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Kelvin-Helmholtz Multi-Spacecraft Studies at the Earth's Magnetopause Boundaries

机译:Kelvin-Helmholtz在地球的磁性偏移边界的多宇宙飞车研究

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The Kelvin-Helmholtz (KH) instability can operate in various situations in the solar wind, but at the boundaries of planetary obstacles, for example the Earth's magnetopause, it is most amenable to investigation. Reliable estimates of wave characteristics are essential for comparison with theoretical and numerical models and for understanding the nonlinear development of KH waves and their role in the plasma entry into the magnetosphere. After discussing their typical conditions of appearance in KH unstable domains at the magnetopause, both theoretically and observationally, we outline recent results of multi-spacecraft analysis with Cluster giving accurate, albeit spatially limited, determination of surface wave characteristics. Those characteristics (wavelength and propagation direction), close to the terminator on the nightside, are likely to be prescribed by the 3-D geometry and the bending of field lines developed by the KH waves, rather than by the magnitude and the direction of the magnetosheath or background flow. An unprecedented number of satellites provides now the opportunity to extend the analysis of source regions of KH waves and their domains of development.
机译:Kelvin-Helmholtz(kH)不稳定可以在太阳风中的各种情况下运行,但在行星障碍物的界限处,例如地球的磁性常规,它最适合调查。波动特征的可靠估计对于与理论和数值模型进行比较至关重要,并且了解KH波的非线性发育及其在等离子体进入磁层中的作用。在理论上和观察到的磁性常数在KH不稳定域中讨论其典型的外观条件后,我们概述了多个航天器分析的最近结果,与集群进行准确,尽管表面波特性的确定。靠近夜间的终结器的那些特性(波长和传播方向)可能由3-D几何形状和由KH波开发的场线的弯曲规定,而不是通过级别和方向磁性惰性或背景流程。现在,前所未有的卫星提供了延长kh波浪源区的机会及其发展领域的机会。

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