IF 2.6 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS Journal of Geophysical Research: Space Physics Pub Date : 2024-09-17 DOI:10.1029/2024JA032803
Terry Z. Liu, Vassilis Angelopoulos, Antonius Otto
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摘要

离子前震是非常动态的,以各种瞬态结构为特征,这些结构会扰动弓形冲击并影响磁层-电离层系统。前震瞬态的一个重要驱动因素是太阳风方向不连续性(DD),它能使前震离子去磁,从而产生局部电流。如果该电流降低了 DD 处的场强,就会形成热流异常(HFA)。最近的混合模拟发现,当电流增加 DD 处的场强时,会形成密度和场强与 HFA 相反的压缩结构。利用 MMS 和 THEMIS 的观测结果,我们证实了这一情况。我们证明了由前震离子驱动的电流几何在其形成过程中起到了关键作用。由于前震离子的镜面反射,它们的初始陀螺相决定了它们能否穿过 DD。当许多前震离子无法穿过 DD 时,它们驱动的局部电流会增加 DD 处的场强,增强的场强会抑制更多的前震离子穿过 DD,从而进一步增强局部电流。这种反馈回路促进了压缩结构的增长。这种前震离子驱动的压缩结构会导致磁鞘中的动态压力增强,从而形成磁鞘喷流。我们的研究可以预测这种压缩结构的位置和形成概率,以及它们潜在的地质效应。
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Observations of Compressional Structures Driven by Interaction Between Foreshock Ions and Discontinuities

The ion foreshock is very dynamic, characterized by various transient structures that can perturb the bow shock and influence the magnetosphere-ionosphere system. One important driver of foreshock transients is solar wind directional discontinuities (DDs) that demagnetize foreshock ions leading to a local current. If this current decreases the field strength at the DD, a hot flow anomaly (HFA) can form. Recent hybrid simulations found that when the current increases the field strength at the DD, a compressional structure forms with enhanced density and field strength opposite to HFAs. Using MMS and THEMIS observations, we confirm this situation. We demonstrate that the current geometry driven by the foreshock ions plays a critical role in the formation. The initial gyrophase of foreshock ions, due to their specular reflection, determines whether they can cross the DD. When many of the foreshock ions cannot cross the DD and the local current they drive increases the field strength at the DD, the enhanced field strength inhibits more foreshock ions from crossing the DD, further enhancing the local current. This feedback loop promotes the growth of the compressional structure. Such foreshock ion-driven compressional structures can result in dynamic pressure enhancements in the magnetosheath, leading to magnetosheath jets. Our study enables prediction of the location and formation probability of such compressional structures and their potential geoeffectiveness.

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来源期刊
Journal of Geophysical Research: Space Physics
Journal of Geophysical Research: Space Physics Earth and Planetary Sciences-Geophysics
CiteScore
5.30
自引率
35.70%
发文量
570
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