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Two-dimensional ion-acoustic solitary waves obliquely propagating in a relativistic rotating magnetised electron–positron–ion plasma in the presence of external periodic force

机译:在外部周期性的存在下,在相对论旋转磁化电子 - 正电子正电离子等离子体中倾斜地传播的二维离子声学孤立波

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The characteristics of ion-acoustic solitary waves in rotating, weakly relativistic, magnetised and collisionless plasma system comprising electron, positron and ion (EPI) under a periodic external force, whose constituents electron and positron obey Boltzmann distribution, are investigated by deriving forced Zakharov–Kuznetsov (FZK) equation. FZK equation is constructed using reductive perturbation technique (RPT) which is based on multiple-scale analysis of dependent variables. The effects of physical parameters such as the ratio of temperature of electron and positron, the strength of external periodic force, positron concentration in electron background, ion temperature and magnetic field on the analytical solitary wave solution of FZK equation are observed. It is seen that the behaviours of ion-acoustic wave are significantly affected due to the presence of positron and the periodic external forces. The results of this work may be applied when the above-mentioned plasma environment is found in laboratory as well as in space.
机译:通过衍生强迫Zakharov-研究了包括电子,正电子和离子(EPI)的旋转,正电子和离子(EPI)的旋转,弱相对,磁化和碰撞等离子体系统的特性,其组成电子和正电子和正电子呼吸博尔兹曼分布。 Kuznetsov(FZK)方程式。使用还原性扰动技术(RPT)构建FZK方程,其基于从属变量的多尺度分析。人们观察了物理参数,例如电子和正电子温度比,外周期力强度,电子背景中的正电子浓度,离子温度和磁场对FZK方程的分析孤波解。可以看出,由于正电子和周期性的外力存在,离子声波的行为显着影响。当在实验室和空间中发现上述血浆环境时,可以应用该工作的结果。

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