Lasing Threshold Condition for Oblique TE and TM Modes, Spectral Singularities, and Coherent Perfect Absorption
Abstract
We study spectral singularities and their application in determining the threshold gain coefficient for oblique transverse electric/magnetic (TE/TM) modes of an infinite planar slab of homogenous optically active material. We show that is a monotonically decreasing function of the incidence angle (measured with respect to the normal direction to the slab), while has a single maximum, , where it takes an extremely large value. We identify with the Brewster's angle and show that and coincide for (normal incidence), tend to zero as , and satisfy for . We therefore conclude that lasing and coherent perfect absorption are always more difficult to achieve for the oblique TM waves and that they are virtually impossible for the TM waves with . We also give a detailed description of the behavior of the energy density and the Poynting vector for spectrally singular oblique TE and TM waves. This provides an explicit demonstration of the parity-invariance of these waves and shows that the energy density of a spectrally singular TM wave with is smaller inside the gain region than outside it. The converse is true for the TM waves with and all TE waves.
Keywords
Cite
@article{arxiv.1501.06767,
title = {Lasing Threshold Condition for Oblique TE and TM Modes, Spectral Singularities, and Coherent Perfect Absorption},
author = {Ali Mostafazadeh and Mustafa Sarisaman},
journal= {arXiv preprint arXiv:1501.06767},
year = {2015}
}
Comments
14 pages, 3 tables, 7 figures