HR: 0800h
AN: SM21B-0368 [Abstracts]
TI: Turbulent Plasma Mixing in the Magnetotail
AU: * Larson, D J
EM: Douglas.Larson@unh.edu
AF: University of New Hampshire, Space Science Center, Morse Hall
39 College Road, Durham, NH 03824
United States
AU: Kistler, L
EM: Lynn.Kistler@unh.edu
AF: University of New Hampshire, Space Science Center, Morse Hall
39 College Road, Durham, NH 03824
United States
AU: Mouikis, C
EM: chris.mouikis@unh.edu
AF: University of New Hampshire, Space Science Center, Morse Hall
39 College Road, Durham, NH 03824
United States
AU: Raeder, J
EM: J.Raeder@unh.edu
AF: University of New Hampshire, Space Science Center, Morse Hall
39 College Road, Durham, NH 03824
United States
AB:
We investigate the transport of ions into the plasma sheet
during a turbulent magnetic storm time. The plasma sheet plasma
is supplied by both the solar wind, and by the ionosphere. During
magnetic storms, the O+ density increases, indicating that the
ionosphere becomes a more important source. We use global
magnetosphere simulations with the OpenGGCM in conjunction
with fluid particle tracing to determine the entry paths of
the plasma. We specifically study the August 17, 2001 Cluster
apogee pass through the plasma sheet, which was at this time
very turbulent. Comparison of the data with the model results
shows how the presence of bursty bulk flows and fluid turbulence
affects the mixing of plasmas from different sources.
DE: 2744 Magnetotail
DE: 7859 Transport processes
DE: 7863 Turbulence (4490)
SC: SPA-Magnetospheric Physics [SM]
MN: Fall Meeting 2005