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Interball contribution to the high-altitude cusp observations

机译:球间对高海拔风口观测的贡献

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The polar cusps have traditionally been described as narrow funnel-shaped regions of magnetospheric magnetic field lines directly connected to magnetosheath, allowing the magnetosheath plasma to precipitate into the ionosphere. However, recent observations and theoretical considerations revealed that the formation of the cusp cannot be treated separately from the processes along the whole dayside magnetopause and that the plasma in regions like cleft or low-latitude boundary layer is of the same origin. Our review of statistical results as well as numerous case studies identified the anti-parallel merging at the magnetopause as the principal source of the magnetosheath plasma in all altitudes. Since effective merging requires a low plasma speed at the reconnection spot, we have found that the magnetopause shape and especially its indentation at the outer cusp is a very important part of the whole process. The plasma is slowed down in this indentation and arising multiscale turbulent processes enhance the reconnection rate.
机译:传统上,极尖被描述为直接连接到磁石场的磁层磁场线的狭窄漏斗形区域,从而使磁石场等离子体沉淀到电离层中。然而,最近的观察和理论考虑表明,尖顶的形成不能与整个日间磁更年期的过程分开处理,并且在类似裂缝或低纬度边界层的区域中的等离子体起源相同。我们对统计结果的回顾以及大量案例研究确定,在各个海拔高度,磁层顶的反平行合并是磁石场等离子体的主要来源。由于有效的合并需要在重新连接点处降低等离子体速度,因此我们发现,磁石顶形状,尤其是其在外部尖端的压痕是整个过程中非常重要的部分。在这种情况下,等离子体会变慢,并且出现的多尺度湍流过程会提高重新连接速率。

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