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Full wave vector Maxwell equation simulation of nonlinear self-focusing effects in three spatial dimensions

机译:在三个空间维度上非线性自聚焦效应的全波矢量麦克斯韦方程仿真

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摘要

In our effort to meet an increasing demand for more accurate and realistic nonlinear optics simulations, we have developed a nonlinear hybrid vector finite element method (NL-HVFEM) to study different phenomena due to wave propagation in waveguides filled with nonlinear Kerr-type media. Contrary to the most existing scalar models, the NL-HVFEM approach is based upon the vector Helmholtz equation and thus can predict the vectorial properties of fields in nonlinear media. We describe the NL-HVFEM approach and apply it to study nonlinear self-focusing effects in nonlinear waveguides. The numerical results of the evolution of the beam self-focusing are also included. Also, we summarized conditions under which electromagnetic beam can produce its own dielectric waveguide and propagate without spreading.
机译:为了满足对更精确,逼真的非线性光学仿真不断增长的需求,我们开发了一种非线性混合矢量有限元方法(NL-HVFEM),以研究由于波在填充了非线性Kerr型介质的波导中传播而引起的不同现象。与大多数现有的标量模型相反,NL-HVFEM方法基于矢量亥姆霍兹方程,因此可以预测非线性介质中场的矢量性质。我们描述了NL-HVFEM方法,并将其应用于研究非线性波导中的非线性自聚焦效应。光束自聚焦演变的数值结果也包括在内。此外,我们总结了电磁束可以产生其自身的介质波导并传播而不会扩散的条件。

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