HR: 0800h
AN: SH32A-0787 [Abstracts]
TI: Dynamics of CMEs in the STEREO Field of View: Theory and Observation
AU: Kunkel, V
EM: vkunkel@gmu.edu
AF: George Mason University, 4400 University Drive, Fairfax, VA 22030,
AU: * Chen, J
EM: chen@ppd.nrl.navy.mil
AF: Plasma Physics Division, Naval Research Laboratory, 4555 Overlook Avenue, SW,
Washington, DC 20375,
AU: Schuck, P W
EM: schuck
AF: Plasma Physics Division, Naval Research Laboratory, 4555 Overlook Avenue, SW,
Washington, DC 20375,
AU: Morrill, J S
EM: jeff.morrill@nrl.navy.mil
AF: Space Science Division, Naval Research Laboratory, 4555 Overlook Avenue, SW,
Washington, DC 20375,
AU: Howard, R A
EM: russell.howard@nrl.navy.mil
AF: Space Science Division, Naval Research Laboratory, 4555 Overlook Avenue, SW,
Washington, DC 20375,
AB:
The initial acceleration and the subsequent dynamics of coronal mass ejections (CMEs) are investigated using
the new SECCHI data. Specifically, the erupting flux-rope model of CMEs is used to model observed CME
trajectories beyond the 30 Rs LASCO field of view. The forces acting on CMEs in the inner corona and the
heliosphere are explicitly calculated. In this work, we address two limitations imposed by the previous
observations: (1) direct comparison of theory and data was limited to the LASCO field of view and (2) the 3D
morphology and the direction of propagation were uncertain. The new SECCHI data allow one, for the first time,
to extend model comparison/validation beyond the 30 Rs field of view, and the two-spacecraft view of the sun
makes it possible to determine the 3D geometry of CMEs significantly better. We will theoretically model the
dynamics of CMEs observed by STEREO A and B, from the low corona (EUVI) to the heliosphere (Heliospheric
Imagers HI-1 and HI-2). Synthetic coronagraph images for the STEREO A and B observing positions will be used
to constrain the 3D geometry of observed CMEs. In the lower corona, LASCO data will be compared with the
SECCHI data.
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Work supported by ONR and NASA.
DE: 7509 Corona
DE: 7513 Coronal mass ejections (2101)
DE: 7531 Prominence eruptions
SC: SPA-Solar and Heliospheric Physics [SH]
MN: 2007 Fall Meeting