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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Small Spatial‐Scale Field‐Aligned Currents in the Plasma Sheet Boundary Layer Surveyed by Magnetosphere Multiscale Spacecraft
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Small Spatial‐Scale Field‐Aligned Currents in the Plasma Sheet Boundary Layer Surveyed by Magnetosphere Multiscale Spacecraft

机译:小空间的规模场量一致的趋势调查的等离子体片边界层磁气圈多尺度的宇宙飞船

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摘要

Field‐aligned currents play a significant role in the magnetosphere‐ionosphere coupling. With the multipoint measurements and the advanced instruments of the four Magnetosphere Multiscale spacecraft, we estimate the fine structure of field‐aligned currents in the plasma sheet boundary layer (PSBL) by using the plasma moment data from the Fast Plasma Investigation. Those fine field‐aligned currents under higher temporal resolutions could be quite different from that under the lower temporal resolution: Bipolar current signals can be observed under higher resolutions, while no current signal appears under the lower resolution; higher current density magnitude and shorter time scale of the current layer under higher resolutions are observed than that under the lower resolution. The essential reason could be that the spatial scale of some field‐aligned current layers in the PSBL is too small to be found by low temporal measurements; thus, our results demonstrate the necessity of high data resolutions in resolving the subproton‐scale structure of the field‐aligned current and dynamics in the PSBL.
机译:场对齐洋流的形成中起着重要作用磁气圈检测电离层耦合。多点测量和先进的仪器的四个磁气圈多尺度宇宙飞船,我们估计的精细结构在等离子体单场量一致的电流使用等离子体边界层(PSBL)的时刻快速等离子体的数据调查。好现场检测电流在更高的时间保持一致决议可能会完全不同在较低的时间分辨率:双相电流信号下能观察到更高决议,虽然没有出现电流信号在低分辨率下;密度大小和短时间的规模当前层在更高的分辨率比在低分辨率下观察到。可能是空间的基本原因一些领域的规模还是当前层对齐PSBL太小,被低时间发现测量;高分辨率数据解析的必要性subproton检测结构的规模场量电流和动态PSBL保持一致。

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