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The Evolution of cosh-Gaussian Beams in Strong Nonlocal Nonlinear Media

机译:强非局部非线性介质中柯什-高斯光束的演化

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摘要

We investigate the dynamical properties of the cosh-Gaussian beams in strong nonlocal nonlinear (SNN) media. Based on the moments method, the evolution of cosh-Gaussian beam widths in the root-mean-square (RMS) sense are analytically obtained. The critical powers that keep the RMS beam widths invariant during propagation with uniform wavefront are given. The analytical solution of the cosh-Gaussian beams in SNN media is obtained by the technique of variable transformation. The numerical and graphical results provide intuitive pictures for the evolution of the cosh-Gaussian beams in SNN media. The cosh-Gaussian beams always periodically transform to cos-Gaussian beams as well as revive during propagation in SNN media, despite the difference of their symmetry and initial power. The RMS beam widths of cosh-Gaussian beams are negatively correlated with the initial powers in the SNN medium.
机译:我们研究了强非局部非线性(SNN)介质中Cosh-Gaussian光束的动力学特性。基于矩量法,获得了均方根(RMS)方向上的Cosh-Gaussian光束宽度的演化。给出了在均匀波前传播过程中保持RMS光束宽度不变的临界功率。利用变量变换技术获得了SNN介质中的柯什-高斯光束的解析解。数值和图形结果为SNN介质中的Cosh-Gaussian光束的演化提供了直观的图像。尽管Cosh-Gaussian光束的对称性和初始功率有所不同,但它们始终会定期转换为cos-Gaussian光束,并且在SNN介质中传播期间会恢复原状。 Cosh-Gaussian光束的RMS光束宽度与SNN介质中的初始功率负相关。

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