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Temporal and Spatial Development of TEC Enhancements during Substorms

机译:TEC时间和空间发展增强在亚暴的

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Total electron count (TEC) enhancements due to space weather are a threat to communications and global positioning systems. It is known that TEC enhancements occur during magnetic storms and can cover large areas for many hours, but it is also not uncommon for TEC enhancements on the order of a few TEC units to occur during substorms. Although much is known about storm-associated TECs, the temporal and spatial characteristics of substorm-associated TECs are not well established. By combining two-dimensional maps of TECs over North America and Greenland and with maps of ionospheric currents derived with the spherical elementary current method [Weygand et al., 2011], we investigate the temporal and spatial changes of TEC enhancement events for both a single substorm and for multiple substorms combined using a two-dimensional superposed-epoch analysis. Both the single event analysis and the statistical analysis show an increase of TECs during the expansion phase. Substorm values of the TEC enhancements peak within 10 min after auroral onset and recover to nominal levels after about 40 min. TEC enhancements occur mainly within the nightside region 1 current system and cover millions of square kilometers. Furthermore, these enhancements appear to be associated with enhanced precipitating electron fluxes. These results address one of goals of the Space Weather Action Plan, which are to establish benchmarks for space weather events and improve modeling and prediction of their impacts on infrastructure.
机译:由于电子总数(TEC)增强通信和空间天气是一个威胁全球定位系统。增强,可以发生在磁性风暴覆盖大部分地区几个小时,但它也TEC的增强并不少见几个侦探单位在亚暴的发生。尽管storm-associated鲜为人知tec的时间和空间特征substorm-associated tec并不好建立。在北美、格陵兰岛和侦探地图的电离层电流导出球形基本电流方法[魏刚等, 2011),我们调查时间和TEC增强活动的空间变化一个亚暴和多个亚暴的使用二维superposed-epoch相结合分析。统计分析显示增加侦探在扩张阶段。TEC增强峰值后10分钟内极光发生和恢复后名义水平大约40分钟。TEC的增强主要发生在阴面地区当前系统和1覆盖数百万平方公里。这些增强功能联系在一起增强沉淀电子通量。结果地址空间天气目标之一行动计划,建立基准空间天气事件,提高建模和预测他们对基础设施的影响。

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