Longitudinal variations of ionospheric responses to the February and April 2023 geomagnetic storms over American and Asian sectors

ADVANCES IN SPACE RESEARCH(2024)

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摘要
This paper investigates the ionospheric responses to the February and April 2023 geomagnetic storms using Total Electron Content (TEC) derived from the 10 Global Navigation Satellite System (GNSS) stations at the transition of low to mid -latitudes (Approx. 20 - 30 degrees N) across different longitudes in the American and Asian sectors. Significant variations in both sectors were recorded during the recovery phase and were mainly attributed to the Prompt Penetration Electric Field (PPEF), Disturbance Dynamo Electric Field (DDEF) and the thermospheric neutral composition changes as O/N2 depletion. Similarly, the American and Asian sectors showed TEC enhancements, primarily attributed to the PPEF, during the main phase of the April storm. The negative TEC variations during the recovery phase were observed due to the DDEF and changes in O/N2. In the Asian sector, positive and negative variations were recorded over Pakistan and China, respectively, during the main phase of the April storm. These variations resulted in high and low concentrations of the O/N2 ratio due to Magnetosphere -Ionosphere -Thermosphere coupling. (c) 2023 COSPAR. Published by Elsevier B.V. All rights reserved.
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Ionosphere,GNSS TEC,Geomagnetic storms,Prompt Penetration Electric Field,O/N 2
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