General Relativistic Contributions in Transformation Optics
Abstract
One potentially realistic specification for devices designed with transformation optics is that they operate with high precision in curved space-time, such as Earth orbit. This raises the question of what, if any, role does space-time curvature play in determining transformation media? Transformation optics has been based on a three-vector representation of Maxwell's equations in flat Minkowski space-time. I discuss a completely covariant, manifestly four-dimensional approach that enables transformations in arbitrary space-times, and demonstrate this approach for stable circular orbits in the spherically symmetric Schwarzschild geometry. Finally, I estimate the magnitude of curvature induced contributions to satellite-borne transformation media in Earth orbit and comment on the level of precision required for metamaterial fabrication before such contributions become important.
Cite
@article{arxiv.1102.1512,
title = {General Relativistic Contributions in Transformation Optics},
author = {Robert T. Thompson},
journal= {arXiv preprint arXiv:1102.1512},
year = {2012}
}
Comments
14 pages, 3 figures. Latest version has expanded analysis, corresponds to published version