Unified Model for a Nonlinear Pulse Propagation in Composites and Optimization of THz Generation
Abstract
We describe a unified numerical model which allows fast and accurate simulation of nonlinear light propagation in nanoparticle composites, including various effects such as group velocity dispersion, second- and third-order nonlinearity, quasi-free-carrier formation and plasma contribution, exciton dynamics, scattering and so on. The developed software package SOLPIC is made available for the community. Using this model, we analyze and optimize efficient generation of THz radiation by two-color pulses in ZnO/fused silica composite, predicting an efficiency of 3\%. We compare the role of various nonlinear effects contributing to the frequency conversion, and show that optimum conditions of THz generation differ from those expected intuitively.
Keywords
Cite
@article{arxiv.2301.04531,
title = {Unified Model for a Nonlinear Pulse Propagation in Composites and Optimization of THz Generation},
author = {Anton Husakou and Olga Fedotova and Ryhor Rusetsky and Oleg Khasanov and Tatsiana Smirnova and Alexander Fedotov and Tzveta Apostolova and Ihar Babushkin and Usman Sapaev},
journal= {arXiv preprint arXiv:2301.04531},
year = {2023}
}
Comments
8 pages, 4 figures, corrected several typos and missing "a"/"the", make unified reference style, introduced one abbreviation to improve readability