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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The F region and topside ionosphere response to a strong geomagnetic storm at Arecibo
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The F region and topside ionosphere response to a strong geomagnetic storm at Arecibo

机译:F区和上部电离层响应在阿雷西博强烈的磁暴

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[1] We analyze the data derived from the Arecibo incoherent scatter radar measurements to investigate the response of the F region and topside ionosphere to a strong geomagnetic storm that occurred during the period of 5–6 August 2011. The meridional wind was extremely enhanced at the early stage of the storm. The peak velocity reached approximately 300 m/s at an altitude of 340 km, which is seldom seen at the Arecibo latitude. During the storm, the vertical ion drift caused by the meridional wind was positively correlated with that caused by the electric field, which is opposite to the quiet time relationship. The disturbed vertical ion drifts resulted in large ionospheric perturbations in the F and topside regions. Several collapses were observed in hmF_2 during the storm night. NmF_2 rapidly increased after the storm and then decreased around midnight. At an altitude of 610 km, the concentration of H~+ and O~+, and the ratio of H~+ over electron density all exhibited large variations. The ratio of H~+ over electron density changed from less than 10% to more than 80% in a matter of 2 hours in the morning of 6 August. One explanation for such a behavior is that vertical transport dominates over charge exchange late at night due to the lower concentration of O~+.
机译:[1]我们分析数据来源于阿雷西博非相干散射雷达测量F地区和调查的反应上部电离层强烈的磁暴5 - 8月期间发生2011. 早期的风暴。速度达到大约300 m / s高度340公里,这是很少见到的阿雷西博纬度。离子漂移引起的经向风积极与造成的安静的电场,这是相反的时间的关系。导致大的电离层扰动在F和上部区域。几个在hmF_2崩溃观察暴风雨的夜晚。暴风雨,然后减少午夜。海拔610公里,H ~ +的浓度O ~ +、H ~ + /电子的比率密度都表现出很大的变化。H ~ +的电子密度变化少超过10%到80%以上的2小时在8月6日的早晨。这种行为是垂直运输主导在深夜电荷交换低浓度的O ~ +。

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