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Radial and Local Time Variations in the Thickness of Jupiter's Magnetospheric Current Sheet

机译:Radial and Local Time Variations in the Thickness of Jupiter's Magnetospheric Current Sheet

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摘要

The magnetic field observations from the Galileo, Ulysses, Voyager 1 and 2, and Pioneer 10 and 11 spacecraft are analyzed to understand the structures and thickness of the Jovian magnetospheric current sheet. Using a new technique that can determine the motion of the spacecraft relative to the current sheet, we have built the first global map of the thickness of the Jovian magnetospheric current sheet. We show that the current sheet thickness in Jupiter's magnetosphere is not equal everywhere but changes systematically with both radial distance and local time. The extremely thin dawnside current sheet appears to be linked to the stresses imposed by the solar wind on the open magnetic flux housed in the lobes of the magnetosphere in that sector. We also show evidence of a mostly closed magnetosphere in the dusk sector. We show that the current sheet thickness asymmetries likely arise from a field and plasma convection system set up by the reconnection of the interplanetary magnetic field with that of Jupiter.
机译:从伽利略磁场观测,尤利西斯,旅行者1号和旅行者2号,先锋10和11所示飞船进行分析了解木星的结构和厚度磁性层的电流片。技术可以确定的运动航天器相对于当前的表,我们有建立的第一个全球地图的厚度木星的磁层电流片。当前在木星的薄板厚度磁气圈不是处处相等,而是变化系统的径向距离和当地时间。表似乎与压力有关对开放磁场由太阳风通量安置在磁气圈的叶这个部门。磁气圈在黄昏部门关闭。当前的薄板厚度不对称可能源于一个字段和等离子体对流系统设置的重新连接行星际磁场的木星。

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