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Phase modulations due to collisions of beam pairs in nonlocal nonlinear media

机译:非局部非线性介质中由于束对碰撞而引起的相位调制

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摘要

In this paper, discussed is the evolution of two co-propagating optical beams in parallel in nonlocal Kerr media, governed by the nonlocal nonlinear Schroedinger equation (NNLSE). A simplified model to the NNLSE is presented when the media is strongly nonlocal, which is a bridge between the Snyder-Mitchell model (Snyder and Mitchell Science 276 1538, 1997) and the strongly-nonlocal model (Guo, Luo, Yi, Chi, and Xie Phys. Rev. E. 69 016602,2004). It is found that when one of the soliton beams is much stronger than the other, the weaker (probe beam) can experience π nonlinear phase shift, which can be modulated by the stronger (pump beam), within a rather short propagation distance (about 40-μm). The comparisons of analytical solutions of the model with numerical simulations of the NNLSE show that the model is of excellent accuracy in the case of strong nonlocality.
机译:在本文中,讨论了在非局部Kerr介质中并行传播的两个平行传播光束的演化,并受非局部非线性Schroedinger方程(NNLSE)的控制。当媒体是高度非本地的时,它是NNLSE的简化模型,它是Snyder-Mitchell模型(Snyder和Mitchell Science 276 1538,1997)和强非本地模型(Guo,Luo,Yi,Chi,和Xie Phys.Rev.E.69016602,2004)。结果发现,当一个孤子束强于另一个时,较弱的束(探测束)会在相当短的传播距离(约20%)内经历π非线性相移,该相移可由较强的(泵浦束)调制。 40微米)。该模型的解析解与NNLSE数值模拟的比较表明,在强非局部性的情况下,该模型具有极好的准确性。

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