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Simulation of light beam propagation in nonlinear media

机译:非线性介质中光束传播的仿真

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The present paper concerns simulation of nonlinear wave propagation in the ray regime. Conventionally, linear ray propagation is computed by using Hamilton's ray equations whose terms are derived from the dispersion equation. In the present case of nonlinear propagation, the terms depend on the field amplitudes which are determined by the convergence (or divergence) of the ray in the beam, therefore it is necessary to modify the original Runge-Kutta scheme, building into it some iteration mechanism such that the process converges to the values which take into account the amplitude effect. This research attempts to properly modify the existing propagation formalism. The results display self-focusing effects characteristic of nonlinear optics problems. The influence of weak losses on the beam propagation and its self-focusing is also discussed. Some displayed results, obtained by simulating the modified formalism, seem to be physically plausible and are in good agreement with experimental results reported in the literature.
机译:本文涉及射线区域中非线性波传播的模拟。传统上,通过使用哈密尔顿的射线方程来计算线性射线传播,其术语来自色散方程的术语。在非线性传播的当前情况下,术语依赖于通过光束中的光线的收敛(或分流)确定的场幅度,因此需要修改原始跑步-Kutta方案,建立在一些迭代中机制,使得该过程会聚到考虑幅度效果的值。该研究试图适当地修改现有的传播形式主义。结果显示非线性光学问题的自对焦效应特征。还讨论了弱损失对光束传播及其自对焦的影响。通过模拟改良的形式主义获得的一些显示结果似乎是物理上可粘的,并且与文献中报道的实验结果一致。

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