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Alternative dust-ion acoustic waves in a magnetized charge varying dusty plasma with nonthermal electrons having a vortex-like velocity distribution

机译:磁化电荷中的尘埃等离子体中的替代性尘埃离子声波,其尘埃等离子体与非热电子一样,具有涡旋状的速度分布

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摘要

Alternative localized dust-ion acoustic waves are investigated in a magnetized charge varying dusty plasma with nonthermal electrons having a vortex-like velocity distribution. The correct non-Maxwellian charging currents are obtained based on the well-known orbit limited motion theory. Following the standard reductive perturbation technique, a Schamel-Zakharov Kuznetsov Burgers (S-ZKB) equation is derived. It is shown that due to an interplay between trapping and nonthermality, our dusty plasma model may support solitary as well as shock waves the main quantities (phase velocity, amplitude and width) of which are drastically influenced by trapping, nonthermality and charge variation. Due to the flexibility provided by the outlined distribution function (two concepts of non isothermality), we stress that our model should provide a good fit of the space observations.
机译:在具有非涡旋速度分布的非热电子的磁化电荷变化尘埃等离子体中研究了替代性局部尘埃离子声波。根据众所周知的轨道有限运动理论,可以获得正确的非麦克斯韦充电电流。遵循标准的还原摄动技术,得出了Schamel-Zakharov Kuznetsov Burgers(S-ZKB)方程。结果表明,由于俘获和非热之间的相互作用,我们的尘土等离子体模型可能支持孤波和冲击波,其主要量(相速度,振幅和宽度)受俘获,非热和电荷变化的影响很大。由于概述的分布函数(非等温性的两个概念)提供的灵活性,我们强调我们的模型应提供对空间观测的良好拟合。

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