Solar Magnetic Field Studies Using the 12 Micron Emission Lines. IV. Observations of a Delta Region Solar Flare
- Donald E. Jennings,
- Drake Deming,
- George McCabe,
- ,
- Thomas Moran
- Visiting Astronomer, National Solar Observatory, Kitt Peak. NSO is operated by AURA, Inc. under contract to the National Science Foundation.,
- Planetary Systems Branch, Code 693, NASA Goddard Space Flight Center, Greenbelt, MD 20771, USA,
- Institute for Astrophysics and Computational Science, Catholic University of America, Washington, DC 20064,
- Departmento de Fisíca y Matematicás, Universidad de Monterrey, San Pedro Garza García, N.L. 66259, Mexico,
- Center for Solar Physics and Space Weather, Catholic University of America, Washington, DC 20064
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Article
Peer-reviewOpen access
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0.28
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5
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Citations
16
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49
Abstract
We have recently developed the capability to make solar vector (Stokes
IQUV) magnetograms using the infrared line of Mg I at 12.32 μm. On
2001 April 24, we obtained a vector magnetic map of solar active region
NOAA 9433, fortuitously just prior to the occurrence of an M2 flare.
Examination of a sequence of SOHO/Michaelson Doppler Imager magnetograms
and comparison with ground-based Hα images shows that the flare
was produced by the cancellation of newly emergent magnetic flux outside
of the main sunspot. The very high Zeeman sensitivity of the 12 μm
data allowed us to measure field strengths on a spatial scale which was
not directly resolvable. At the flare trigger site, opposite polarity
fields of 2700 and 1000 G occurred within a single 2" resolution
element, as revealed by two resolved Zeeman splittings in a single
spectrum. Our results imply an extremely high horizontal field strength
gradient (5 G km-1) prior to the flare, significantly greater
than seen in previous studies. We also find that the magnetic energy of
the cancelling fields was more than sufficient to account for the
flare's X-ray luminosity.
Publication Information
Output type
Research Output:
Contribution to journal
Article
Peer-reviewOriginal language
EnglishPages from-to (Number of pages)
Pages 1043-1048 (6 pages)Journal (Volume, Issue Number)
Astrophysical Journal (Volume 568, Issue 2 I)Publication milestones
- Published - 01/04/2002
Publication status
Published - 01/04/2002
ISSN
0004-637XPublication IDs
- Scopus: 0038051771
