HR: 12:05h
AN: SM51D-07 [PDF]
TI: Plasma Dynamics in the Vicinity of a Cusp-Like Magnetic Configuration
AU: * Otto, A
EM: ao@how.gi.alaska.edu
AF: Antonius Otto, Geophys. Institute
Univ. Alaska Fairbanks, Fairbanks, AK 99775 United States
AB:
The magnetospheric cusps are an important structural element of the
Earth's magnetosphere. Magnetic flux from the magnetospheric boundaries
converges into the cusps and the magnetic field in the vicinity of the
cusps rotates by 360 degrees. The magnetic field and plasma flow
configuration allows for magnetic reconnection and Kelvin Helmholtz
instabilities in the vicinity of the cusps. In addition plasma flow can
become turbulent due to boundary layer separation as a result of the
plasma flow over the cusp indentation. However, there are very few
models based on first principles and with good numerical resolution
which address the cusp physics. Here we will present first results based
on MHD simulations with an initial condition which includes a cusp-like
magnetic field indentation. The initial conditions particularly address
cases with a magnetic field and plasma flow aligned and perpendicular to
each other. The results consider a variation of the velocity on the
magnetosheath side as well as the influence of viscosity on the the flow
structure in and adjacent to the cusp.
DE: 2724 Magnetopause, cusp, and boundary layers
DE: 2753 Numerical modeling
DE: 2784 Solar wind/magnetosphere interactions
DE: 7835 Magnetic reconnection
DE: 7843 Numerical simulation studies
SC: SPA - Magnetospheric Physics [SM]
MN: 2003 Fall Meeting