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Solar Wind-Magnetosphere Coupling During Radial Interplanetary Magnetic Field Conditions: Simultaneous Multi-Point Observations

机译:太阳能在径向Wind-Magnetosphere耦合行星际磁场条件:同时多点观测

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In-situ spacecraft missions are powerful assets to study processes that occur in space plasmas. One of their main limitations, however, is extrapolating such local measurements to the global scales of the system. To overcome this problem at least partially, multi-point measurements can be used. There are several multi-spacecraft missions currently operating in the Earth's magnetosphere, and the simultaneous use of the data collected by them provides new insights into the large-scale properties and evolution of magnetospheric plasma processes. In this work, we focus on studying the Earth's magnetopause (MP) using a conjunction between the Magnetospheric Multiscale and Cluster fleets, when both missions skimmed the MP for several hours at distant locations during radial interplanetary magnetic field (IMF) conditions. The observed MP positions as a function of the evolving solar wind conditions are compared to model predictions of the MP. We observe an inflation of the magnetosphere (~0.7 R_E), consistent with magnetosheath pressure decrease during radial IMF conditions, which is less pronounced on theAA flank (< 0.2 R_E). There is observational evidence of magnetic reconnection in the subsolar region for the whole encounter, and in the dusk flank for the last portion of the encounter, suggesting that reconnection was extending more than 15 R_E. However, reconnection jets were not always observed, suggesting that reconnection was patchy, intermittent or both. Shear flows reduce the reconnection rate up to ~30% in the dusk flank according to predictions, and the plasma β enhancement in the magnetosheath during radial IMF favors reconnection suppression by the diamagnetic drift.
机译:现场航天器任务是强大的资产研究过程,发生在空间等离子体。然而,他们的主要限制推断这样的本地测量全球尺度的系统。问题至少部分,多点可以使用测量。目前操作multi-spacecraft任务地球的磁气圈,同时使用收集的数据提供了新的见解和大规模属性磁性层的等离子体的演化过程。这项工作,我们专注于研究地球的磁(MP)使用之间的结合磁性层的多尺度和集群舰队,当任务脱脂议员数在径向小时在遥远的地点行星际磁场(IMF)的条件。观察到的像素位置的函数太阳风条件而发展模型预测的议员。通货膨胀的磁气圈(~ 0.7 R_E),符合磁鞘压力减少在径向国际货币基金组织的条件,这是更少明显theAA侧面(R_E p < 0.2)。磁场重联的观测证据整个热带的地区,在黄昏侧面的最后部分遇到,建议重新连接延长超过15 R_E。飞机并不总是观察,表明重新连接是不完整的,间歇性的或两者兼而有之。剪切流动减少重联率~ 30%的黄昏侧根据预测,磁鞘和血浆β增强在径向IMF支持重新连接抑制抗磁性漂移。

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