Comparative analysis of geomagnetic events identified by various indices

Capa

Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Somente assinantes

Resumo

We presented the results of comparative analysis of geomagnetic events identified by various indices. A previously developed technique is used to identify magnetic storms by the Dst index. As a basis for identification, we chose the previously developed method for identifying geomagnetic storms based on the Dst index. A similar method was implemented to identify geomagnetic events by the ap and AE indices. Comparative analysis includes: (1) identification of common geomagnetic events identified by various indices; (2) identification of cases when an event is a strong geomagnetic disturbance by one of the indices (Dst, ap, AE) and is not a geomagnetic event by at least one of the two remaining indices; and (3) a comparative analysis of the diurnal and seasonal distribution of the number of geomagnetic events identified by different indices.

Texto integral

Acesso é fechado

Sobre autores

K. Ratovsky

Institute of Solar-Terrestrial Physics of the Siberian Branch of the Russian Academy of Sciences

Autor responsável pela correspondência
Email: ratovsky@iszf.irk.ru
Rússia, Irkutsk

M. Klimenko

Kaliningrad Branch of the Pushkov Institute of Terrestrial Magnetism, Ionosphere and Radio Wave Propagation of the Russian Academy of Sciences

Email: ratovsky@iszf.irk.ru
Rússia, Kaliningrad

A. Vesnin

Institute of Solar-Terrestrial Physics of the Siberian Branch of the Russian Academy of Sciences

Email: ratovsky@iszf.irk.ru
Rússia, Irkutsk

K. Belyuchenko

Institute of Solar-Terrestrial Physics of the Siberian Branch of the Russian Academy of Sciences

Email: ratovsky@iszf.irk.ru
Rússia, Irkutsk

Yu. Yasyukevich

Institute of Solar-Terrestrial Physics of the Siberian Branch of the Russian Academy of Sciences

Email: ratovsky@iszf.irk.ru
Rússia, Irkutsk

Bibliografia

  1. Ратовский К.Г., Клименко М.В., Клименко В.В. и др. // Солн.-земн. физ. 2018. Т. 4. № 4. С. 32; Ratovsky K.G., Klimenko M.V., Klimenko V.V. et al. // Solar Terr. Phys. 2018. V. 4. No. 4. P. 26.
  2. Ratovsky K.G., Klimenko M.V., Yasyukevich Y.V., Klimenko V.V. // RWP (Kazan, 2019). P. 183.
  3. Ratovsky K.G., Klimenko M.V., Yasyukevich Y.V. et al. // Atmosphere. 2020. V. 11. No. 12. P. 1308.
  4. Korenkov Y.N., Klimenko V.V., Förster M. et al. // J. Geophys. Res. Space Phys. 1998. V. 103. P. 14697.
  5. Gonzalez W.D., Tsurutani B.T. Clúa, de Gonzalez A.L. // Space Sci. Rev. 1999. V. 88. P. 529.
  6. Gonzalez W.D., Joselyn J.A., Kamide Y. et al. // J. Geophys. Res. 1994. V. 99. No. A4. P. 5771.
  7. https://www.swpc.noaa.gov/noaa-scales-explanation.
  8. Klimenko M.V., Klimenko V.V., Ratovsky K.G. et al. // Radio Science. 2011. V. 46. Art. No. RS0D 03.
  9. Prölss G.W. // In: Characterising the ionosphere. Art. No. 10. France: Neuilly-sur-Seine, 2006.
  10. Lu G., Richmond A.D., Roble R.G., Emery B.A. // J. Geophys. Res. 2001. V. 106. No. A11. P. 24493.
  11. Loewe C.A., Prölss G.W. // J. Geophys. Res. 1997. V. 102. No. A7. P. 14209.
  12. Balan N., Batista I.S., Tulasi Ram S. et al. // Geoscience Lett. 2016. V. 3. Art. No. 3.
  13. Marques de Souza Franco A., Hajra R., Echer E., Bolzan M.J.A. // Ann. Geophys. 2021. V. 39. P. 929.
  14. Malin S.R.C., Mete Işikara A. // Geophys. J. Int. 1976. V. 47. No. 3. P. 445.
  15. Макаров Г.А. // Солн.-земн. физ. 2020. Т. 6. № 4. С. 59; Makarov G.A. // Sol.-Terr. Phys. 2020. V. 6. No. 4. P. 50.
  16. Marques de Souza Franco A., Hajra R., Echer E., Bolzan M.J.A. // Ann. Geophys. 2021. V. 39. No. 5. P. 929.
  17. Данилов А.А., Крымский Г.Ф., Макаров Г.А. // Геомагн. и аэроном. 2013. Т. 53. № 4. С. 469; Danilov A.A., Krymskii G.F., Makarov G.A. // Geomagn. Aeron. 2013. V. 53. No. 4. P. 441.
  18. Zhao H., Zong Q.-G. // J. Geophys. Res. 2012. V. 117. No. A11. P. 222.
  19. Lyatsky W., Hamza A.M. // Canad. J. Phys. 2011. V. 79. No. 6. P. 907.
  20. Cliver E.W., Kamide Y., Ling A.G. // J. Geophys. Res. 2000. V. 105. No. A2. P. 2413.
  21. Klimenko V., Klimenko M. // Adv. Space Res. V. 56. No. 9. P. 1982.

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML
2. Fig. 1. Seasonal distribution of the number of Dst-storms (a), ap-storms (b) and AE-storms (c)

Baixar (311KB)
3. Fig. 2. Daily distribution of the number of Dst-storms (a), ap-storms (b) and AE-storms (c)

Baixar (293KB)

Declaração de direitos autorais © Russian Academy of Sciences, 2024