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Detailed Reference Information |
Yamauchi, M. (1994). Numerical simulation of large-scale field-aligned current generation from finite-amplitude magnetosonic waves. Geophysical Research Letters 21: doi: 10.1029/94GL00883. issn: 0094-8276. |
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A two-dimensional numerical simulation of finite-amplitude magnetohydrodynamic (MHD) magnetosonic waves is performed under a finite-velocity background convection condition. Isothermal cases are considered for simplicity. External dissipation is introduced by assuming that the field-aligned currents are generated in proportion to the accumulated charges. The simulation results are as follows: Paired field-aligned currents are found from the simulated waves. The flow directions of these field-aligned currents depend on the angle between the background convection and the wave normal, and hence two pairs of field-aligned currents are found from a bowed wave if we look at the overall structure. The majority of these field-aligned currents are closed within each pair rather than between two wings. These features are not observed under slow background convection. The result could be applied to the cusp current system and the substorm current system. ¿ American Geophysical Union 1994 |
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Abstract |
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Keywords
Magnetospheric Physics, Current systems, Space Plasma Physics, Numerical simulation studies, Space Plasma Physics, Shock waves, Magnetospheric Physics, MHD waves and instabilities |
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Publisher
American Geophysical Union 2000 Florida Avenue N.W. Washington, D.C. 20009-1277 USA 1-202-462-6900 1-202-328-0566 service@agu.org |
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