The population of the magnetosphere by solar winds ions when the interplanetary magnetic field is northward

Physics

Scientific paper

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Interplanetary Magnetic Fields, Magnetohydrodynamic Flow, Magnetosheath, Molecular Ions, Plasma Sheaths, Solar Wind, Three Dimensional Models, Computerized Simulation, Electric Fields, Ion Density (Concentration), Ion Temperature, Mathematical Models, Particle Trajectories, Trapped Particles

Scientific paper

We have examined some possible entry mechanisms of solar wind ions into the magnetosphere by calculating the trajectories of thousands of non-interacting ions in the magnetic and electric fields from a three dimensional global magnetohydrodynamic (MHD) simulation of the magnetosphere and the magnetosheath, under northward interplanetary magnetic field (IMF) conditions. Particles, launched in the solar wind, entered the magnetosphere and formed the low latitude boundary layer (LLBL), plasma sheet and a region of trapped particles near the Earth. The densities and temperatures we obtained in these regions were realistic, with the exception of trapped particle densities. The dominant entry mechanism was convection into the magnetosphere on reconnecting field lines.

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