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The Coronal VeilCoronal loops, seen in solar coronal images, are believed to represent emission from magneticflux tubes withcompact cross sections. We examine the 3D structure of plasma above an active region in a radiativemagnetohydrodynamic simulation to locate volume counterparts for coronal loops. In many cases, a loop cannot belinked to an individual thin strand in the volume. While many thin loops are present in the synthetic images, thebright structures in the volume are fewer and of complex shape. We demonstrate that this complexity can formimpressions of thin bright loops, even in the absence of thin bright plasma strands. We demonstrate the difficulty ofdiscerning from observations whether a particular loop corresponds to a strand in the volume, or a projectionartifact. We demonstrate how apparently isolated loops could deceive observers, even when observations frommultiple viewing angles are available. While we base our analysis on a simulation, the mainfindings areindependent from a particular simulation setup and illustrate the intrinsic complexity involved in interpretingobservations resulting from line-of-sight integration in an optically thin plasma. We propose alternativeinterpretation for strands seen in Extreme Ultraviolet images of the corona. The“coronal veil”hypothesis ismathematically more generic, and naturally explains properties of loops that are difficult to address otherwise—such as their constant cross section and anomalously high density scale height. We challenge the paradigm ofcoronal loops as thin magneticflux tubes, offering new understanding of solar corona, and by extension, of othermagnetically confined bright hot plasmas
Document ID
20220017302
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
A Malanushenko
(National Center for Atmospheric Research Boulder, Colorado, United States)
M C M Cheung
(Lockheed Martin Solar and Astrophysics Laboratory)
C E Deforest
(Southwest Research Institute San Antonio, Texas, United States)
J A Klimchuk
(Goddard Space Flight Center Greenbelt, Maryland, United States)
M Rempel
(National Center for Atmospheric Research Boulder, Colorado, United States)
Date Acquired
November 16, 2022
Publication Date
March 1, 2022
Publication Information
Publication: Astrophysical Journal
Publisher: American Astronomical Society
Volume: 927
Issue: 1
Subject Category
Astrophysics
Funding Number(s)
WBS: 791926.02.06.01.04.01
CONTRACT_GRANT: 80NM0018D0004P00002
CONTRACT_GRANT: 80GSFC18C0014
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Technical Review
External Peer Committee
No Preview Available