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Nonlinear propagation of dust-acoustic solitary waves in a dusty plasma with arbitrarily charged dust and trapped electrons

机译:尘埃声孤波在尘埃等离子体中的带电尘埃和电子束缚的非线性传播

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A theoretical investigation of dust-acoustic solitary waves in three-component unmagnetized dusty plasma consisting of trapped electrons, Maxwellian ions, and arbitrarily charged cold mobile dust was done. It has been found that, owing to the departure from the Maxwellian electron distribution to a vortex-like one, the dynamics of small but finite amplitude dust-acoustic (DA) waves is governed by a nonlinear equation of modified Kortewega€“de Vries (mKdV) type (instead of KdV). The reductive perturbation method was employed to study the basic features (amplitude, width, speed, etc.) of DA solitary waves which are significantly modified by the presence of trapped electrons. The implications of our results in space and laboratory plasmas are briefly discussed.
机译:对由俘获的电子,麦克斯韦离子和任意带电的冷移动粉尘组成的三成分未磁化粉尘等离子体中的粉尘声孤波进行了理论研究。已经发现,由于从麦克斯韦电子分布转向涡旋状,小而有限振幅的尘埃声波(DA)的动力学受修正的Kortewega-de Vries( mKdV)类型(而不是KdV)。还原摄动法被用来研究DA孤波的基本特征(幅度,宽度,速度等),其被捕获的电子显着改变。简要讨论了我们的结果在太空和实验室等离子体中的含义。

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