Fine structure of the age-chromospheric activity relation in solar-type stars I: The Ca II infrared triplet: Absolute flux calibration
arXiv:1608.02288 · doi:10.1051/0004-6361/201628825
Abstract
Strong spectral lines are useful indicators of stellar chromospheric activity. They are physically linked to the convection efficiency, differential rotation, and angular momentum evolution and are a potential indicator of age. However, for ages > 2 Gyr, the age-activity relationship remains poorly constrained thus hampering its full application. The Ca II infrared triplet (IRT lines) has been poorly studied compared to classical chromospheric indicators. We report in this paper absolute chromospheric fluxes in the three Ca II IRT lines, based on a new calibration tied to up-to-date model atmospheres. We obtain the Ca II IRT absolute fluxes for 113 FGK stars from high signal-to-noise ratio and high-resolution spectra covering an extensive domain of chromospheric activity levels. We perform an absolute continuum flux calibration for the Ca II IRT lines anchored in atmospheric models calculated as an explicit function of effective temperatures, metallicity, and gravities avoiding the degeneracy present in photometric continuum calibrations based solely on color indices. The internal uncertainties achieved for continuum absolute flux calculations are 2\% of the solar chromospheric flux, one order of magnitude lower than photometric calibrations. We gauge the impact of observational errors on the final chromospheric fluxes due to the absolute continuum flux calibration and find that uncertainties are properly mitigated by the photospheric correction leaving [Fe/H] as the dominating factor in the chromospheric flux uncertainty. Across the FGK spectral types, the Ca II IRT lines are sensitive to chromospheric activity. The reduced internal uncertainties reported here enable us to build a new chromospheric absolute flux scale and explore the age-activity relation from the active regime down to very low activity levels and a wide range of , mass, [Fe/H], and age.
12 pages, 12 figures, 6 tables, Accepted for publication on A&A. Abstract edited to comply with arXiv standards regarding the number of characters
References in corpus (6)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Improved Age Estimation for Solar-Type Dwarfs Using Activity-Rotation Diagnostics
- The Solar Twin Planet Search. I. Fundamental parameters of the stellar sample
- The solar chromosphere at high resolution with IBIS. I. New insights from the Ca II 854.2 nm line
- M dwarf luminosity, radius, and -enrichment from -band spectral features
- Accurate Atmospheric Parameters at Moderate Resolution Using Spectral Indices: Preliminary Application to the MARVELS Survey
Cited by in corpus (8)
- The MUSCLES Treasury Survey IV: Scaling Relations for Ultraviolet, Ca II K, and Energetic Particle Fluxes from M Dwarfs
- Stellar Chromospheric Activity Database of Solar-like Stars Based on the LAMOST Low-Resolution Spectroscopic Survey
- The peculiar chemical pattern of the WASP-160 binary system: signatures of planetary formation and evolution?
- A detailed understanding of the rotation-activity relationship using the 300 Myr old open cluster NGC 3532
- Fine Structure of the Age-Chromospheric Activity Relation in Solar-Type Stars: II. H Line
- M dwarf spectral indices at moderate resolution: accurate and [Fe/H] for 178 southern stars
- Precise Masses and Orbits for Nine Radial Velocity Exoplanets
- EMISSA: Exploring millimetre indicators of solar-stellar activity III. Comparison of Ca II indices and millimetre continua in a 3D model atmosphere