Диссертация (1149588), страница 27
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Baumjohann, R. Schödel, M. Brittnacher, V. A. Sergeev, M. Kubyshkina, T.Mukai, and K. Liou (2001), Earthward flow bursts, auroral streamers, and small expansions, J.Geophys. Res., 106(A6), 10791–10802, doi:10.1029/2000JA000306.[68] Nakamura, R., Baumjohann, W., Mouikis, C., Kistler, L.M., Runov, A., Volwerk, M., Asano, Y.,Vörös, Z., Zhang, T.L., Klecker, B., Rème, H. and Balogh, A. (2004).
Spatial scale of high‐speedflows in the plasma sheet observed by Cluster. Geophysical Research Letters 31: doi:10.1029/2004GL019558. issn: 0094-8276.[69] Nikolaev, A. V., Sergeev, V. A., Tsyganenko, N. A., Kubyshkina, M. V., Opgenoorth, H., Singer,H., and Angelopoulos, V.: A quantitative study of magnetospheric magnetic field linedeformation by a two-loop substorm current wedge, Ann. Geophys., 33, 505-517,doi:10.5194/angeo-33-505-2015, 2015.[70] Nishida, A (1971), DP2 and Polar Substorm, Planet Space Sci. 19, 205.[71] Nishimura, Y., Lyons, L., Zou, S., Angelopoulos, V., and Mende, S.: Substorm triggering by newplasma intrusion: THEMIS all-sky imager observations, J. Geophys. Res., 115, A07222,doi:10.1029/2009JA015166, 2010.[72] Ohtani, S., Takahashi, K., Zanetti, L.
J., Potemra, T. A., McEntire, R. W. and Iijima, T. (1991)Tail Current Disruption in the Geosynchronous Region, in Magnetospheric Substorms (eds J. R.Kan, T. A. Potemra, S. Kokubun and T. Iijima), American Geophysical Union, Washington, D.C.. doi: 10.1029/GM064p0131.[73] Ohtani, S., S. Kokubun, and C.
T. Russell (1992), Radial expansion of the tail current disruptionduring substorms: A new approach to the substorm onset region, J. Geophys. Res., 97(A3),3129–3136, doi:10.1029/91JA02470.[74] Ohtani, S.-I. (1998), Earthward expansion of tail current disruption: Dual-satellite study, J.Geophys. Res., 103, 6815–6825.
Olson, J. V. (1999), Pi2 pulsations and substorm onsets: Areview, J. Geophys. Res., 104(A8), 17499–17520, doi:10.1029/1999JA900086.148[75] Opgenoorth, H.J., and R.J. Pellinen, The reaction of the global convection electrojets to theonset and expansion of the substorm current wedge, Proceedings of ICS-4, edited by S. Kokburn,and Y. Kamide, pp. 663-668, Terra Sci.
Pub. Co. / Kluwer Academic Pub., 1998.[76] Petrukovich A. A., T. Mukai, S. Kokubun, S. A. Romanov, Y. Saito, T. Yamamoto, L. M. Zelenyi,Substorm-associated pressure variations in the magnetotail plasma sheet and lobe, J. Geophys.Res, 104, A3, 4501-4513,1999.[77] Petrukovich, A. A., W. Baumjohann, R. Nakamura, and H. Rème (2009), Tailward and earthwardflow onsets observed by Cluster in a thin current sheet, J. Geophys. Res., 114, A09203,doi:10.1029/2009JA014064.[78] Ritter, P., and H. Lühr (2008), Near‐Earth magnetic signature of magnetospheric substorms andan improved substorm current model, Ann.
Geophys., 26, 2781–2793, doi:10.5194/angeo-262781-2008.[79] Runov, A., V. Angelopoulos, M. I. Sitnov, V. A. Sergeev, J. Bonnell, J. P. McFadden, D. Larson,K.-H. Glassmeier, and U. Auster (2009), THEMIS observations of an earthward-propagatingdipolarization front, Geophys. Res.
Lett., 36, L14106, doi:10.1029/2009GL038980.[80] Runov, A., V. Angelopoulos, X.-Z. Zhou, X.-J. Zhang, S. Li, F. Plaschke, and J. Bonnell (2011),A THEMIS multicase study of dipolarization fronts in the magnetotail plasma sheet, J. Geophys.Res., 116, A05216, doi:10.1029/2010JA016316.[81] Roux, A., Perraut, S., Robert, P., Morane, A., Pedersen, A., Korth, A., Kremser, G., Aparicio, B.,Rodgers, D., and Pellinen, R.: Plasma sheet instability related to the westward traveling surge, J.Geophys. Res., 96, 17697–17714, doi:10.1029/91JA01106, 1991.[82] Sergeev, V. A., L.
I. Vagina, R. D. Elphinstone, J. S. Murphee, D. J. Hearn, M. L. Johnson(1996), Comparison of UV optical signatures with the substorm current wedge predicted by aninversion algorithm, J. Geophys. Res., 101, P. 2615-2627.[83] Sergeev, V. A., Liou, K., Newell, P. T., Ohtani, S.-I., Hairston, M. R., and Rich, F.: Auroralstreamers: characteristics of associated precipitation,convection and field-aligned currents, Ann.Geophys., 22, 537-548, doi:10.5194/angeo-22-537-2004, 2004.[84] Sergeev, V. A., N. A. Tsyganenko, M. V. Smirnov, A. V. Nikolaev, H.
J. Singer, and W.Baumjohann (2011а), Magnetic effects of the substorm current wedge in a ―spread-out wire‖model and their comparison with ground, geosynchronous, and tail lobe data, J. Geophys. Res.,116, A07218, doi:10.1029/2011JA016471.[85] Sergeev, V., V. Angelopoulos, M. Kubyshkina, E.
Donovan, X. Zhou, A. Runov, H. Singer, J.McFadden, and R. Nakamura (2011b), Substorm growth and expansion onset as observed withidealgroundspacecraftdoi:10.1029/2010JA015689.THEMIScoverage,J.Geophys.Res.,116,A00I26,149[86] Sergeev, V. A., V. Angelopoulos, and R.Nakamura (2012), Recent advances in understandingsubstorm dynamics, Geophys. Res. Lett., 39, L05101, doi:10.1029/2012GL050859.[87] Sergeev, V.
A., A. V. Nikolaev, N. A. Tsyganenko, V. Angelopoulos, A. V. Runov, H. J. Singer,and J. Yang (2014а), Testing a two-loop pattern of the substorm current wedge (SCW2L), J.Geophys. Res. Space Physics, 119, 947–963, doi:10.1002/2013JA019629.[88] Sergeev, V. A., A. V. Nikolaev, M. V. Kubyshkina, N. A. Tsyganenko, H. J. Singer, J. V.Rodriguez, V. Angelopoulos, R. Nakamura, S. E.
Milan, J. C. Coxon, B. J. Anderson and H.Korth (2014b), Event study combining magnetospheric and ionospheric perspectives of thesubstorm current wedge modeling, J. Geophys. Res. Space Physics, 119, pages 9714–9728.doi:10.1002/2014JA020522.[89] Shukhtina, M. A., N. P. Dmitrieva, and V. A. Sergeev (2004), Quantitative magnetotailcharacteristics of different magnetospheric states, Ann. Geophys., 22, 1019–1032.[90] Singer, H.
J., W. J. Hughes, C. Gelpi, and B. G. Ledley (1985), Magnetic disturbances in thevicinity of synchronous orbit and the substorm current wedge: A case study, J. Geophys. Res.,90(A10), 9583–9589, doi:10.1029/JA090iA10p09583.[91] Toffoletto, F. R., R. W.
Spiro, R. A. Wolf, J. Birn, and M. Hesse (2000), Computer experimentson substorm growth and expansion, in Proceedings of the 5th International Conference onSubstorms, ESA SP-443, edited by A. Wilson, pp. 351–355, Eur. Space Agency, Paris.[92] Tsyganenko, N. A. (1987), Global quantitative models of the geomagnetic field in the cislunarmagnetosphere for different disturbance levels, Planet.
Space Sci., 35, 1347–1358.[93] Tsyganenko, N. A. (1989), A magnetospheric magnetic field model with warped tail currentsheet, Planet. Space Sci., 37, 5-20.[94] Tsyganenko, N. A., Modeling the Earth's magnetospheric magnetic field confined within arealistic magnetopause, J.
Geophys. Res., 100, 5599-5612, 1995.[95] Tsyganenko, N. A., and D. P. Stern, Modeling the global magnetic field of the large-scaleBirkeland current systems, J. Geophys. Res., 101, 27187-27198, 1996.[96] Tsyganenko, N.A.: An empirical model of the substorm current wedge, J. Geophys.
Res., 102,19935–19941, 1997.[97] Tsyganenko N. A., and M. I. Sitnov, Modeling the dynamics of the inner magnetosphere duringstrong geomagnetic storms, J. Geophys.Res., 110, A3, 10.1029/2004JA010798, 2005.[98] Vagina L. I., V. A. Sergeev, D. N. Baker and H. J.
Singer, Use of midlatitude magnetic data formodeling and diagnostics of magnetospheric substorms, Adv. Space Res., 18, 8229-8232, 1996.[99] Vagina L. I., V. A. Sergeev, A. L. Kotikov and E. M. Shishkina, On the relationship of theparameters of the substorm current system with the westward electrojet parameters, Adv. SpaceRes., 20, 477-480, 1997.150[100] Vasilyev, E. P., V. A.
Sergeev, and M. V. Malkov (1986), Three‐dimensional effects of theBirkeland current loop, Geomagn. Aeron., 26, 114–118.[101] Vasiliunas, V. M., Mathematical models of magnetospheric convection and its coupling to theionosphere, In: B. M. McCormac (ed.): Particles and fields in the Magnetosphere, vol. 17 ofASSL. P. 60.[102] Waters, C. L., Anderson, B. J., and Liou, K.: Estimation of global field aligned currents using theIridiumsystemmagnetometerdata,Geophys.Res.Lett.,28,2165–2168,doi:10.1029/2000GL012725, 2001.[103] Wolf, R.
A., V. Kumar, F. R. Toffoletto, G. M. Erickson, A. M. Savoie, C. X. Chen, and C. L.Lemon (2006), Estimating local plasma sheet PV5/3 from single-spacecraft measurements, J.Geophys. Res., 111, A12218, doi:10.1029/2006JA012010.[104] Yahnin A.G., Despirak I.V., Lubchich A.A., Kozelov B.V., Dmitrieva N.P., Shukhtina M.A.,Biernat H.K., Indirect mapping of the source of the oppositely directed fast plasma flows in theplasma sheet onto the auroral display Annales Geophysicae, v. 24, pp.679-687, 2006a.[105] Yahnin, A. G., Despirak, I. V., Lubchich, A. A., Kozelov, B. V., Dmitrieva, N. P., Shukhtina, M.A., and Biernat, H. K., Relationship between substorm auroras and processes in the near-Earthmagnetotail, Space Sci.











