Occurrence and Modeling Examination of Sporadic‐<i>E</i> Layers in the Region of the South America (<i>Atlantic</i>) Magnetic AnomalyFredson Conceição‐Santos, Alexander J. Carrasco, M. T. A. H. Muella et al.|Journal of Geophysical Research Space Physics|2019Cited by 25
Equatorial Ionization anomaly disturbances (EIA) triggered by the May 2024 solar Coronal Mass Ejection (CME): The strongest geomagnetic superstorm in the last two decadesP. R. Fagundes, Giórgio Arlan da Silva Picanço, V. G. Pillat et al.|Advances in Space Research|2025Cited by 19
Thermospheric Meridional Wind Control on Equatorial Scintillations and the Role of the Evening F-Region Height Rise, E × B Drift Velocities and F2-Peak Density GradientsM. T. A. H. Muella, Y. Sahai, E. R. de Paula et al.|Surveys in Geophysics|2010Cited by 15
On the role of tidal winds in the descending of the high type of sporadic layer (Esh)Fredson Conceição‐Santos, Alexander J. Carrasco, M. T. A. H. Muella et al.|Advances in Space Research|2019Cited by 15
Evidence of anti-correlation between sporadic (Es) layers occurrence and solar activity observed at low latitudes over the Brazilian sectorPedro A. Fontes, P. R. Fagundes, M. T. A. H. Muella et al.|Advances in Space Research|2023Cited by 14