Infrared colours and inferred masses of metal-poor giant stars in the Kepler field
arXiv:1805.12133 · doi:10.1093/mnras/sty1208
Abstract
Intrinsically luminous giant stars in the Milky Way are the only potential volume-complete tracers of the distant disk, bulge, and halo. The chemical abundances of metal-poor giants also reflect the compositions of the earliest star-forming regions, providing the initial conditions for the chemical evolution of the Galaxy. However, the intrinsic rarity of metal-poor giants combined with the difficulty of efficiently identifying them with broad-band optical photometry has made it difficult to exploit them for studies of the Milky Way. We re-derive a giant star photometric selection using existing public g-band and narrow-band DDO51 photometry obtained in the Kepler field. Our selection is simple and yields a contamination rate of main-sequence stars of 1% and a completeness of about 80% for giant stars with K - subject to the selection function of the spectroscopic surveys used to estimate these rates, and the magnitude range considered (). While the DDO51 filter is known to be sensitive to stellar surface gravity, we further show that the mid-infrared colours of DDO51-selected giants are strongly correlated with spectroscopic metallicity. This extends the infrared selection developed by Schlaufman & Casey, demonstrating that the principal contaminants in their selection can be efficiently removed by the photometric separation of dwarfs and giants. This implies that any similarly efficient dwarf/giant discriminant (e.g., Gaia) can be used with WISE colours to select samples of giant stars with high completeness and low contamination. We employ our photometric selection to identify three metal-poor giant candidates in the Kepler field with global asteroseismic parameters and find that masses inferred for these three stars using standard asteroseismic scaling relations are systematically over-estimated by 20-175%. [abridged]
Accepted to MNRAS
References in corpus (18)
- The Eleventh and Twelfth Data Releases of the Sloan Digital Sky Survey: Final Data from SDSS-III
- Sloan Digital Sky Survey IV: Mapping the Milky Way, Nearby Galaxies, and the Distant Universe
- The First Data Release (DR1) of the LAMOST general survey
- The Fourteenth Data Release of the Sloan Digital Sky Survey: First Spectroscopic Data from the extended Baryon Oscillation Spectroscopic Survey and from the second phase of the Apache Point Observatory Galactic Evolution Experiment
- Asteroseismology and Gaia: Testing Scaling Relations Using 2200 Kepler Stars with TGAS Parallaxes
- Stellar population synthesis based modelling of the Milky Way using asteroseismology of 13000 Kepler red giants
- Testing the asteroseismic scaling relations for Red Giants with Eclipsing Binaries Observed by Kepler
- The Best and Brightest Metal-Poor Stars
- The First Detailed Abundances for M giants in the inner Bulge from Infrared Spectroscopy
- Significantly improving stellar mass and radius estimates: A new reference function for the Δν scaling relation
- A Sensitive Identification of Warm Debris Disks in the Solar Neighborhood Through Precise Calibration of Saturated WISE Photometry
- Chemistry of the Most Metal-poor Stars in the Bulge and the z > 10 Universe
- Exploring Halo Substructure with Giant Stars: The Nature of the Triangulum-Andromeda Stellar Features
- The ability of intermediate-band Stromgren photometry to correctly identify dwarf, subgiant, and giant stars and provide stellar metallicities and surface gravities
- The SEGUE K Giant Survey. III. Quantifying Galactic Halo Substructure
- Selecting M-giants with infra-red photometry: Distances, metallicities and the Sagittarius stream
- Exposing Sgr tidal debris behind the Galactic disk with M giants selected in WISE2MASS
- The Stellar Density Profile of the Distant Galactic Halo
Cited by in corpus (8)
- Overview of the LAMOST- project
- Photometric segregation of dwarf and giant FGK stars using the SVO Filter Profile Service and photometric tools
- Magellanic Mayhem: Metallicities and Motions
- Star Formation Timescales of the Halo Populations from Asteroseismology and Chemical Abundances
- Masses and ages for metal-poor stars: a pilot program combining asteroseismology and high-resolution spectroscopic follow-up of RAVE halo stars
- A machine learning approach to photometric metallicities of giant stars
- The Stellar Abundances and Galactic Evolution Survey (SAGES). IV. Surface Gravity Estimation and Giant-Dwarf Separation with the DDO51 Filter
- The Stellar Abundances and Galactic Evolution Survey (SAGES). V. The First Data Release of the DDO51 Band