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Noncollinear and nonlinear pulse propagation

机译:非共线和非线性脉冲传播

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摘要

A novel method for numerical modelling of noncollinear and nonlinear interaction of femtosecond laser pulses is presented. The method relies on a separate treatment of each of the interacting pulses by it’s own rotated unidirectional pulse propagation equation (UPPE). We show that our method enables accurate simulations of the interaction of pulses travelling at a mutual angle of up to 140°. The limit is imposed by the unidirectionality principal. Additionally, a novel tool facilitating the preparation of noncollinear propagation initial conditions - a 3D Fourier transform based rotation technique - is presented. The method is tested with several linear and nonlinear cases and, finally, four original results are presented: (i) interference of highly chirped pulses colliding at mutual angle of 120°, (ii) optical switching through cross-focusing of perpendicular beams (iii) a comparison between two fluorescence up-conversion processes in BBO with large angles between the input beams and (iv) a degenerate four-wave mixing experiment in a boxcar configuration.
机译:提出了一种飞秒激光脉冲非共线和非线性相互作用数值模拟的新方法。该方法依靠自己旋转的单向脉冲传播方程(UPPE)对每个相互作用的脉冲进行单独处理。我们证明了我们的方法能够准确模拟以最大140°的相互角度传播的脉冲的相互作用。该限制是由单向性主体施加的。此外,提出了一种新的工具,可以方便地准备非共线传播的初始条件-一种基于3D傅里叶变换的旋转技术。在几种线性和非线性情况下对该方法进行了测试,最后给出了四个原始结果:(i)高chi脉冲以120°的相互夹角碰撞的干扰;(ii)通过垂直光束的交叉聚焦进行光学切换(iii) )比较输入光束之间大角度的BBO中的两种荧光上转换过程,以及(iv)在棚车配置中进行的简并四波混合实验。

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