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The location and rate of dayside reconnection during an interval of southward interplanetary magnetic field

机译:朝南的行星际磁场间隔期间日间重新连接的位置和速率

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Using ionospheric data from the SuperDARN radar network and a DMSP satellite we obtain a comprehensive description of the spatial and temporal pattern of day-side reconnection. During a period of southward interplanetary magnetic field (IMF), the data are used to determine the location of the ionospheric projection of the dayside magnetopause reconnection X-line. From the flow of plasma across the projected X-line, we derive the reconnection rate across 7 h of longitude and estimate it for the total length of the X-line footprint, which was found to be 10 h of longitude. Using the Tsyganenko 96 magnetic field model, the ionospheric data are mapped to the magnetopause, in order to provide an estimate of the extent of the reconnection X-line. This is found to be ~ 38 RE in extent, spanning the whole dayside magnetopause from dawn to dusk flank. Our results are compared with previously reported encounters by the Equator-S and Geotail spacecraft with a reconnecting magnetopause, near the dawn flank, for the same period. The SuperDARN observations allow the satellite data to be set in the context of the whole magnetopause reconnection X-line. The total potential associated with dayside reconnection was ~ 150 kV. The reconnection signatures detected by the Equator-S satellite mapped to a region in the ionosphere showing continuous flow across the polar cap boundary, but the reconnection rate was variable and showed a clear spatial variation, with a distinct minimum at 14:00 magnetic local time which was present throughout the 30-min study period.Key words. Magnetospheric physics (magnetopause, cusp and boundary layers; magnetosphere-ionoshere interactions) – Space plasma physics (magnetic reconnection)
机译:使用来自SuperDARN雷达网络和DMSP卫星的电离层数据,我们可以获得对日间重新连接的时空格局的全面描述。在向南的星际磁场(IMF)期间,该数据用于确定日间磁年更年期重新连接X线的电离层投影位置。从横穿投影的X线的等离子体流中,我们推导出经度7 h内的重新连接率,并针对X线足迹的总长度(其为经度10 h)进行估算。使用Tsyganenko 96磁场模型,将电离层数据映射到磁层顶,以提供对重新连接X线范围的估计。结果发现,从黎明到黄昏,整个白天的磁致绝经范围约为〜38 R E 。将我们的结果与先前报道的Equator-S和Geotail航天器在同一时期内在黎明后翼附近重新连接的磁层顶相遇的结果进行了比较。通过SuperDARN观测,可以在整个磁层顶重新连接X线的背景下设置卫星数据。与日间重新连接相关的总电势约为150 kV。由Equator-S卫星检测到的重连特征码映射到电离层中的一个区域,显示穿过极帽边界的连续流动,但是重连速率是可变的,并且显示出明显的空间变化,在当地时间14:00的最小值明显不同在整个30分钟的研究期内都存在。 关键词。 磁层物理学(磁层顶,尖顶和边界层;磁层-离子束相互作用)–空间等离子体物理学(磁重联)

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