HR: 1340h
AN: SH13A-0277 [Abstracts]
TI: Initial fluxon models of CME onset: loss-of-equilibrium, breakout, tether-cutting
AU: * DeForest, C
EM: deforest@boulder.swri.edu
AF: Southwest Research Institute, 1050 Walnut Street Suite 400, Boulder, CO 80302
United States
AB:
I will present results from initial models of CME onset using a new force-free magnetic evolution code, FLUX, that uses the
novel fluxon approach to MHD modeling. FLUX is a quasi-Lagrangian solver that is free of numerical reconnection and that I
am making available as free software. It is currently suitable for studying evolving force-free equilibria in the presence
of only controlled reconnection; development work is ongoing to add plasma static and dynamic forces. I plan to consider
three simple configurations typical of three current genres of CME onset model: loss of equilibrium under smooth motion by
the photosphere; "tether-cutting" (reconnection of a containment field underneath a twisted prominence field); and "breakout"
(reconnection of a containment field above a twisted prominence field). In each case I will estimate the magnetic energy
available to accelerate mass, and discuss the resulting shape of the remnant open field regions ("dimming regions") after
liftoff.
DE: 2753 Numerical modeling
DE: 7509 Corona
DE: 7513 Coronal mass ejections (2101)
DE: 7594 Instruments and techniques
DE: 9820 Techniques applicable in three or more fields
SC: SPA-Solar and Heliospheric Physics [SH]
MN: Fall Meeting 2005