The K giant star Arcturus: the hybrid nature of its infrared spectrum
arXiv:0907.0065 · doi:10.1051/0004-6361/200912323
Abstract
We study infrared spectrum of Arcturus to clarify the nature of the cool component of its atmosphere, referred to as the CO-mosphere, with the use of the IR spectral atlas by Hinkle et al.(1995). The nature of CO lines shows an abrupt change at logW/nu = -4.75, and the lines stronger than this limit can no longer be analyzed by the classical line-formation theory. A more simple manifestation of this fact is that the curves-of-growth (CG) of CO lines show an unpredictable upturn at logW/nu = -4.75. Similar unusual behaviors of empirical CG are confirmed in other red (super)giant stars, and it looks as if the CG is a hybrid of at least two components of different origins. Although strong lines of the CO fundamentals observed in Arcturus show strengthening compared with the predicted photospheric spectrum, the weaker lines show slight weakening, and we interpret these results as due to absorption/emission by the molecular clouds formed in the extended atmosphere. Now do clouds exist in stellar atmospheres? It is by no means easy to answer this question by spectroscopic observations alone, but we find several arguments in favor of such a possibility in Arcturus by analyzing the CO lines. In cooler (super)giant stars in which CO lines show similar unusual behaviors as in Arcturus, the presence of molecular clouds in the outer atmospheres was demonstrated by direct observations with spatial interferometry. We suggest that the formation of molecular clouds is a general feature in cool luminous stars from early K to late M (super)giant stars.
18 pages, 15 Postscript figures, 1 Table in electronic form, Accepted for publication in Astronomy and Astrophysics
References in corpus (9)
- A comparison of chemistry and dust cloud formation in ultracool dwarf model atmospheres
- Too little radiation pressure on dust in the winds of oxygen-rich AGB stars
- Winds of M- and S-type AGB stars: an unorthodox suggestion for the driving mechanism
- Cool luminous stars: the hybrid nature of their infrared spectra -- Carbon, oxygen, and their isotopic abundances in 23 K - M giant stars
- The molecular and dusty composition of Betelgeuse's inner circumstellar environment
- The limb-darkened Arcturus; Imaging with the IOTA/IONIC interferometer
- Pre-maximum spectro-imaging of the Mira star T Lep with AMBER/VLTI
- Infrared Spectra and Visibilities as Probes of the Outer Atmospheres of Red Supergiant Stars
- Water vapor on supergiants. The 12 micron TEXES spectra of mu Cephei
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