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On nonlinear waves in Hall-MHD plasma

机译:关于霍尔MHD等离子体中的非线性波

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Low-frequency magnetic field fluctuations are observed in space plasmas, e.g. as upstream waves at the Earth's bow shock. Such upstream waves can steepen into very large amplitude wave phenomena, e.g. short large-amplitude magnetic structures (or SLAMS for short), shocklets or discrete wave packets. Such observations motivated us to study the nonlinear behavior of low-frequency and large-amplitude plasma waves in terms of the full nonlinear Hall-MHD framework. In the case of stationary (nonlinear) waves, the Hall-MHD equations can be rewritten in the so-called Sakai-Sonnerup system of equations that describe this plasma state and provide oscillatory and solitary types of solutions. An overall parameter study on the polarization characteristics, together with the magnetic field components and density variations of the different ranges of solutions, is presented here. These results can be further on applied to the theoretical treatment of particle interaction with such waves, e.g. at shocks in space plasmas, possibly leading to particle acceleration.
机译:在空间等离子中观察到低频磁场波动,例如就像是地球弓箭震荡的上游波浪一样。这样的上游波会变陡成非常大的振幅波现象,例如。短的大振幅磁性结构(或简称SLAMS),冲击波或离散波包。这些观察促使我们根据完整的非线性霍尔-MHD框架研究低频和大振幅等离子体波的非线性行为。在驻波(非线性)的情况下,可以在所谓的Sakai-Sonnerup方程组中重写霍尔MHD方程,该方程组描述了这种等离子体状态并提供了振荡和孤立类型的解。本文介绍了有关极化特性的整体参数研究,以及不同解决方案范围的磁场分量和密度变化。这些结果可以进一步应用于理论上处理这种波与粒子相互作用的过程,例如波。在空间等离子体的冲击下,可能导致粒子加速。

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