首页> 外文期刊>Journal of physics, A. Mathematical and theoretical >Development of nonperturbative nonlinear optics models including effects of high order nonlinearities and of free electron plasma: Maxwell-Schrodinger equations coupled with evolution equations for polarization effects, and the SFA-like nonlinear optics model
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Development of nonperturbative nonlinear optics models including effects of high order nonlinearities and of free electron plasma: Maxwell-Schrodinger equations coupled with evolution equations for polarization effects, and the SFA-like nonlinear optics model

机译:开发包括高阶非线性和自由电子等离子体影响的非摄动非线性光学模型:Maxwell-Schrodinger方程和极化效应演化方程,以及类似于SFA的非线性光学模型

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This paper is dedicated to the exploration of non-conventional nonlinear optics models for intense and short electromagnetic fields propagating in a gas. When an intense field interacts with a gas, usual nonlinear optics models, such as cubic nonlinear Maxwell, wave and Schrodinger equations, derived by perturbation theory may become inaccurate or even irrelevant. As a consequence, and to include in particular the effect of free electrons generated by laser-molecule interaction, several heuristic models, such as UPPE, HOKE models, etc, coupled with Drude-like models [1, 2], were derived. The goal of this paper is to present alternative approaches based on non-heuristic principles. This work is in particular motivated by the on-going debate in the filamentation community, about the effect of high order nonlinearities versus plasma effects due to free electrons, in pulse defocusing occurring in laser filaments [3-9]. The motivation of our work goes beyond filamentation modeling, and is more generally related to the interaction of any external intense and (short) pulse with a gas. In this paper, two different strategies are developed. The first one is based on the derivation of an evolution equation on the polarization, in order to determine the response of the medium (polarization) subject to a short and intense electromagnetic field. Then, we derive a combined semi-heuristic model, based on Lewenstein's strong field approximation model and the usual perturbative modeling in nonlinear optics. The proposed model allows for inclusion of high order nonlinearities as well as free electron plasma effects.
机译:本文致力于探索气体中传播的强电磁场和短电磁场的非常规非线性光学模型。当强场与气体相互作用时,由摄动理论推导的常用非线性光学模型(例如立方非线性麦克斯韦,波动和薛定inger方程)可能变得不准确甚至不相关。结果,尤其是考虑到激光分子相互作用产生的自由电子的影响,得出了几种启发式模型,例如UPPE,HOKE模型等,以及类似Drude的模型[1、2]。本文的目的是提出基于非启发式原理的替代方法。这项工作特别受灯丝化社区中有关高阶非线性效应与由于自由电子引起的等离子效应在激光灯丝中发生脉冲散焦的争论的推动[3-9]。我们工作的动机超出了丝状体建模的范围,并且更普遍地与任何外部强脉冲和(短)脉冲与气体的相互作用有关。在本文中,开发了两种不同的策略。第一个是基于对极化的演化方程的推导,以便确定介质在短而强的电磁场作用下的响应(极化)。然后,基于Lewenstein的强场近似模型和非线性光学中通常的微扰模型,得出组合的半启发式模型。所提出的模型允许包括高阶非线性以及自由电子等离子体效应。

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