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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Investigation of Unusual Solar Flare Effect on the Global Ionospheric Current System
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Investigation of Unusual Solar Flare Effect on the Global Ionospheric Current System

机译:调查不寻常的太阳耀斑影响全球电离层电流系统

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摘要

In this paper, we present our investigation of geomagnetic crochets observed following the X-class solar flare events on 9 August 2011 (X6.9) and 24 September 2011 (X1.4). Both events occurred during geomagnetically quiet times (Kp ≤ 3). The analysis of the geomagnetic crochets near the magnetic equator revealed very different responses in the ionospheric currents between these two events. During the 9 August 2011 event, a reduction of the eastward equatorial electrojet was observed in all daytime stations studied, while the daytime eastward equatorial electrojet was observed to enhance during the 24 September 2011 event. A spherical harmonic analysis was applied to the observations from nearly 160 ground stations at middle and low latitudes to derive the equivalent ionospheric current system for the geomagnetic crochets as well as background solar-quiet (Sq) variations for both events. The equivalent current system of the geomagnetic crochets for the 24 September 2011 event showed a similar pattern with the background Sq current system and thus can be attributed to the enhancement of Sq currents. However, the crochet current system for the 9 August 2011 event revealed a different pattern from the background Sq current system in both Northern and Southern Hemispheres. It is suggested that unusual geomagnetic crochets during the 9 August 2011 event may be dominated by the ionospheric currents at D-region altitudes.
机译:在本文中,我们提出我们的调查的地磁钩针观察后2011年8月9日x级太阳耀斑事件(燿)和2011年9月24日(X1.4)。发生在眼睛安静的时间(Kp≤3)。分析附近的地磁钩针磁赤道透露非常不同在电离层电流之间的反应这两个事件。东赤道电喷流的减少在所有白天站研究,而白天东赤道电喷流在9月24日观察增强2011年的事件。应用于观察来自近160个地面站在中低纬度地区推导出等效电离层电流系统地磁钩针以及背景solar-quiet(平方)的变化事件。2011年9月24日的地磁钩针事件显示出了类似的模式当前系统背景平方,因此可以归因于平方洋流的增强。9然而,钩针当前系统2011年8月事件揭示了一个不同的模式从背景中当前系统在两个平方北半球和南半球。建议不寻常的地磁钩针在2011年8月9日事件可能占主导地位由电离层d层的电流海拔。

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