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The Structure of Coronal LoopsIt is widely believed that the simple coronal loops observed by XUV imagers, such as EIT, TRACE, or XRT, actually have a complex internal structure consisting of many (perhaps hundreds) of unresolved, interwoven "strands". According to the nanoflare model, photospheric motions tangle the strands, causing them to reconnect and release the energy required to produce the observed loop plasma. Although the strands, themselves, are unresolved by present-generation imagers, there is compelling evidence for their existence and for the nanoflare model from analysis of loop intensities and temporal evolution. A problem with this scenario is that, although reconnection can eliminate some of the strand tangles, it cannot destroy helicity, which should eventually build up to observable scales. we consider, therefore, the injection and evolution of helicity by the nanoflare process and its implications for the observed structure of loops and the large-scale corona. we argue that helicity does survive and build up to observable levels, but on spatial and temporal scales larger than those of coronal loops. we discuss the implications of these results for coronal loops and the corona, in general .
Document ID
20110008595
Acquisition Source
Goddard Space Flight Center
Document Type
Abstract
Authors
Antiochos, Spiro K.
(NASA Goddard Space Flight Center Greenbelt, MD, United States)
Date Acquired
August 25, 2013
Publication Date
June 27, 2009
Subject Category
Solar Physics
Meeting Information
Meeting: Solar Coronal Loops Workshop IV
Location: Florence
Country: Italy
Start Date: June 27, 2009
End Date: July 3, 2009
Sponsors: Florence Univ.
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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