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Properties of cylindrical and spherical heavy ion-acoustic solitary and shock structures in a multispecies plasma with superthermal electrons

机译:具有过热电子的多物种等离子体中的圆柱和球形重离子声孤立和激波结构的性质

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A theoretical investigation on heavy ion-acoustic (HIA) solitary and shock structures has been accomplished in an unmagnetized multispecies plasma consisting of inertialess kappa-distributed superthermal electrons, Boltzmann light ions, and adiabatic positively charged inertial heavy ions. Using the reductive perturbation technique, the nonplanar (cylindrical and spherical) Kortewg-de Vries (KdV) and Burgers equations have been derived. The solitary and shock wave solutions of the KdV and Burgers equations, respectively, have been numerically analyzed. The effects of superthermality of electrons, adiabaticity of heavy ions, and nonplanar geometry, which noticeably modify the basic features (viz. polarity, amplitude, phase speed, etc.) of small but finite amplitude HIA solitary and shock structures, have been carefully investigated. The HIA solitary and shock structures in nonplanar geometry have been found to distinctly differ from those in planar geometry. Novel features of our present attempt may contribute to the physics of nonlinear electrostatic perturbation in astrophysical and laboratory plasmas.
机译:对重离子声(HIA)孤子和激波结构的理论研究已在由无惯性κ分布的超热电子,玻尔兹曼轻离子和绝热带正电的惯性重离子组成的未磁化多物种等离子体中完成。使用还原摄动技术,已经推导出了非平面(圆柱和球形)Kortewg-de Vries(KdV)和Burgers方程。分别对KdV和Burgers方程的孤波和激波解进行了数值分析。仔细研究了电子的过热,重离子的绝热性和非平面几何形状的影响,这些影响显着地改变了振幅有限但很小的HIA孤子和激波结构的基本特征(即极性,振幅,相速度等)。 。已发现非平面几何形状的HIA孤立和激波结构与平面几何形状明显不同。我们目前尝试的新颖特征可能有助于天体物理和实验室等离子体中的非线性静电扰动的物理学。

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