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A&A 428, 595-612 (2004)
DOI: 10.1051/0004-6361:20034350
Elementary heating events - magnetic interactions between two flux sources
II. Rates of flux reconnection
C. E. Parnell1 and K. Galsgaard1, 21 School of Mathematics and Statistics, University of St Andrews, St Andrews, KY16 9SS, Scotland
e-mail: clare@mcs.st-and.ac.uk
2 Niels Bohr Institute for Astronomy, Physics and Geophysics, Julie Maries vej 31, 2300 Copenhagen Ø, Denmark
(Received 18 September 2003 / Accepted 20 August 2004 )
Abstract
Magnetic fragments in the photosphere are in continuous motion and, due to the
complex nature of the magnetic field in the solar atmosphere, these motions are likely to
drive a lucrative coronal energy source: the passing
of initially-unconnected opposite-polarity fragments that release energy through both
closing and then re-opening the same fieldlines. Three-dimensional, time-dependent MHD and potential models are used to investigate
the passing of fragments in an overlying field.
Key words: Sun: photosphere -- Sun: magnetic fields -- magnetohydrodynamics (MHD)
© ESO 2004
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