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Ionospheric responses to the 21 August 2017 great American solar eclipse - A multi-instrument study

机译:2017年8月21日的电离层响应伟大的美国太阳日食 - 一种多仪器研究

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Herein, we report on the ionospheric responses to a total solar eclipse that occurred on 21 August 2017 over the US region. Ground-based GPS total electron content (TEC) data along with ground-based measurements (Millstone Hill Observatory (MHO) and digital ionosondes) and space-based measurements (COSMIC radio occultation (RO) technique) allowed us to identify eclipse-associated ionospheric responses. TEC data at ~20°, ~30°, and ~40°N latitudes from the west to east longitudes show not only considerable depression but also wave-like characteristics in TEC both in the path of totality and away from it, exclusively on the day of eclipse. Interestingly, the observed depressions are associated with lesser (higher) magnitudes at stations over which the solar obscuration percentage was meager (significant), a clear indication of bow-wave-like features. The MHO observes a 30% reduction in F_2-layer electron densities between 180 and 220 km on eclipse day. Ionosonde-scaled parameters over Boulder (40.4°N, 100°E) and Austin (30.4°N, 94.4°E) show a significant decrease in critical frequencies while an altitude elevation is seen in the virtual heights of the F-layer only during the eclipse day and that decreases are associated with wave-like signatures, which could be attributed to eclipse-generated waves. The estimated vertical electron density profile from the COSMIC RO-based technique shows a maximum depletion of 40%. Relatively intense and moderate depths of TEC depression, considerable reductions in the F_2-layer electron densities measured by the MHO and COSMIC RO-measured densities at the F2-layer peak, and elevations in virtual heights and reduction in the critical frequencies measured by ionosondes during the eclipse day could be due to the eclipse-induced dynamical effects such as gravity waves (GWs) and their associated electro-dynamical effects (modification of ionospheric electric fields due to GWs).
机译:在此,我们报告了对2017年8月21日在美国地区发生的总日食的电离层响应。基于地面的GPS全电子含量(TEC)数据以及基于地面的测量(MILLSTONE HILL Observatory(MHO)和数字IONOSONDES)和基于空间的测量(宇宙无线电掩星(RO)技术)允许我们识别Eclipse相关的电离层回复。 TEC数据在〜20°,〜30°和〜40°N从西部到东部的延伸,不仅表现出相当大的凹陷,而且在整个抑郁症中,在整个和远离它的情况下,TEC都是波浪状的特征,专门从事日食日。有趣的是,观察到的凹陷与太阳遮蔽百分比微薄(显着)的电台上的较小(更高)的凹陷相关,清楚地指示了弓波状特征。 MHO观察到在Eclipse天的180到220公里之间的F_2层电子密度减少30%。巨石上的IONOSONDE-SCALED参数(40.4°N,100°E)和奥斯汀(30.4°N,94.4°E)显示临界频率的显着降低,而在仅在F层的虚拟高度中看到高度高度Eclipse日期和减少与波状签名相关联,这可能归因于Eclipse生成的波。来自宇宙RO的技术的估计的垂直电子密度曲线显示出40%的最大耗尽。 TEC凹陷的相对强烈和中等深度,在F2层峰处测量的F_2层电子密度的相当长,在F2层峰值处测量的F_2层电子密度,以及虚拟高度的升高和通过IONOSondes测量的临界频率降低Eclipse Day可能是由于Eclipse诱导的动态效果,例如重力波(GWS)及其相关的电动动力学效果(由于GWS而改变电离层电场)。

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