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The overall structure and evolution of active regionsThe evolutionary characteristics and structure of the magnetic fields and atmospheric phenomena associated with the development of a solar magnetic region are discussed. Bipolar magnetic regions are introduced as the source of all solar magnetic fields, formed as bundles of magnetic flux rise to and break through the solar surface and spread throughout the photosphere, chromosphere and corona. The photospheric magnetic region is shown to be characterized by bipolar flux regions of various sizes emerging rapidly for a few days, then expanding and decreasing in flux for several months and fragmenting. Sunspots and faculae are considered as tracers of the magnetic regions in the upper photosphere or lower chromosphere, while chromospheric tracers include arch filaments, field transition arches, long chromospheric threads, disk filaments and dark fibrils in chromospheric lines. The transition region and lower corona exhibit a multithermal plasma distribution, with low-temperature plasmas confined to the footprints and legs of magnetic field lines and high-temperature plasmas originating in loops or systems of unresolved loops. The bipolar magnetic region is also shown to interact with its surroundings to produce an interconnected field line pattern.
Document ID
19820035647
Acquisition Source
Legacy CDMS
Document Type
Other - Collected Works
Authors
Sheeley, N. R., Jr.
(U.S. Navy, Naval Research Laboratory, Washington DC, United States)
Date Acquired
August 10, 2013
Publication Date
January 1, 1981
Subject Category
Solar Physics
Accession Number
82A19182
Funding Number(s)
CONTRACT_GRANT: NASA ORDER W-14429
CONTRACT_GRANT: DPR-S60404G
Distribution Limits
Public
Copyright
Other

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