Comparison of Trends in Various Parameters of the F22 Layer

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Resumo

Estimates of the long-term changes in the ionospheric F2-layer parameters (slab thickness, total electron content, height, and maximal electron concentration) are presented and mutually compared. It is shown that these estimates mutually agree and show that both foF2 and hmF2 are decreasing during the recent decades.

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Sobre autores

A. Danilov

Institute of Applied Geophysics

Autor responsável pela correspondência
Email: adanilov99@mail.ru
Rússia, Moscow

A. Konstantinova

Institute of Applied Geophysics

Email: adanilov99@mail.ru
Rússia, Moscow

Bibliografia

  1. Данилов А.Д., Константинова А.В. Долговременные вариации параметров средней и верхней атмосферы и ионосферы (обзор) // Геомагнетизм и аэрономия. Т. 60. № 4. С. 411–435. 2020. https://doi.org/10.31857/S0016794020040045
  2. Данилов А.Д., Константинова А.В., Бербенева Н.А. Тренды критической частоты foF2 по данным станций северного и южного полушарий // Геомагнетизм и аэрономия. Т. 64. № 3. С. 387–400. 2024а.
  3. Данилов А.Д. Константинова А.В., Бербенева Н.А. Долговременные тренды высоты максимума ионосферного слоя F2 // Геомагнетизм и аэрономия. Т. 64. № 4. С. 489–502. 2024б.
  4. Elias A., Alberti T., Bravo M. et al. Long-term trends in the ionospheric equivalent slab thickness: Some evidences by Working Team #1 within IAGA WGII-F / Paper presented at the 12th International Workshop on Long-Term Changes and Trends in the Atmosphere, 6-10 May 2024, Ourense, Galicia, Spain.
  5. Emmert J.T., Mannucci A.J., McDonald S.E., Vergados P. Attribution of interminimum changes in global and hemispheric total electron content // J. Geophys. Res. – Space. V. 122. № 2. P. 2424–2439. 2017. https://doi.org/10.1002/2016JA023680
  6. Jakowski N., Hoque M.M., Mielich J., Hall C. Equivalent slab thickness of the ionosphere over Europe as an indicator of long-term temperature changes in the thermosphere // J. Atmos. Sol.– Terr. Phy. V. 163. P. 91–102. 2017. https://doi.org/10.1016/j.jastp.2017.04.008
  7. Pignalberi A., Pietrella M., Pezzopane M., Nava B., Cesaroni C. The ionospheric equivalent slab thickness: A review supported by a global climatological study over two solar cycles // Space Sci. Rev. V. 218. № 4. ID 37. 2022. https://doi.org/10.1007/s11214-022-00909-z

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