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Investigation of the Post-Sunset Extra Electron Density Peak Poleward of the Equatorial Ionization Anomaly Southern Crest

机译:Investigation of the Post-Sunset Extra Electron Density Peak Poleward of the Equatorial Ionization Anomaly Southern Crest

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摘要

The Global-scale observation of limb and disk mission observed an extra electron density (Ne) peak after sunset at approximately 30°S near 40°W on 4 November 2019, which is poleward and immediately next to the southern equatorial ionization anomaly (EIA) crest. This Ne peak is different from previously reported mid-latitude peaks that occur at all local times. The Whole Atmosphere Community Climate Model-eXtended captures this phenomenon. Model diagnostic analysis reveals that the decrease of Ne and hmF2 between 15° and 25°S makes Ne near 30°S appear as an extra density peak relative to the southern EIA crest. Transport by poleward meridional wind decreases Ne between 15° and 25°S. Moreover, the upward E × B drifts due to pre-reversal enhancement lift the plasma between the dip equator and 15°S but do not affect Ne much between 15° and 25°S with a low drift speed. Comparison with days without the extra peak shows the importance of E × B drift latitudinal variations on the extra peak formation. This study provides new insights into the dynamic variability of the nighttime ionosphere.
机译:全球范围内观察的肢体和磁盘任务观察到一个额外的电子密度(Ne)峰日落之后在40°附近大约30°S W2019年11月4日,向极立即旁边的南赤道电离异常(EIA)波峰。与之前报道的中纬度地区不同山峰在所有地方的时间发生。大气气候Model-eXtended社区抓住了这一现象。分析表明,东北的减少和hmF215°25°和30°附近使Ne年代出现一个额外的密度峰值相对于南方EIA嵴。减少15°和25°之间的年代。向上由于pre-reversal E×B的雪堆增强等离子体之间的倾斜赤道和15°S但不影响不太多15°和25°S低漂移速度。没有额外的峰值显示与天E×B漂移纬度的重要性变化的额外峰的形成。动态研究提供了新的视角夜间电离层的变化。

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