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  The role of the inner radiation belt dynamic in the generation of auroral-type sporadic E-layers over south American magnetic anomaly

Da Silva, L. A., Shi, J., Resende Chagas, L. C., Agapitov, O. V., Alves, L. R., Batista, I. S., Arras, C., Vieira, L. E., Deggeroni, V., Marchezi, J. P., Wang, C., Moro, J., Inostroza, A., Li, H., Medeiros, C., Cardoso, F. R., Jauer, P., Alves, M. V., Chen, S. S., Liu, Z., Denardini, C. M., Gonzalez, W. (2022): The role of the inner radiation belt dynamic in the generation of auroral-type sporadic E-layers over south American magnetic anomaly. - Frontiers in Astronomy and Space Sciences, 9, 970308.
https://doi.org/10.3389/fspas.2022.970308

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Da Silva, L. A.1, Author
Shi, J1, Author
Resende Chagas, Laysa Cristina2, Author              
Agapitov, O. V.1, Author
Alves, L. R.1, Author
Batista, I. S.1, Author
Arras, Christina2, Author              
Vieira, L. E.1, Author
Deggeroni, V.1, Author
Marchezi, J. P.1, Author
Wang, C.1, Author
Moro, J.1, Author
Inostroza, A.1, Author
Li, H.1, Author
Medeiros, C.1, Author
Cardoso, F. R.1, Author
Jauer, P.1, Author
Alves, M. V.1, Author
Chen, S. S.1, Author
Liu, Z.1, Author
Denardini, C. M.1, AuthorGonzalez, W.1, Author more..
Affiliations:
1External Organizations, ou_persistent22              
21.1 Space Geodetic Techniques, 1.0 Geodesy, Departments, GFZ Publication Database, Deutsches GeoForschungsZentrum, ou_146025              

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 Abstract: The dynamics of the electron population in the Earth’s radiation belts affect the upper atmosphere’s ionization level through the low-energy Electron Precipitation (EP). The impact of low-energy EP on the high-latitude ionosphere has been well explained since the 1960’s decade. Conversely, it is still not well understood for the region of the South American Magnetic Anomaly (SAMA). In this study, we present the results of analysis of the strong geomagnetic storm associated with the Interplanetary Coronal Mass Ejection (May 27-28, 2017). The atypical auroral sporadic E layers (Esa) over SAMA are observed in concomitance with the hiss and magnetosonic wave activities in the inner radiation belt. The wave-particle interaction effects have been estimated, and the dynamic mechanisms that caused the low-energy EP over SAMA were investigated. We suggested that the enhancement in pitch angle scattering driven by hiss waves result in the low-energy EP (≥10 keV) into the atmosphere over SAMA. The impact of these precipitations on the ionization rate at the altitude range from 100 to 120 km can generate the Esa layer in this peculiar region. In contrast, we suggested that the low-energy EP (≤1 keV) causes the maximum ionization rate close to 150 km altitude, contributing to the Esa layer occurrence in these altitudes.

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 Dates: 2022-09-282022
 Publication Status: Finally published
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 Identifiers: DOI: 10.3389/fspas.2022.970308
GFZPOF: p4 T1 Atmosphere
OATYPE: Gold Open Access
GFZPOFCCA: p4 CARF RemSens
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Title: Frontiers in Astronomy and Space Sciences
Source Genre: Journal, SCI, Scopus, oa
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Pages: - Volume / Issue: 9 Sequence Number: 970308 Start / End Page: - Identifier: CoNE: https://gfzpublic.gfz-potsdam.de/cone/journals/resource/202202142
Publisher: Frontiers