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Solar wind dependence of ion parameters in the Earth's magnetospheric region calculated from CLUSTER observations

机译:根据CLUSTER观测值计算的地球磁层区域离子参数对太阳风的依赖性

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摘要

Moments calculated from the ion distributions (~0-40 keV) measured by the Cluster Ion Spectrometry (CIS) instrument are combined with data from the Cluster Flux Gate Magnetometer (FGM) instrument and used to characterise the bulk properties of the plasma in the near-Earth magnetosphere over five years (2001-2005). Results are presented in the form of 2-D xy, xz and yz GSM cuts through the magnetosphere using data obtained from the Cluster Science Data System (CSDS) and the Cluster Active Archive (CAA). Analysis reveals the distribution of ~0-40 keV ions in the inner magnetosphere is highly ordered and highly responsive to changes in solar wind velocity. Specifically, elevations in temperature are found to occur across the entire nightside plasma sheet region during times of fast solar wind. We demonstrate that the nightside plasma sheet ion temperature at a downtail distance of ~12 to 19 Earth radii increases by a factor of ~2 during periods of fast solar wind (500-1000 km s~(-1)) compared to periods of slow solar wind (100-400 km s~(-1)). The spatial extent of these increases are shown in the xy, xz and yz GSM planes. The results from the study have implications for modelling studies and simulations of solar-wind/magnetosphere coupling, which ultimately rely on in situ observations of the plasma sheet properties for input/boundary conditions.
机译:由簇离子光谱仪(CIS)仪器测得的离子分布(〜0-40 keV)计算出的矩与簇磁通门磁力仪(FGM)仪器的数据相结合,用于表征附近等离子体的整体性质-五年(2001-2005年)的地球磁层。结果以2-D xy,xz和yz的形式呈现,GSM使用从集群科学数据系统(CSDS)和集群活动档案库(CAA)获得的数据穿越磁层。分析表明,内部磁层中〜0-40 keV离子的分布是高度有序的,并且对太阳风速的变化具有高度的响应能力。具体而言,发现在太阳风快速的时候,整个夜间等离子体板区域的温度都会升高。我们证明,在太阳风较快的时期(500-1000 km s〜(-1)),与地球半径约12到19的向下距离处的夜间等离子体薄板离子温度增加了约2倍。太阳风(100-400 km s〜(-1))。这些增加的空间范围在xy,xz和yz GSM平面中显示。这项研究的结果对太阳风/磁层耦合的建模研究和模拟具有重要意义,而太阳风/磁层耦合最终取决于对输入/边界条件的等离子片特性的原位观察。

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