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Multi-wavelength Radio Continuum Emission Studies of Dust-free Red GiantsMulti-wavelength centimeter continuum observations of non-dusty, non-pulsating K spectral-type red giants directly sample their chromospheres and wind acceleration zones. Such stars are feeble emitters at these wavelengths, however, and previous observations have provided only a small number of modest signal-to-noise measurements slowly accumulated over three decades. We present multi-wavelength Karl G. Jansky Very Large Array thermal continuum observations of the wind acceleration zones of two dust-free red giants, Arcturus (alpha Boo: K2 III) and Aldebaran (alpha Tau: K5 III). Importantly, most of our observations of each star were carried out over just a few days, so that we obtained a snapshot of the different stellar atmospheric layers sampled at different wavelengths, independent of any long-term variability. We report the first detections at several wavelengths for each star including a detection at 10 cm (3.0 GHz: S band) for both stars and a 20 cm (1.5 GHz: L band) detection for alpha Boo. This is the first time single (non-binary) luminosity class III red giants have been detected at these continuum wavelengths. Our long-wavelength data sample the outer layers of alpha Boo's atmosphere where its wind velocity is approaching (or possibly has reached) its terminal value and the ionization balance is becoming frozen-in. For alpha Tau, however, our long-wavelength data are still sampling its inner atmosphere, where the wind is still accelerating probably due to its lower mass-loss rate. We compare our data with published semi-empirical models based on ultraviolet data, and the marked deviations highlight the need for new atmospheric models to be developed. Spectral indices are used to discuss the possible properties of the stellar atmospheres, and we find evidence for a rapidly cooling wind in the case of alpha Boo. Finally, we develop a simple analytical wind model for alpha Boo based on our new long-wavelength flux measurements.
Document ID
20150000257
Acquisition Source
Goddard Space Flight Center
Document Type
Reprint (Version printed in journal)
Authors
O'Gorman, Eamon
(Trinity Coll. Dublin, Ireland)
Harper, Graham M.
(Trinity Coll. Dublin, Ireland)
Brown, Alexander
(Colorado Univ. Boulder, CO, United States)
Dranke, Stephen
(Universities Space Research Association Greenbelt, MD, United States)
Richards, Anita M. S.
(Manchester Univ. United Kingdom)
Date Acquired
January 8, 2015
Publication Date
September 12, 2013
Publication Information
Publication: The Astrophysical Journal
Publisher: The American Astronomical Society
Volume: 146
Issue: 4
Subject Category
Solar Physics
Report/Patent Number
GSFC-E-DAA-TN12693
Funding Number(s)
CONTRACT_GRANT: NNG06EO90A
CONTRACT_GRANT: SFI11/RFP.1/AST/3064
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
chromospheres
radio continuum
outflows
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