduced by the dc magnetization makes metamolecules bianisotropic. This causes Fano interference between the otherwise uncoupled symmetric and antisymmetric resonances of the metamolecules giving rise to a sharp transmission peak through the otherwise reflective metasurface. We show that, for an oblique wave incidence, one-way GIT can be achieved by the combination of spatial dispersion and gyromagnetic effect. These theoretically predicted phenomena pave the way to nonreciprocal switches and isolators that can be dynamically controlled by electric currents.

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