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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Asymptotic breathing pulse in optical transmission systems with dispersion compensation
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Asymptotic breathing pulse in optical transmission systems with dispersion compensation

机译:具有色散补偿的光传输系统中的渐近呼吸脉冲

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We study a nonlinear process of the formation of a breathing solitary wave in the optical transmission systems with periodic amplification and dispersion compensation. Results of our numerical simulations demonstrate remarkably stable asymptotic propagation of such breathing pulse over long distances. We have derived approximate equations describing pulse amplitude and width oscillations and found that results obtained by this approach are in good agreement with the results of direct numerical modeling on the short and middle distances. It is shown that asymptotic averaged pulses have a form typically close to a Gaussian shape. We have found numerically that an input pulse evolves asymptotically into a stable breathing structure. After the first stage of propagation, the input pulse emits radiation that spreads due to dispersion. The asymptotic structure that is formed realizes a balance between the main pulse and the radiative tail.
机译:我们研究了具有周期性放大和色散补偿的光传输系统中呼吸孤立波形成的非线性过程。我们的数值模拟结果表明,这种呼吸脉冲在长距离上具有非常稳定的渐近传播。我们已经推导了描述脉冲幅度和宽度振荡的近似方程,发现通过这种方法获得的结果与在短距离和中间距离上进行直接数值建模的结果非常吻合。结果表明,渐近平均脉冲具有通常接近高斯形状的形式。我们已经从数字上发现输入脉冲渐近地演变成稳定的呼吸结构。在传播的第一阶段之后,输入脉冲会发射由于色散而扩散的辐射。所形成的渐近结构实现了主脉冲和辐射尾波之间的平衡。

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