English

Planewave Response of a Simple Lorentz-Nonreciprocal Medium with Magnetoelectric Gyrotropy

Optics 2019-01-29 v1

Abstract

The simple Lorentz-nonreciprocal medium described by the constitutive relations {\bf D}=\epsilon_o\epsilon_r{\bf E]-{\bf\Gamma}\times{\bf H} and {\bf B}=\mu_o\mu_r{\bf H]-{\bf\Gamma}\times{\bf E} is inspired by a specific spacetime metric, Γ\bf\Gamma being the magnetoelectric-gyrotopy vector. Field representations in this medium can be obtained from those for the isotropic dielectric-magnetic medium. When a plane wave is incident on a half space occupied by the Lorentz-nonreciprocal medium with magnetoelectric gyrotopy, theory shows that the transverse component of the magnetoelectric-gyrotopy vector is responsible for a rotation about the normal axis; furthermore, left/right reflection asymmetry is exhibited. Additionally, left/right transmission asymmetry is exhibited by a planar slab composed of the Lorentz-nonreciprocal medium with magnetoelectric gyrotopy. The left/right asymmetries are of interest for one-way devices.

Keywords

Cite

@article{arxiv.1811.05034,
  title  = {Planewave Response of a Simple Lorentz-Nonreciprocal Medium with Magnetoelectric Gyrotropy},
  author = {Akhlesh Lakhtakia},
  journal= {arXiv preprint arXiv:1811.05034},
  year   = {2019}
}