HR: 1340h
AN: SH13A-1159 [Abstracts]
TI: Relationship Between Plasma Heating and Coronal Emissions
AU: * Mok, Y
EM: ymok@uci.edu
AF: University of California, Department of Physics
University of California, Irvine, CA 92697
United States
AU: Lionello, R
EM: roberto.lionello@saic.com
AF: Science Applications International Corporation, 10260 Campus Point Drive, San Diego, CA 92121
United States
AU: Mikic, Z
EM: mikicz@saic.com
AF: Science Applications International Corporation, 10260 Campus Point Drive, San Diego, CA 92121
United States
AU: Linker, J
EM: linkerj@saic.com
AF: Science Applications International Corporation, 10260 Campus Point Drive, San Diego, CA 92121
United States
AB:
The physical mechanisms that deposit energy into the coronal
plasma and dissipate it as heat have been speculated for
decades, and yet remain inconclusive. Many theoretical models
have been proposed and need to be validated by observation.
To distinguish these models, we take advantage of the complex
magnetic-field structure and the spatial inhomogeneity of an
active region, and compute the thermal structure in 3-D using
the heating mechanism from each of the proposed theories.
Distinctive thermal structures are expected from different
heating models. As a result, each model has a unique signature
in its emissions in EUV and soft X-ray that are observable by
EIT/SOHO and SXT/Yohkoh. In our study, we survey the available
models and compare their predicted emissions with observations.
Work supported by Sun Earth Connection Theory Program of NASA
DE: 7509 Corona
DE: 7549 Ultraviolet emissions
SC: SPA-Solar and Heliospheric Physics [SH]
MN: 2004 AGU Fall Meeting