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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Numerical simulation of short laser pulse amplification
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Numerical simulation of short laser pulse amplification

机译:短激光脉冲放大的数值模拟

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Within this work, the numerical solution of the photon transport equation for pulse amplification is presented. Several discretization schemes are introduced that enable the calculation of the coupling between the transport equation and population inversion. It is demonstrated that the presented discretization schemes are convergent with respect to the analytic Frantz-Nodvik solution. Specifically, the application of a prediction-correction approach based on Heun's method leads to an improvement in accuracy compared to the pure explicit approach. Finally, novel discretization schemes are applied to simulate different regenerative amplifiers based on Ti:Sapphire and Ho:YAG. Moreover, bifurcation of the Ho:YAG system is analyzed, which results in the determination of stable operating regimes for pulsed amplification. (C) 2019 Optical Society of America
机译:在这项工作中,提出了脉冲放大的光子传输方程的数值解。 介绍了几种离散化方案,使得能够计算传输方程和群体反演之间的耦合。 证明所提出的离散化方案是关于分析Frantz-Nodvik溶液的收敛性。 具体地,基于Heun方法的预测校正方法的应用导致准确性的提高与纯粹的明确方法相比。 最后,应用了新的离散化方案来模拟基于Ti的不同再生放大器:蓝宝石和HO:YAG。 此外,分析了HO:YAG系统的分叉系统,这导致确定脉冲扩增的稳定操作方案。 (c)2019年光学学会

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