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Dust Acoustic Compressive Waves in a Warm Dusty Plasma Having Non-Thermal Ions and Non-Isothermal Electrons

机译:具有非热离子和非等温电子的温暖多尘等离子体中的尘埃声压缩波

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In this article an investigation is presented on the properties of dust acoustic (DA) compressive solitary wave propagation in an adiabatic dusty plasma, including the effect of nonthermal positive and negative ions and non-isothermal electrons. The reductive perturbation method has been employed to derive the lower degree modified Kadomtsev-Petviashivili (mK-P), 3D Schamel-Korteweg-de-Vries equation or modified Kadomtsev-Petviashivili (mK-P) equations for dust acoustic solitary waves in a homogeneous, unmagnetized and collisionless plasma whose constituents are non-isothermal electrons, singly charged positive and negative non-thermal ions and massive charged dust particles. The stationary analytical solutions of the lower degree mK-P and mK-P equations are numerically analyzed, where the effect of various dusty plasma constituents on DA solitary wave propagation is taken into account. It is observed that both the ions in dusty plasma play a key role in the formation of DA compressive solitary waves, and also the ion concentration and non-isothermal electrons control the transformation of the compressive potentials of the waves.
机译:本文对绝热粉尘等离子体中粉尘声波(DA)压缩孤立波的传播特性进行了研究,包括非热正负离子和非等温电子的影响。还原摄动方法已被用于导出均匀度较低的粉尘声孤立波的低阶修正Kadomtsev-Petviashivili(mK-P),3D Schamel-Korteweg-de-Vries方程或修正Kadomtsev-Petviashivili(mK-P)方程,非磁化且无碰撞的等离子体,其成分为非等温电子,带正电和带负电的非热离子以及带电的大尘埃粒子。数值分析了低阶mK-P和mK-P方程的静态解析解,其中考虑了各种粉尘等离子体成分对DA孤波传播的影响。可以看到,尘土等离子体中的离子在DA压缩孤波的形成中都起着关键作用,并且离子浓度和非等温电子控制着波的压缩电位的转换。

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