Physics of auroral phenomena : proceedings of the 37th Annual seminar, Apatity, 25 - 28 February, 2014 / [ed. board: A. G. Yahnin, N. V. Semenova]. - Апатиты : Изд-во Кольского научного центра РАН, 2014. - 125 с. : ил., табл.

"Polar ”and "high latitude " substorms and solar wind conditions support of the Russian Foundation for Basic Research (grants no. 12_05_01030 and 13_05_00233) and, in part, by the Department of Earth Sciences of the Russian Academy of Sciences (Program no. 7). The study is a part of the joint Russian - Bulgarian Project “The influence of solar activity and solar wind streams on the magnetospheric disturbances, particle precipitations and auroral emissions” of PGI RAS and IKIT- BAS under the Fundamental Space Research Program between RAS and BAS. References 1. Akasofu, S.I., 1964. The development of the auroral substorm. Planet.Space Sci., 12, 273 -282. 2. Troshichev, O.A., Kuznetsov, B.M., Pudovkin, M.I. 1974. The current systems of the magnetic substorm growth and explosive phase. Planet.Space Sci., .22,1403-1412. 3. Kisabeth, J.L., Rostoker, G. 1974. The expansive phase of magnetospheric substorms. Development of the auroral electrojets and auroral arcs configuration during substorm. J. Geophys. Res., 79, 972-984. 4. Wiens, R.G., Rostoker, G. 1975. Characteristics of the development of the westward electrojet during the expansive phase of magnetospheric substorms. J. Geophys. Res., 16, 2109-2128. 5. Sergeev, V.A., Yahnin, A.G. 1979.The features of auroral bulge expansion. Planet. Space Sci., 27, 1429 - 1440. 6. Kleimenova, N.G., Antonova, E.E., Kozyreva, O.V., Malysheva, L.M., Kornilova, T.A., and Kornilov, I.A. 2012. Wave structure of magnetic substorms at high latitudes. Geomagn. Aeron. (Engl. Transl.), 52, 746-754. 7. Sergeev, V.A., Yakhnin, A.G., Dmitrieva, N.P. 1979. Substorms in the polar cap—Effect of high_speed solar wind streams. Geomagn. Aeron. (Engl. Transl.), 19, 1121-1122. 8. Yahnin, A.G., Despirak, I.V., Lubchich, A.A., Kozelov, B.V. 2004. Solar wind control of the auroral bulge expansion. Proceedings of the 7th International Conference on Substorms, Helsinki, 31 -33. 9. Despirak, I.V., Lyubchich, A.A., Bimat, Kh.K, Yakhnin, A.G. 2008. Poleward expansion of the westward electrojet depending on the solar wind and IMF parameters, Geomagn. Aeron. (Engl. Transl.), 48, no. 3, 284—292. 10. Feldstein, Y. I., Starkov, G. V. 1967. Dynamics of auroral belt and geomagnetic disturbances. Planet. Space Sci., 15, 209-229. 11. Akasofu, S.-L, Wilson, C. R., Snyder, A.L., Perreault, P.D. 1971. Results from a meridian chain of observations in the Alaskan sector, 1. Planet. Space Sci., 19, 477-482. 12. Akasofu, S.-I., Perreault, P.D., Yasuhara, F., Meng, C.-I. 1973. Auroral substorms and the interplanetary magnetic field. J. Geophys. Res., 78, 7490-7508. 13. Lui, A. T. Y., Anger, C.D., Akasofu, S.-I. 1975. The equatorward boundary of the diffuse aurora and auroral substorms as seen by the Isis 2 auroral scanning photometer. J. Geophys. Res., 80, 3603 - 3614. 14. Lui, A. T. Y., AkasofU, S.-I., Hones, E.W., JR., Bame, S.J., Mclwan, C.E. 1976. Observation of the plasma sheet during a contracted oval substorm in a prolonged quiet period. J. Geophys. Res., 81, 1415-1419. 15. Akasofu, S.I. 2004. Several “controversial” issues on substorms. Space Sci. Rev., 113, 1 - 40. 16. Gupta, J.C., Loomer, E.I. 1979. Influence on AE index of substorms appearing north of Cambridge Bay. Planet. Space Sci., 27, 1019-1025. 17. Loomer, E.I., Gupta, J.C. 1980. Some characteristics of high latitude substorms. J. Atmos. Terr. Phys., 42, 645 - 652. 18. Doolittle, J.H., Mende, S.B., Frey, H.U., Rosenberg, T.J., Weatherwax, A.T., Lanzerotti, L.J., Maclennan, C.G., Amoldy, R.L., Engebretson, M.J., Fukunishi, H., Inan, U.S. 1998. Substorm auroral expansion to high latitudes and the dawn/dusk flanks. In: Kokubun S. and Kamide Y. (Eds). Substorm- 4. Terra Publ., Tokio. 47 -50. 19. Kuznetsov, S., Lazutin, L.L., Rosenberg, Т., Borovkov, L., Gotselyuk, Yu., Weatherwax, A. 2001. Energetic electron and ion dynamics and polar aurora during magnetospheric substorm of March 10, 1994. Proc. 5th Int. Conf. on Substorms, May 16-20, 2000, St. Petersburg, Russia, 511 -514. 20. Mende, S.B., Frey, H.U., Geller, S.P., Doolittle, J.H. 1999. Multistation observations of auroras: Polar cap substorms. J. Geophys. Res. 104,2333 -2342. 21. Weatherwax, A.Т., Rosenberg, T.J., Maclennan, C.G., Doolittle, J.H. 1997. Substorm precipitation in the polar cap and associated Pc5 modulation. Geophys.Res.Lett., 24, 579-582. 22. Gussenhoven, M.S. 1982. Extremely high latitude auroras. J. Geophys. Res., 87, 2401-2412. 23. Dmitrieva, N.P., Sergeev, V.A. 1984. Occurrence of an auroral electrojet at polar cap latitudes: Characteristics of the phenomenon and possibilities of its use for diagnostics of large-scale high speed solar wind streams, Magnitos. Issled., 3, 58-66. 24. Despirak, I.V., Lubchich, A.A., Yahnin, A.G., Kozelov, B.V., Biemat, H.K. 2009. Development of substorm bulges during different solar wind structures. Ann. Geophys., 27, 1951 -1960. 25. Despirak, I.V., Lubchich, A.A., Guineva, V. 2011. Development of substorm bulges during storms of different interplanetary origins. J. Atmos. Sol.-Terr. Phys., 73,1460-1464. 26. Pudovkin, M.I., Semenov, V.S., Kotikov, A.L., Shishkina, E.M. 1995. Dynamics of auroral electrojets and energetics of substorm. J. Atmos. Terr. Phys., 57,187 -192. 13

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