HR: 15:45h
AN: SH54B-02 INVITED [Abstracts]
TI: Observational Evidence of the Kink Instability In Solar Eruptions
AU: * Rust, D M
EM: dave.rust@jhuapl.edu
AF: Johns Hopkins University
Applied Physics Laboratory, 11100 Johns Hopkins Rd, Laurel, MD 20723 United States
AB:
Two approaches to studying the role of source region magnetic fields for CMEs are described. First, observational evidence
is used to infer that the MHD helical kink instability is associated with at least some filament eruptions and CMEs. In
seven cases, the sense of twist and writhe in the source regions were determined from movies of erupting filaments. In every case the sense of twist was the same as the sense of writhe, as required for a kink. Next, we consider six different cases
in which the chirality and axis orientation of interplanetary flux ropes could be compared with the corresponding signatures
in the source regions at the Sun. In four cases, the chirality and orientation inferred from these pre-eruption flux rope
signatures agreed well with the interplanetary flux rope signatures. In two cases, the flux rope axis orientations differed
by about 150 degrees. These results suggest that the flux ropes existed prior to eruption, that they become flux ropes in
interplanetary space, and, at least in some cases, that the kink instability is the likely cause of eruption.
DE: 2111 Ejecta, driver gases, and magnetic clouds
DE: 2134 Interplanetary magnetic fields
DE: 7513 Coronal mass ejections
DE: 7524 Magnetic fields
SC: SPA-Solar and Heliospheric Physics [SH]
MN: 2005 Joint Assembly