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Intermittent turbulence in the heliosheath and the magnetosheath plasmas based on Voyager and THEMIS data

机译:基于旅行者和主题数据的Heliosheath和Magnetheath等离子体中的间歇性湍流

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Turbulence is complex behavior that is ubiquitous in space, including the environments of the heliosphere and the magnetosphere. Our studies on solar wind turbulence including the heliosheath, and even at the heliospheric boundaries, also beyond the ecliptic plane, have shown that turbulence is intermittent in the entire heliosphere. As is known, turbulence in space plasmas often exhibits substantial deviations from normal Gaussian distributions. Therefore, we analyze the fluctuations of plasma and magnetic field parameters also in the magnetosheath behind the Earth's bow shock. Based on THEMIS observations, we have already suggested that turbulence behind the quasi-perpendicular shock is more intermittent with larger kurtosis than that behind the quasi-parallel shocks. Following this study, we would like to present a detailed analysis of intermittent anisotropic turbulence in the magnetosheath depending on various characteristics of plasma behind the bow shock and now also near the magnetopause. In particular, for very high Alfvénic Mach numbers and high plasma beta we have clear non-Gaussian statistics in the directions perpendicular to the magnetic field. On the other hand, for directions parallel to this field the kurtosis is small and the plasma is close to equilibrium. However, the level of intermittency for the outgoing fluctuations seems to be similar to that for the ingoing fluctuations, which is consistent with approximate equipartition of energy between the oppositely propagating Alfvén waves. We hope that the difference in characteristic behavior of these fluctuations in various regions of space plasmas can help to detect some complex structures in space missions in the near future.
机译:湍流是在空间中无处不在的复杂行为,包括氦圈和磁层的环境。我们对太阳风湍流的研究,包括Heliosheath,甚至在灯光边界,也超出了黄光岩边界,已经表明,在整个氦层中湍流间歇性。如已知的,空间等离子体中的湍流通常呈现与正常高斯分布的显着偏差。因此,我们也在地球弓震动后面的磁性晶圈中分析了等离子体和磁场参数的波动。基于主题观察,我们已经表明,准垂直休克背后的湍流与较大的峰氏菌相比,比准平行冲击后面更大。在本研究之后,我们想在磁性垫圈中对间歇各向异性湍流进行详细分析,这取决于船首震动后面的各种特征,现在也接近磁性档次。特别是,对于非常高的AlfvénicHach数字和高等离子体β我们在垂直于磁场的方向上具有清晰的非高斯统计。另一方面,对于平行于该领域的方向,KurtOsis小,等离子体接近平衡。然而,输出波动的间歇性似乎类似于Imoing波动的水平,这与相对传播的Alfvén波之间的近似常量一致。我们希望在各个区域各地区的这些波动的特征行为的差异有助于在不久的将来检测太空任务中的一些复杂结构。

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