Existence of superposition solutions for pulse propagation in nonlinear resonant media
Abstract
Existence of self-similar, superposed pulse-train solutions of the nonlinear, coupled Maxwell-Schr\"odinger equations, with the frequencies controlled by the oscillator strengths of the transitions, is established. Some of these excitations are specific to the resonant media, with energy levels in the configurations of and and arise because of the interference effects of cnoidal waves, as evidenced from some recently discovered identities involving the Jacobian elliptic functions. Interestingly, these excitations also admit a dual interpretation as single pulse-trains, with widely different amplitudes, which can lead to substantially different field intensities and population densities in different atomic levels.
Keywords
Cite
@article{arxiv.quant-ph/0210143,
title = {Existence of superposition solutions for pulse propagation in nonlinear resonant media},
author = {P. K. Panigrahi and G. S. Agarwal},
journal= {arXiv preprint arXiv:quant-ph/0210143},
year = {2009}
}
Comments
11 Pages, 6 Figures, presentation changed and 3 figures added