Physics
Scientific paper
Jan 1983
adsabs.harvard.edu/cgi-bin/nph-data_query?bibcode=1983jgr....88..365l&link_type=abstract
Journal of Geophysical Research, vol. 88, Jan. 1, 1983, p. 365-380.
Physics
208
Earth Magnetosphere, Geomagnetism, Ionospheric Currents, Magnetohydrodynamic Waves, Magnetosphere-Ionosphere Coupling, Auroral Zones, Electric Fields, Field Aligned Currents, Ionospheric Conductivity, Particle Acceleration, Turbulence Effects
Scientific paper
The dynamics of magnetosphere-ionosphere coupling has been investigated by means of a two-dimensional two-fluid MHD model including anomalous resistivity. When field-aligned current is generated on auroral field lines, the disturbance propagates toward the ionosphere in the form of a kinetic Alfven wave. When the current exceeds a critical value, microscopic turbulence is produced, which modifies the propagation of the Alfven wave. This process is modeled by a nonlinear collision frequency, which increases with the excess of the drift velocity over the critical value. The system evolves toward an electrostatic structure, with the perpendicular electric field having a shorter scale than the field-aligned current. The approach to a steady state is strongly dependent on the presence or absence of the turbulence and on the boundary conditions imposed in the generator. As current is increased or scale size is decreased, the turbulent region reflects and absorbs most of the Alfven wave energy, decoupling the generator from the ionosphere.
Dum C. T.
Lysak Robert L.
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