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多自感应透明系统中的 rogue 波和 W 形孤子

Rogue waves and W-shaped solitons in the multiple self-induced transparency system.

作者信息

Wang Xin, Liu Chong, Wang Lei

机构信息

College of Science, Zhongyuan University of Technology, Zhengzhou 450007, China.

School of Physics, Northwest University, Xi'an 710069, China.

出版信息

Chaos. 2017 Sep;27(9):093106. doi: 10.1063/1.4986609.

Abstract

We study localized nonlinear waves on a plane wave background in the multiple self-induced transparency (SIT) system, which describes an important enhancement of the amplification and control of optical waves compared to the single SIT system. A hierarchy of exact multiparametric rational solutions in a compact determinant representation is presented. We demonstrate that this family of solutions contain known rogue wave solutions and unusual W-shaped soliton solutions. State transitions between the fundamental rogue waves and W-shaped solitons as well as higher-order nonlinear superposition modes are revealed in the zero-frequency perturbation region by the suitable choice for the background wavenumber of the electric field component. Particularly, it is found that the multiple SIT system can admit both stationary and nonstationary W-shaped solitons in contrast to the stationary results in the single SIT system. Moreover, the W-shaped soliton complex which is formed by a certain number of fundamental W-shaped solitons with zero phase parameters and its decomposition mechanism in the case of the nonzero phase parameters are shown. Meanwhile, some important characteristics of the nonlinear waves including trajectories and spectrum are discussed through the numerical and analytical methods.

摘要

我们研究了多自感应透明(SIT)系统中平面波背景上的局域非线性波,与单SIT系统相比,该系统描述了光波放大和控制方面的重要增强。给出了一种紧凑行列式表示形式的精确多参数有理解的层级结构。我们证明,这一族解包含已知的 rogue 波解和不寻常的 W 形孤子解。通过对电场分量背景波数的适当选择,在零频率微扰区域揭示了基本 rogue 波与 W 形孤子以及高阶非线性叠加模式之间的状态转变。特别地,发现与单SIT系统中的静止结果相比,多SIT系统可以同时存在静止和非静止的W形孤子。此外,展示了由一定数量具有零相位参数的基本W形孤子形成的W形孤子复合体及其在非零相位参数情况下的分解机制。同时,通过数值和解析方法讨论了非线性波的一些重要特性,包括轨迹和频谱。

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