Variations in thermosphere composition and ionosphere total electron content under 'geomagnetically quiet' conditions at solar-minimum

We conducted observational and modeling studies of thermospheric composition and ionospheric total electron content (TEC) variations during two geomagnetically quiet periods (maximum Kp = 1.7) at solar minimum. Daytime thermospheric O and N2 column density ratio (∑O/N2) observed by Global-scale Observations of the Limb and Disk and TEC from a network of ground-based Global Navigation Satellites System receivers both exhibited large (∼30% of reference values) and long-lived (5-11 h) day-to-day variations in roughly the same mid-latitude geographic regions. Numerical simulations replicated the observed variability, though not perfectly. Analysis of the simulations suggested that the variations were mainly generated in the high-latitudes and were subsequently advected equatorward and westward. When high-latitudes input was turned off in simulations, the variations were negligible. This suggested the potentially important role of high-latitude geomagnetic forcing in thermospheric composition and ionospheric density variations at mid-latitudes even during some "geomagnetically quiet" periods at solar-minimum.

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Related Dataset #1 : TEC data

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Publication Date 2021-06-16T00:00:00
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Metadata Date 2025-07-11T16:14:40.112288
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Metadata Language eng; USA
Suggested Citation . (2021). Variations in thermosphere composition and ionosphere total electron content under 'geomagnetically quiet' conditions at solar-minimum. UCAR/NCAR - Library. https://n2t.org/ark:/85065/d7tx3jsz. Accessed 14 January 2026.

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