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Energy transport to the solar corona by magnetic kink waves

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dc.contributor.author Choudhuri, A. R
dc.contributor.author Dikpati, M
dc.contributor.author Banerjee, D
dc.date.accessioned 2008-07-16T05:53:19Z
dc.date.available 2008-07-16T05:53:19Z
dc.date.issued 1993-08-20
dc.identifier.citation Astrophysical Journal , Vol. 413, No. 2, part 1, pp. 811 - 825 en
dc.identifier.issn 0004-637X
dc.identifier.uri http://hdl.handle.net/2248/2695
dc.description.abstract We show that the magnetic kink waves generated by the motions of photospheric footpoints of the coronal flux tubes can supply adequate energy for heating the quiet corona, provided there are occasional rapid motions of these footpoints as found in recent observations. Choudhuri et al. (1992) modeled the solar corona as isothermal atmosphere and showed that these rapid motions are much more efficient for transporting energy compared to the slow footpoint motions taking place most of the time. We extend these calculations for a two-layer atmosphere, with the lower layer having chromospheric thickness and temperature, and the upper layer having coronal temperature. Even in the presence of such a temperature jump we find that the rapid footpoint motions are still much more efficient for transporting energy to the corona and the estimated energy flux is sufficient for quiet coronal heating. We discuss the general problem of the propagation of kink pulses in a two-layer atmosphere for different possible values of the basic parameters. We find a fairly complicated behavior which could not be anticipated from the analysis of a pure Fourier mode. en
dc.format.extent 2058229 bytes
dc.format.mimetype application/pdf
dc.language.iso en en
dc.publisher American Astronomical Society en
dc.relation.uri http://adsabs.harvard.edu/abs/1993ApJ...413..811C en
dc.subject Magnetic flux en
dc.subject Magnetohydrodynamic waves en
dc.subject Solar corona en
dc.subject Stellar temperature en
dc.subject Wave propagation en
dc.subject Energy transfer en
dc.subject Kinetic energy en
dc.subject Solar atmosphere en
dc.subject Stellar models en
dc.title Energy transport to the solar corona by magnetic kink waves en
dc.type Article en


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