Magnetopause mapping to the ionosphere for northward IMF

Author:

Alexeev I. I.,Belenkaya E. S.,Bobrovnikov S. Yu.,Kalegaev V. V.,Cumnock J. A.,Blomberg L. G.

Abstract

Abstract. We study the topological structure of the magnetosphere for northward IMF. Using a magnetospheric magnetic field model we study the high-latitude response to prolonged periods of northward IMF. For forced solar wind conditions we investigate the location of the polar cap region, the polar cap potential drop, and the field-aligned acceleration potentials, depending on the solar wind pressure and IMF By and Bx changes. The open field line bundles, which connect the Earth's polar ionosphere with interplanetary space, are calculated. The locations of the magnetospheric plasma domains relative to the polar ionosphere are studied. The specific features of the open field line regions arising when IMF is northward are demonstrated. The coefficients of attenuation of the solar wind magnetic and electric fields which penetrate into the magnetosphere are determined.

Publisher

Copernicus GmbH

Subject

Space and Planetary Science,Earth and Planetary Sciences (miscellaneous),Atmospheric Science,Geology,Astronomy and Astrophysics

Reference47 articles.

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2. Alexeev, I. I.: What define the polar cap and auroral oval diameter?, in: The Inner Magnetosphere: Physics and Modeling, edited by: Pulkkinen, T. I., Tsyganenko, N. A., and Friedel, R. H. W.: Geophysical Monograph Series, Volume 155, 313 pp., 257–262, ISBN 0-87590-420-3, AGU Code GM1554203, 2005.

3. Alekseyev, I. I. and Belenkaya, E. S.: Electric field in an open model of the magnetosphere, Geomagn. Aeron., Engl. Transl., 23, 57–61, 1983.

4. Alexeev, I. I. and Belenkaya, E. S., Magnetospheric plasma convection on the open field lines, Geomagn. Aeron., 25, 450–457, 1985 (in Russian).

5. Alexeev, I.I. and Belenkaya, E. S.: Magnetospheric convection structure for the southward and northward IMF, Geomagn. Aeron., 29, 725–729, 1989 (in Russian).

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