Spectral-Domain Computation of Fields Radiated by Sources in Non-Birefringent Anisotropic Media
Abstract
We derive the key expressions to robustly address the eigenfunction expansion-based analysis of electromagnetic (EM) fields produced by current sources within planar non-birefringent anisotropic medium (NBAM) layers. In NBAM, the highly symmetric permeability and permittivity tensors can induce directionally-dependent, but polarization independent, propagation properties supporting "degenerate" characteristic polarizations, i.e. four linearly-independent eigenvectors associated with only two (rather than four) unique, non-defective eigenvalues. We first explain problems that can arise when the source(s) specifically reside within NBAM planar layers when using canonical field expressions. To remedy these problems, we exhibit alternative spectral-domain field expressions, immune to such problems, that form the foundation for a robust eigenfunction expansion-based analysis of time-harmonic EM radiation and scattering within such type of planar-layered media. Numerical results demonstrate the high accuracy and stability achievable using this algorithm.
Keywords
Cite
@article{arxiv.1502.05884,
title = {Spectral-Domain Computation of Fields Radiated by Sources in Non-Birefringent Anisotropic Media},
author = {Kamalesh Sainath and Fernando L. Teixeira},
journal= {arXiv preprint arXiv:1502.05884},
year = {2016}
}
Comments
The official (preliminary) published version of this manuscript, along with copyright information, can be found using the provided DOI. IEEE Antennas Wireless Propag. Lett., 2015