AI Article Synopsis

  • This study analyzes the response of the Brazilian ionosphere to geomagnetic storms driven by Corotating Interaction Regions (CIR) and High-Speed Solar Wind Streams (HSS) during 2016-2017.
  • It investigates Vertical Total Electron Content (VTEC) variations across three regions: equatorial, northern crest, and southern crest of the Equatorial Ionization Anomaly, noting both enhancements and depletions of up to 30 and 20 TECu, respectively.
  • The research also highlights the timing of these variations, the role of electric fields in the ionosphere, and includes new catalogs for low-latitude ionospheric storms useful for space weather and modeling.

Article Abstract

This study investigates the Brazilian low-latitude ionospheric response to CIR/HSS-driven geomagnetic storms during the declining phase of solar cycle 24, from 2016 to 2017. In this period the geomagnetic storms were mostly moderate, SymH ≈ -72 nT, AE ≈ 1580 nT, Vsw ≈ 690 km/s and lasted, on average, for 6 days. We analyze the variations in Vertical Total Electron Content (VTEC) at three representative regions: bele, over the equatorial region; boav and cuib, at the northern and southern crests of the Equatorial Ionization Anomaly. Our findings reveal the role of High-Speed Solar Wind Streams and Corotating Interaction Region-driven geomagnetic storms. The VTEC intensifications were up to 30 TECu, during the daytime and nighttime. Additionally, three categories of nighttime enhancements were observed and analyzed with distinct characteristics and levels of pre-reversal strengthening; Depletions up to 20 TECu also occurred during the day and nighttime. The delay between the storm commencement and the positive and negative variations were, on average, 7 and 20 hours, respectively. We discuss the Prompt Penetration Electric Fields and Disturbance Dynamo Electric Fields following the magnetic reconnection between Earth's and interplanetary magnetic field, using observational data and modeling. Furthermore, this study presents catalogs of low-latitude ionospheric storms, providing detailed information for space weather applications and ionospheric modeling.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11604352PMC
http://dx.doi.org/10.1029/2024SW003873DOI Listing

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