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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Changes in the Magnetic Field Topology and the Dayside/ Nightside R_(eco)nnection Rates in Response to a Solar Wind Dynamic Pressure Front: A Case Study
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Changes in the Magnetic Field Topology and the Dayside/ Nightside R_(eco)nnection Rates in Response to a Solar Wind Dynamic Pressure Front: A Case Study

机译:磁场拓扑和的变化昼/夜侧R_ (eco) nnection率响应太阳风动压前:一个案例研究

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One of the most significant observations associated with a sharp enhancement in solar wind dynamic pressure, P_(SW), is the poleward expansion of the auroral oval and the closing of the polar cap. The polar cap shrinking over a wide range of magnetic local times (MLTs), in connection with an observed increase in ionospheric convection and the transpolar potential, led to the conclusion that the nightside reconnection rate is significantly enhanced after a pressure front impact. However, this enhanced tail reconnection has never been directly measured. We demonstrate the effect of a solar wind dynamic pressure front on the polar cap closure, and for the first time, measure the enhanced reconnection rate in the magnetotail, for a case occurring during southward background Interplanetary Magnetic Field (IMF) conditions. We use Polar Ultra-Violet Imager (UVI) measurements to detect the location of the openclosed field line boundary, and combine them with Assimilative Mapping of Ionospheric Electrodynamics (AMIE) potentials to calculate the ionospheric electric field along the polar cap boundary, and thus evaluate the variation of the dayside/nightside reconnection rates. We find a strong response of the polar cap boundary at all available MLTs, exhibiting a significant reduction of the open flux content. We also observe an immediate response of the dayside reconnection rate, plus a phased response, delayed by ~15-20 min, of the nightside reconnection rate. Finally, we provide comparison of the observations with the results of the Open Geospace General Circulation Model (OpenGGCM), elucidating significant agreements and disagreements.
机译:一个最重要的观察与太阳风急剧增强动态压力,P_ (SW),是两极扩张的极光椭圆和关闭极冠。极冠萎缩了广泛的磁性当地时间(mlt)与观察到的增加电离层对流和经过北极的潜力,导致的结论阴面重联率显著增强后的压力面前的影响。这个增强的尾巴重新连接从来没有直接测量。太阳风动态压力面前极地盖关闭,第一次测量磁重联率增强,案件发生在南背景行星际磁场(IMF)的条件。我们用极紫外成像仪(紫外线指数)测量检测的位置开闭式边界线,并结合他们电离层同化映射电动力学(女朋友)势来计算电离层电场极性限制边界,因此评价的变化昼/夜侧重联率。极冠边界的强烈反应所有可用的传输,具有显著减少开放通量的内容。观察的光面的立即响应重联率,加上一个分阶段的反应,推迟了~ 15 - 20分钟,阴面重联率。开着的结果的观察地球空间环流模式(OpenGGCM),阐明重要的协议和分歧。

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