Anisotropic Metamaterial Optical Fibers
Abstract
Internal physical structure can drastically modify the properties of waveguides: photonic crystal fibers are able to confine light inside a hollow air core by Bragg scattering from a periodic array of holes, while metamaterial loaded waveguides for microwaves can support propagation at frequencies well below cutoff. Anisotropic metamaterials assembled into cylindrically symmetric geometries constitute light-guiding structures that support new kinds of exotic modes. A microtube of anodized nanoporous alumina, with nanopores radially emanating from the inner wall to the outer surface, is a manifestation of such an anisotropic metamaterial optical fiber. The nanopores, when filled with a plasmonic metal such as silver or gold, greatly increase the electromagnetic anisotropy. The modal solutions in anisotropic circular waveguides can be uncommon Bessel functions with imaginary orders.
Keywords
Cite
@article{arxiv.1411.7779,
title = {Anisotropic Metamaterial Optical Fibers},
author = {Dheeraj Pratap and S. Anantha Ramakrishna and Justin G. Pollock and Ashwin K. Iyer},
journal= {arXiv preprint arXiv:1411.7779},
year = {2017}
}
Comments
15 pages, 5 figures; Published