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Nonlinear propagation of ion-acoustic waves through the Burgers equation in weakly relativistic plasmas

机译:离子声波在弱相对相同的等离子体中的汉堡方程的非线性传播

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摘要

The Burgers equation is obtained to study the characteristics of nonlinear propagation of ionacoustic shock, singular kink, and periodic waves in weakly relativistic plasmas containing relativistic thermal ions, nonextensive distributed electrons, Boltzmann distributed positrons, and kinematic viscosity of ions using the well-known reductive perturbation technique. This equation is solved by employing the (G'/G)-expansion method taking unperturbed positron-to-electron concentration ratio, electron-to-positron temperature ratio, strength of electrons nonextensivity, ion kinematic viscosity, and weakly relativistic streaming factor. The influences of plasma parameters on nonlinear propagation of ion-acoustic shock, periodic, and singular kink waves are displayed graphically and the relevant physical explanations are described. It is found that these parameters extensively modify the shock structures excitation. The obtained results may be useful in understanding the features of small but finite amplitude localized relativistic ion-acoustic shock waves in an unmagnetized plasma system for some astrophysical compact objects and space plasmas.
机译:获得汉堡方程以研究含有相对论热离子,非夸张分布的电子,Boltzmann分布的正向的弱相对论等离子体中的非线性震动,奇异扭结和周期波的特性,使用众所周知的还原扰动技术。通过采用(G'/ G)-Expansion方法来解决这种等式,采用未受干扰的正电子 - 电子浓度比,电子 - 正电子温度比,电子非奇异性强度,离子运动粘度和弱相对主义的流媒体因子。等离子体参数对离子声冲击,周期性和奇异扭结波的非线性传播的影响是图形的,并且描述了相关的物理解释。结果发现这些参数广泛修改冲击结构激励。获得的结果可用于理解在未逗留的等离子体系统中的小而有限幅度局部相对论离子声反声波的特征,用于一些天体物理紧凑型物体和空间等离子体。

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