Multi-instrument observations of ionospheric super plasma bubbles in the European longitude sector during the 23-24 April 2023 severe geomagnetic storm

This study’s objective is to better specify the rare occurrence of super equatorial plasma bubbles in particular to the European longitude sector, detailing their spatio-temporal evolution, and better understanding pre-conditions for their development. Our comprehensive multi-instrument analysis combined ground-based and space observations from GNSS, ionosondes, and several satellite missions (COSMIC-2, GOLD, Swarm). We have investigated the ionospheric response to the 23–24 April 2023 severe geomagnetic storm and have shown the formation of super plasma bubbles expanding from equatorial latitudes to middle latitudes in the European/African sector during the main phase of the storm. Formation of these super bubbles was associated with storm-induced prompt penetration electric fields. We found that the area affected by the formation of numerous plasma bubbles covered more than 5000 km ranging from 30°W to 30°E in the Atlantic/African sector. The bubbles also had an impressive north-south extension, reaching as far poleward as ~30°–35° latitude in both hemispheres. After 20 UT on 23 April 2023, the zone with equatorial ionospheric irregularities reached Northern Africa, the Iberian Peninsula (Spain, Portugal) and the Mediterranean Sea in southern Europe, including areas of the Canary Islands (Spain) and the Azores and Madeira Islands (Portugal) in the Atlantic Ocean. The ionospheric irregularities persisted for 5–6 h and began to fade after ~01 UT on 24 April 2023. COSMIC-2 scintillation measurements showed intense amplitude scintillations (S4 above 0.8) across this entire region, indicating presence of small-scale ionospheric irregularities inside the extended plasma bubbles. During this storm, EGNOS (European Geostationary Navigation Overlay Service) experienced degraded performance, with significant navigation errors recorded at its southernmost stations in Northern Africa, Spain, Portugal, and their territories, which were affected by super plasma bubbles. This paper presents conclusive observational evidence showing development of the super plasma bubbles significantly expanding into the southern Europe and northern Africa region under geomagnetically disturbed conditions in April 2023.

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Related Links

Related Dataset #1 : Electronic Space Weather upper atmosphere database (eSWua) - GNSS scintillation data, version 1.0

Related Dataset #2 : COSMIC-2 Data Products

Related Dataset #3 : Geomagnetic Kp index

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Author Zakharenkova, Irina
Cherniak, Iurii
Braun, John J.
Wu, Qian
Sokolovskiy, Sergey
Hunt, Douglas C.
Weiss, Jan-Peter
Publisher UCAR/NCAR - Library
Publication Date 2025-03-04T00:00:00
Digital Object Identifier (DOI) Not Assigned
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Topic Category geoscientificInformation
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Metadata Date 2025-07-10T19:53:43.558041
Metadata Record Identifier edu.ucar.opensky::articles:43053
Metadata Language eng; USA
Suggested Citation Zakharenkova, Irina, Cherniak, Iurii, Braun, John J., Wu, Qian, Sokolovskiy, Sergey, Hunt, Douglas C., Weiss, Jan-Peter. (2025). Multi-instrument observations of ionospheric super plasma bubbles in the European longitude sector during the 23-24 April 2023 severe geomagnetic storm. UCAR/NCAR - Library. https://n2t.net/ark:/85065/d7sx6jmj. Accessed 05 August 2025.

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