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Compressive and rarefactive ion-acoustic solitons in a magnetized quantum plasma

机译:磁化量子等离子体中的压缩稀疏离子声孤子

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摘要

Compressive and rarefactive ion-acoustic solitary waves (IASWs) in a magnetized, collisionless, three-component, dense plasma system have been carried out. The plasma system is assumed to be composed of non-degenerate inertial ions, degenerate electrons and immobile positively charged heavy ions. The magnetized Korteweg-de Vries (K-dV) and modified K-dV (mK-dV) equations are derived by adopting reductive perturbation method to study the basic characteristics of IASWs. It is seen that the effects of degenerate pressure, number density of electrons, inertial ions, and positively charged static heavy ions significantly modify the fundamental features of IASWs. It is also found that the magnetic field (obliqueness) has a significant contribution on the characteristics of IASWs. The implication of our results in some space and laboratory plasma situations are concisely discussed.
机译:已经在磁化,无碰撞,三组分,密集等离子体系统中执行了压缩和稀疏的离子声孤立波(IASW)。假定等离子体系统由非简并惯性离子,简并电子和固定的带正电的重离子组成。采用还原摄动法研究了IASW的基本特性,得出了磁化的Korteweg-de Vries(K-dV)方程和修正的K-dV(mK-dV)方程。可以看出,退化压力,电子的数量密度,惯性离子和带正电的静态重离子的影响显着改变了IASW的基本特征。还发现磁场(倾斜度)对IASW的特性有重要贡献。简要讨论了我们的结果在某些空间和实验室等离子体环境中的含义。

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