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Interacting Solitons in a Nonneutral Plasma

机译:非中性等离子体中的相互作用孤子

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摘要

We have been continuing our study of solitons and nonlinear interactions in a pure electron plasma. The solitons are grown from large amplitude normal-mode oscillations. When grown in this way, it is convenient to divide the resulting wave into two parts: localized soliton-like structures and global normal-mode-like waves. These two parts interact weakly with each other and cause various interesting effects. When we launch two solitons by using the n_z = 2 mode, the normal mode part quickly converts to an n_z = 1 mode and causes one of the solitions to disappear. Later, when only one solition exists, the n_z = 1 mode is locked to it. Because the soliton speed is faster than the linear wave speed, this increases the frequency of the normal-mode part of the system. It appears that when the soliton amplitude drops below some critical value, the two parts of the system decouple and propagate separately.
机译:我们一直在继续研究纯电子等离子体中的孤子和非线性相互作用。孤子是从大振幅正常模式振荡中生长出来的。当以这种方式生长时,将生成的波分为两部分很方便:局部的孤子状结构和整体的正常模态波。这两个部分相互之间作用较弱,并产生各种有趣的效果。当我们使用n_z = 2模式发射两个孤子时,正常模式部分会迅速转换为n_z = 1模式,并导致其中一个孤岛消失。以后,当仅一个隔离存在时,n_z = 1模式锁定到它。因为孤子速度快于线性波速度,所以这会增加系统正常模式部分的频率。看来,当孤子振幅下降到某个临界值以下时,系统的两个部分将解耦并分别传播。

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