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EUVE observations of Algol: Detection of a continuum and implications for the coronal (Fe/H) abundanceWe report results from the first extreme ultraviolet spectrum of the prototypical eclipsing binary Algol (beta Per), obtained with the spectrometers on the Extreme Ultraviolet Explorer (EUVE). The Algol spectrum in the 80-350 A range is dominated by emission lines of Fe XVI-XXIV, and the He II 304 A line. The Fe emission is characteristic of high-temperature plasma at temperatures up to at least log T approximately 7.3 K. We have successfully modeled the observed quiescent spectrum using a continuous emission measure distribution with the bulk of the emitting material at log T greater than 6.5. We are able to adequately fit both the coronal lines and continuum data with a cosmic abundance plasma, but only if Algol's quiescent corona is dominated by material at log T greater than 7.5, which is physically ruled out by prior X-ray observations of the quiescent Algol spectrum. Since the coronal (Fe/H) abundance is the principal determinant of the line-to-continuum ratio in the EUV, allowing the abundance to be a free parameter results in models with a range of best-fit abundances approximately = 15%-40% of solar photospheric (Fe/H). Since Algol's photospheric (Fe/H) appears to be near-solar, the anomalous EUV line-to-continuum ratio could either be the result of element segregation in the coronal formation process, or other, less likely mechanisms that may enhance the continuum with respect to the lines.
Document ID
19950055831
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Stern, Robert A.
(Lockheed Palo Alto Research Laboratory, Palo Alto, CA United States)
Lemen, James R.
(Lockheed Palo Alto Research Laboratory, Palo Alto, CA United States)
Schmitt, Jurgen H. M. M.
(University of Califonia, Berkeley, CA United States)
Pye, John P.
(University of Leicester, Leicester, England United Kingdom)
Date Acquired
August 16, 2013
Publication Date
May 1, 1995
Publication Information
Publication: Astrophysical Journal, Part 2 - Letters
Volume: 444
Issue: 1
ISSN: 0004-637X
Subject Category
Astronomy
Accession Number
95A87430
Funding Number(s)
CONTRACT_GRANT: NAS5-32492
Distribution Limits
Public
Copyright
Other

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