首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Asymmetric Interaction of a Solar Wind Reconnecting Current Sheet and Its Magnetic Hole With Earth's Bow Shock and Magnetopause
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Asymmetric Interaction of a Solar Wind Reconnecting Current Sheet and Its Magnetic Hole With Earth's Bow Shock and Magnetopause

机译:不对称相互作用的太阳风重新连接电流片及其磁洞与地球的弓形激波和磁层

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We report results of our multi-spacecraft analysis of a solar wind reconnecting current sheet (RCS) and its solar wind magnetic hole (SWMH) observed on November 20, 2018. In the solar wind, the normal vector to the current sheet plane makes an angle of 32° with the Sun-Earth line. A combination of tilted current sheet plane and foreshock effects cause an asymmetric interaction with the bow shock, in which the structure arrives at the quasi-perpendicular side of the bow shock before the quasi-parallel side. The magnetic field strength inside the magnetic hole decreases by ~69 percent in the solar wind, with a similar depression rate observed inside the magnetosheath due to this structure. The solar wind flow slowdown and deflection during the bow shock crossing significantly disrupt the reconnection exhausts within the RCS. The interaction of the RCS and SWMH with the bow shock creates enhanced fluxes of accelerated electrons and ions. Plasma flow deflection in the magnetosheath also increases with the passage of the RCS. The ion density and temperature both increase within the current sheet to form a roughly pressure balanced structure. Field rotation and change in the dynamic pressure during this event modify the reconnection zones at the magnetopause and cause asymmetric inward motions in portions of the bow shock and the magnetopause boundaries (i.e., deformation). Unlike localized magnetosheath jets, an RCS and its associated SWMH in the solar wind have a global impact on the bow shock and the magnetopause.
机译:我们报告我们的multi-spacecraft分析的结果太阳风的重新连接电流片(RCS)和它的太阳风(SWMH)观察磁洞2018年11月20日。电流片平面的法向量进行32°角来观察太阳-地球。结合当前表面和倾斜前震效应导致不对称的相互作用与弓形激波,结构到达的quasi-perpendicular一边弓形激波前quasi-parallel一边。磁场强度在磁洞减少在太阳风~ 69%,类似抑郁率内观察到由于这种结构磁鞘。风流动放缓和偏转弓冲击明显破坏重新连接在RCS耗尽。交互的RCS和SWMH弓冲击产生增强的通量加速电子和离子。通过磁鞘也增加RCS。增加电流片内形成约压力平衡结构。旋转和动压的变化在这次事件中修改重新连接区在磁层内,导致不对称弓形激波的运动部分磁层边界(即变形)。与局部磁鞘飞机,RCS和相关SWMH在太阳风对弓形激波和全球影响磁层。

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