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Breather interactions, higher-order rogue waves and nonlinear tunneling for a derivative nonlinear Schrodinger equation in inhomogeneous nonlinear optics and plasmas

机译:非均质非线性光学和等离子体中微分非线性Schrodinger方程的呼吸相互作用,高阶流浪波和非线性隧穿

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摘要

Under investigation in this paper is a variable-coefficient derivative nonlinear Schrodinger (vcDNLS) equation governing the femtosecond pulses in the inhomogeneous optical fibers or nonlinear Alfven waves in the inhomogeneous plasmas. Higher-order breather and rogue wave solutions of the vc-DNLS equation are obtained via the variable-coefficient modified Darboux transformation. Two types of the breather interactions (the head-on and overtaking collisions) are exhibited with different spectral parameters. By suitably choosing the inhomogeneous functions, the parabolic breather, periodic breather, breather amplification and breather evolution are demonstrated. Furthermore, the characteristics of the higher-order fundamental rogue wave, periodic rogue wave and composite rogue wave are graphically discussed. Additionally, the nonlinear tunneling of the higher-order breathers and rogue waves are studied.
机译:本文正在研究的是变系数微分非线性薛定inger(vcDNLS)方程,用于控制非均质光纤中的飞秒脉冲或非均质等离子体中的非线性Alfven波。 vc-DNLS方程的高阶通气和流浪解通过可变系数改进的Darboux变换获得。两种呼吸相互作用(正面碰撞和超车碰撞)表现出不同的光谱参数。通过适当选择不均匀的函数,可以显示抛物线形通气,周期性通气,通气放大和通气演变。此外,还对高阶基本无赖波,周期性无赖波和复合无赖波的特性进行了图形讨论。此外,还研究了高阶通气和无赖波的非线性隧穿。

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