Dust-ion-acoustic Solitary Waves and Their Instability in a Magnetized Adiabatic Dusty Electronegative Plasma

O. Rahman, M. M. Haider
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引用次数: 7

Abstract

The basic features of a nonlinear obliquely propagating dust-ion-acoustic (DIA) solitary waves (SWs) in a magnetized adiabatic dusty electronegative plasma (MADENP) containing Maxwellian electrons, vortex-like (trapped) negative ions, positively charged stationary dust, and adiabatic mobile inertial positive ions have been theoretically investigated. The well known modified Zakharov Kuznetsov (mZK) is derived by using the reductive perturbation technique. The dependence of solitary wave structures on positive ion adiabaticity, external magnetic field (obliqueness), trapped negative ions, and positively charged stationary dust are studied explicitly. The three-dimensional instability of this DIASWs is also analyzed using small-k perturbation expansion technique. It is found that the nature of DIASW, the instability criterion and the growth rate of unstable perturbations are significantly modified by the external magnetic field, the propagation directions of both the nonlinear waves and their perturbation modes.
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磁化绝热尘埃电负性等离子体中的尘埃离子声孤波及其不稳定性
本文从理论上研究了磁化绝热尘埃电负性等离子体(MADENP)中含有麦克斯韦电子、涡状(捕获)负离子、带正电的静止尘埃和绝热移动惯性正离子的非线性斜传播尘埃离子声孤波(DIA)的基本特征。利用约化微扰技术推导出了著名的修正Zakharov Kuznetsov (mZK)。明确地研究了孤立波结构与正离子绝热度、外加磁场(倾角)、捕获负离子和带正电的静止尘埃的关系。利用小k微扰展开技术分析了该材料的三维不稳定性。研究发现,外加磁场、非线性波的传播方向及其扰动模式对一水铝的性质、不稳定判据和不稳定扰动的增长速率都有显著的影响。
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Progress of Theoretical Physics
Progress of Theoretical Physics 物理-物理:综合
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