The Near-Ultraviolet Continuum of Late-Type Stars
arXiv:astro-ph/0001508 · doi:10.1086/301340
Abstract
Analyses of the near-ultraviolet continuum of late-type stars have led to controversial results regarding the performance of state-of-the-art model atmospheres. The release of the homogeneous IUE final archive and the availability of the high-accuracy Hipparcos parallaxes provide an opportunity to revisit this issue, as accurate stellar distances make it possible to compare observed absolute fluxes with the predictions of model atmospheres. The near-UV continuum is highly sensitive to Teff and [Fe/H], and once the gravity is constrained from the parallax, these parameters may be derived from the analysis of low-dispersion "long-wavelength" (2000-3000 A) IUE spectra for stars previously studied by Alonso et al. (1996; A&AS 117, 227) using the Infrared Flux Method (IRFM). A second comparison is carried out against the stars spectroscopically investigated by Gratton et al. (1996; A&A 314, 191). It is shown that there is a good agreement between Teffs obtained from the IRFM and from the near-UV continuum, and a remarkable correspondence between observed and synthetic fluxes for stars with 4000 <= Teff <= 6000 K of any metallicity and gravity. These facts suggest that model atmospheres provide an adequate description of the near-UV continuum forming region and that the opacities involved are essentially understood. For cooler stars, the results of the IRFM are no longer reliable, as shown by Alonso et al., but the discrepancy noticed for stars hotter than 6000 K may reflect problems in the model atmospheres and/or the opacities at these higher temperatures.
22 pages, 8 figures; an AASTeX v5.0 LaTeX2e document; uses graphicx.sty (included); to appear in the Astronomical Journal
References in corpus (2)
Cited by in corpus (18)
- New Analyses of Star-to-Star Abundance Variations Among Bright Giants in the Mildly Metal-Poor Globular Cluster M5
- A Method for Determining the Physical Properties of the Coldest Known Brown Dwarfs
- Oxygen in the Very Early Galaxy
- Testing the Accuracy of Synthetic Stellar Libraries
- Empirically Constrained Color-Temperature Relations. II. uvby
- Beryllium abundances in stars hosting giant planets
- The Composite Spectrum of BOSS Quasars Selected for Studies of the Lyman-alpha Forest
- UVES Be observations of early-G dwarfs in old clusters
- Non-LTE Model Atmospheres for Late-Type Stars II. Restricted NLTE Calculations for a Solar-Like Atmosphere
- On the nature of Lithium-rich giant stars: constraints from Beryllium abundances
- Shallow extra mixing in solar twins inferred from Be abundances
- Beryllium anomalies in solar-type field stars
- Modeling Mid-Ultraviolet Spectra. I. Temperatures of Metal-Poor Stars
- Fundamental Parameters and Abundances of Metal-Poor Stars: The SDSS Standard BD +17 4708
- A Study of the Near-Ultraviolet Spectrum of Vega
- Beryllium abundances in stars with planets:Extending the sample
- Angular diameter estimation of interferometric calibrators - Example of lambda Gruis, calibrator for VLTI-AMBER
- A Cautionary Tale: MARVELS Brown Dwarf Candidate Reveals Itself To Be A Very Long Period, Highly Eccentric Spectroscopic Stellar Binary