A 3D DPG Maxwell Approach to Nonlinear Raman Gain in Fiber Laser Amplifiers
Abstract
We propose a three dimensional Discontinuous Petrov-Galerkin Maxwell approach for modeling Raman gain in fiber laser amplifiers. In contrast with popular beam propagation models, we are interested in a truly full vectorial approach. We apply the ultraweak DPG formulation, which is known to carry desirable properties for high-frequency wave propagation problems, to the coupled Maxwell signal/pump system and use a nonlinear iterative scheme to account for the Raman gain. This paper also introduces a novel and practical full-vectorial formulation of the electric polarization term for Raman gain that emphasizes the fact that the computer modeler is only given a measured bulk Raman gain coefficient. Our results provide promising qualitative corroboration of the model and methodology used.
Keywords
Cite
@article{arxiv.1805.12240,
title = {A 3D DPG Maxwell Approach to Nonlinear Raman Gain in Fiber Laser Amplifiers},
author = {S. Nagaraj and J. Grosek and S. Petrides and L. Demkowicz and J. Mora},
journal= {arXiv preprint arXiv:1805.12240},
year = {2018}
}
Comments
32 pages, 15 figures, submitted to Journal of Computational Physics