Polarization distribution of transverse ULF waves according to Van Allen Probe A data: whether toroidal and poloidal waves exist separately in the magnetosphere?

Artur Yakimchuk, Aleksander V. Rubtsov, D. Klimushkin
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Abstract

Ultralow-frequency (ULF) waves play an important role in energy transfer within Earth's magnetosphere due to intensive interaction with the surrounding plasma. Previous works have assumed that these waves are strictly divided by polarization into toroidal, when the magnetic field oscillates in the azimuthal direction, and poloidal, when it oscillates in the radial direction. The former are azimuthally large-scale and are excited by external sources, whereas the latter are small-scale and are generated by internal plasma instabilities. Observations show, however, that waves of mixed polarization often occur, and the nature of this mixing has not been explained. In this paper, we carry out a statistical study and show that the polarization of transverse waves has a normal distribution, and the maximum corresponds to oscillations of the toroidal and poloidal components with the same amplitude. At the same time, the spatial distributions of toroidal and poloidal waves are clearly different, but only lead to a small shift in the position of the distribution maximum. This result suggests that in order to compare the theory with ULF wave observations it is necessary to take into account the processes of polarization change, which can affect wave-particle interactions in the magnetosphere.
根据范艾伦探测器 A 数据得出的超低频横波极化分布:磁层中是否分别存在环形波和极性波?
超低频(ULF)波由于与周围等离子体的强烈相互作用,在地球磁层内的能量传递中发挥着重要作用。以往的研究认为,这些波按极化严格分为环形波(磁场在方位角方向振荡)和极形波(磁场在径向方向振荡)。前者是方位大尺度的,由外部来源激发,而后者是小尺度的,由内部等离子体不稳定性产生。然而,观测结果表明,混合极化波经常出现,而这种混合的性质尚未得到解释。在本文中,我们进行了一项统计研究,结果表明横波的极化具有正态分布,最大值对应于具有相同振幅的环向和极向分量的振荡。同时,环形波和极性波的空间分布明显不同,但只导致分布最大值位置的微小移动。这一结果表明,为了将理论与超低频波观测结果进行比较,有必要考虑极化变化过程,这可能会影响磁层中波与粒子之间的相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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