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MESSENGER and Mariner 10 flyby observations of magnetotail structure and dynamics at Mercury

机译:信使和水手10号飞越的观察在水星磁尾的结构和动力学

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The first (M1), second (M2), and third (M3) MESSENGER flybys of Mercury traversed the planet's magnetotail from 1.25 to 3.25 RM downstream of the planet, where RM is Mercury's radius (2440 km). The encounters took place under northward, southward, and variable-polarity interplanetary magnetic field (IMF), respectively. The magnetic field strength B in Mercury's magnetotail follows a power law decrease with increasing antisunward distance IXI, B~|X|~G, with G varying from -5.4 for northward to -1.6 for southward IMF. Low-latitude boundary layers (LLBLs) containing strong northward magnetic field were detected at the tail flanks during two of the flybys. The observed thickness of the LLBL was ~33% and 16% of the radius of the tail during M1 and M3, respectively, but the boundary layer was completely absent during M2. Clear signatures of tail reconnection are evident in the M2 and M3 magnetic field measurements. Plasmoids and traveling compression regions were observed during M2 and M3 with typical durations of~1-3 s, suggesting diameters of ~500-1500 km. Overall, the response of Mercury's magnetotail to the steady southward IMF during M2 appeared very similar to steady magnetospheric convection events at Earth, which are believed to be driven by quasi-continuous reconnection. In contrast, the M3 measurements are dominated by tail loading and unloading events that resemble the large-scale magnetic field reconfigurations observed during magnetospheric substorms at Earth.
机译:第一个(M1),第二个(M2),和第三(M3)信使飞越水星的遍历从1.25到3.25地球磁尾RM下游的星球,RM是水星半径(2440公里)。向北,向南,variable-polarity行星际磁场(IMF),分别。水星的磁尾遵循幂律减少与增加antisunward距离IXI, B ~ | | X ~ G, G不同从-5.4向北,向南-1.6国际货币基金组织(IMF)。包含强烈边界层(LLBLs)向北磁场检测的在两个飞越尾巴侧翼。观察厚度LLBL ~ 33%和16%半径的尾巴在M1, M3,分别,但边界层在M2完全缺席。尾巴重新连接在M2和M3很明显磁场测量。旅行压缩区域观察在M2和M3 ~ 1 - 3年代典型的持续时间,建议~ 500 - 1500公里的直径。水星的磁尾的反应在M2出现非常稳定的国际货币基金组织(IMF)向南类似于稳定的磁性层的对流在地球事件,这被认为是驱动的由准连续重新连接。M3测量是由尾加载和卸载事件类似大规模磁场重新配置需要观察在磁层亚暴的地球。

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