Electromagnetic Waves Reflectance of Graphene -- Magnetic Semiconductor Superlattice in Magnetic Field
arXiv:1405.3585 · doi:10.1109/TMAG.2014.2323332
Abstract
Electrodynamic properties of the graphene - magnetic semiconductor - graphene superlattice placed in magnetic field have been investigated theoretically in Faraday geometry with taking into account dissipation processes. Frequency and field dependences of the reflectance, transmittance and absorbtance of electromagnetic waves by such superlattice have been calculated for different numbers of periods of the structure and different sizes of the periods with using a transfer matrix method. The possibility of efficient control of electrodynamic properties of graphene - magnetic semiconductor - graphene superlattice has been shown.
4 pages, 3 figures, in press in IEEE Transactions on Magnetics
References in corpus (5)
- Universal Dynamic Conductivity and Quantized Visible Opacity of Suspended Graphene
- The optical conductivity of graphene in the visible region of the spectrum
- A new electromagnetic mode in graphene
- Magneto-optical conductivity in Graphene
- Novel hyperbolic metamaterials based on multilayer graphene structures