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首页> 外文期刊>Astrophysics and space science >Solitons and double-layers of electron-acoustic waves in magnetized plasma; an application to auroral zone plasma
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Solitons and double-layers of electron-acoustic waves in magnetized plasma; an application to auroral zone plasma

机译:磁化等离子体中的孤子和电子声波的双层;在极光区血浆中的应用

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A theoretical investigation is carried out for understanding the properties of electron-acoustic potential structures (i. e., solitary waves and double-layers) in a magnetized plasma whose constituents are a cold magnetized electron fluid, hot electrons obeying a nonthermal distribution, and stationary ions. For this purpose, the hydrodynamic equations for the cold magnetized electron fluid, nonthermal electron density distribution, and the Poisson equation are used to derive the corresponding nonlinear evolution equation; modified Zakharov-Kuznetsov (MZK) equation, in the small amplitude regime. The MZK equation is analyzed to examine the existence regions of the solitary pulses and double-layers. It is found that rarefactive electron-acoustic solitary waves and double-layers strongly depend on the density and temperature ratios of the hot-to-cold electron species as well as the nonthermal electron parameter.
机译:进行了理论研究以理解在磁化等离子体中的电子声势结构(即,孤波和双层)的性质,其成分是冷磁化的电子流体,服从非热分布的热电子和固定离子。为此,使用冷磁化电子流体的流体力学方程,非热电子密度分布和泊松方程来推导相应的非线性演化方程。在小振幅状态下修改Zakharov-Kuznetsov(MZK)方程。分析了MZK方程以检查孤立脉冲和双层的存在区域。发现稀有电子声孤立波和双层强烈取决于热冷电子种类的密度和温度比以及非热电子参数。

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