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Evidence for the Significant Differences in Response Times of Equatorial Ionization Anomaly Crest Corresponding to Plasma Fountains During Daytime and Post-Sunset Hours

机译:显著差异的证据赤道电离异常的响应时间峰值对应于血浆中喷泉白天,天际小时

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Based on 10 years' (2010–2019) of vertical total electron content (VTEC) data from Ahmedabad (23.0°N, 72.6°E, dip angle 35.2°) and campaign based OI 630.0 nm airglow intensity measurements from Mt. Abu (24.6°N, 72.7°E, dip angle 38.0°), it is shown that plasma density over the equatorial ionization anomaly (EIA) crest region increases in varying degrees during post-sunset hours (2000–2100 LT) in magnetically quiet periods. The post-sunset peak in VTEC precedes the corresponding peak in airglow intensity. By comparing post-sunset VTEC enhancements with ionosonde observations from Tirunelveli (8.7°N, 77.7°E, dip angle 1.7°), it is shown that pre-reversal enhancement (PRE) of the zonal electric field causes these enhancements over the EIA crest region. These observations are supported by TEC measurements by GAGAN (GPS Aided Geo Augmented navigation), the Indian Satellite-based Augmentation System (SBAS). Comparison of average VTEC variations with global empirical model drifts reveals that the post-sunset enhancements in VTEC occurs ~1.7 h after the PRE and are significant only during December solstice and equinoctial months in high solar activity years similar to seasonal variations in PRE amplitudes. This time delay (response time of EIA crest) is almost half compared to the average response time (3–4 h) associated with the daytime fountain. Based on the latitudinal gradient in SBAS-TEC, it is proposed that the PRE drives plasma from 5°N to 10°N magnetic latitudes to the EIA crest region leading to shorter response time. These results show the important role of the PRE in conditioning the EIA crest region.
机译:基于10年(2010 - 2019)的垂直从艾哈迈达巴德电子内容(VTEC)数据(23.0°N, 72.6°E,倾角35.2°)和运动基于OI 630.0 nm大气光强度测量从太。阿布(24.6°N, 72.7°E,倾角38.0°),结果表明,等离子体密度的赤道电离异常(EIA)波峰区域在不同程度上增加在天际2000 - 2100小时(LT)磁安静期。相应的大气光强度峰值。比较天际VTEC增强从Tirunelveli ionosonde观察(8.7°N,77.7°E,倾角1.7°),它是显示pre-reversal增强(前)的区域电场会导致这些增强了EIA嵴区域。支持通过测量TEC GAGAN (GPS辅助谈话Geo增强导航),印度卫星增强系统(sba)。比较平均VTEC与全球变化经验模型揭示了天际增强VTEC发生~ 1.7 h前和后只在非常重要冬至,分点月高太阳活动年类似的季节性PRE振幅的变化。(环评波峰的响应时间)几乎是一半相比平均响应时间(3 - 4小时)与白天喷泉。纬向梯度SBAS-TEC,它是提出前驱动等离子体从5°N10°N磁纬度EIA嵴区域导致更短的响应时间。显示之前的重要作用调节EIA嵴区域。

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