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Propagation of ion-acoustic solitons in an electron beam-superthermal plasma system with finite ion-temperature: Linear and fully nonlinear investigation

机译:离子温度有限的电子束-超热等离子体系统中离子声孤子的传播:线性和完全非线性研究

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摘要

The propagation of ion-acoustic (IA) solitons is studied in a plasma system, comprised of warm ions and superthermal (Kappa distributed) electrons in the presence of an electron-beam by using a hydrodynamic model. In the linear analysis, it is seen that increasing the superthermality lowers the phase speed of the IA waves. On the other hand, in a fully nonlinear investigation, the Mach number range and characteristics of IA solitons are analyzed, parametrically and numerically. It is found that the accessible region for the existence of IA solitons reduces with increasing the superthermality. However, IA solitons with both negative and positive polarities can coexist in the system. Additionally, solitary waves with both subsonic and supersonic speeds are predicted in the plasma, depending on the value of ion-temperature and the superthermality of electrons in the system. It is examined that there are upper critical values for beam parameters (i.e., density and velocity) after which, IA solitary waves could not propagate in the plasma. Furthermore, a typical interaction between IA waves and the electron-beam in the plasma is confirmed.
机译:通过使用流体力学模型,在电子束存在下由热离子和超热(Kappa分布)电子组成的等离子体系统中研究了离子声(IA)孤子的传播。在线性分析中,可以看出增加超热会降低IA波的相速度。另一方面,在完全非线性的研究中,对IA孤子的马赫数范围和特征进行了参数和数值分析。发现IA孤子存在的可到达区域随着超热的增加而减小。但是,具有负极性和正极性的IA孤子可以在系统中共存。另外,取决于离子温度值和系统中电子的超热值,在等离子体中预测具有亚音速和超音速两种速度的孤波。检查了光束参数(即密度和速度)具有较高的临界值,此后,IA孤立波无法在等离子体中传播。此外,证实了IA波与等离子体中的电子束之间的典型相互作用。

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