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Dust ion acoustic solitary and shock waves in strongly coupled dusty plasma in presence of attractive interparticle interaction potential

机译:存在有吸引力的粒子间相互作用势的强耦合尘埃等离子体中的尘埃离子声孤立波和冲击波

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The streaming of ions through the dust particles significantly modifies the repulsive Debye-Huckel type of interaction in the sheath and pre-sheath regions and leads to the appearance of oscillatory and attractive wake type interaction. In this paper, we investigate the formation of dust-ion acoustic solitary and shock waves in the presence of streaming ions in a strongly coupled dusty plasma. The generalized hydrodynamic equation is used to describe the dust dynamics, and the dust-dust interaction has been taken into account via the electrostatic pressure term. The novel feature of the present study is the incorporation of both the repulsive and attractive interactions in the electrostatic pressure term. The flow of ions along the vertical direction in the sheath/presheath region of the plasma brings asymmetry to the dust dynamics, which has been carefully handled while considering the effect of strong coupling in the formation of nonlinear structures in such plasma. The study reveals that the ion streaming velocity has a crucial role in controlling the nonlinear coherent structures. Published by AIP Publishing.
机译:离子通过灰尘颗粒的流动显着地改变了鞘和前鞘区域中的排斥性德拜-哈克尔型相互作用,并导致出现振荡和有吸引力的尾流型相互作用。在本文中,我们研究了在强耦合尘埃等离子体中存在流动离子时尘埃离子声孤立波和冲击波的形成。广义流体动力学方程用于描述粉尘动力学,并通过静电压力项考虑了粉尘相互作用。本研究的新颖特征是在静电压力项中结合了排斥和吸引相互作用。离子在等离子体的鞘/前鞘区域中沿垂直方向的流动给粉尘动力学带来了不对称性,在考虑了在此类等离子体中形成非线性结构时的强耦合效应的同时,对这些动力学进行了精心处理。研究表明,离子流速度在控制非线性相干结构中起着至关重要的作用。由AIP Publishing发布。

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