The Age of the Oldest Stars in the Local Galactic Disk From Hipparcos Parallaxes of G and K Subgiants
arXiv:astro-ph/0307128 · doi:10.1086/378243
Abstract
We review the history of the discovery of field subgiant stars and their importance in the age dating of the Galactic disk. We use the cataloged data from the Hipparcos satellite in this latter capacity. Based on Hipparcos parallaxes accurate to 10% or better, the absolute magnitude of the lower envelope of the nearly horizontal subgiant sequence for field stars in the H-R diagram for B-V colors between 0.85 and 1.05 is measured to be M_V = 4.03 +/- 0.06. The age of the field stars in the solar neighborhood is found to be 7.9 +/- 0.7 Gyr by fitting the theoretical isochrones for [Fe/H] = +0.37 to the lower envelope of the Hipparcos subgiants. The same grid of isochrones yields ages, in turn, of 4.0 +/- 0.2 Gyr, 6.2 +/- 0.5 Gyr, and 7.5 to 10 Gyr for the old Galactic clusters M67, NGC188, and NGC6791. The ages of both the Galactic disk in the solar neighborhood and of NGC6791 are, nevertheless, likely between 3 and 5 Gyr younger than the oldest halo globular clusters, which have ages of 13.5 Gyr. The most significant results are (1) the supermetallicity of the oldest local disk stars, and (2) the large age difference between the most metal-poor component of the halo and the thick and thin disk in the solar neighborhood. These facts are undoubtedly related and pose again the problem of the proper scenario for the timing of events in the formation of the halo and the Galactic disk in the solar neighborhood. [Abstract Abridged]
44 pages, 12 Figures; accepted for publication in PASP; high resolution versions of Figures 1, 2, 6 and 9 available at http://bubba.ucdavis.edu/~lubin/Sandage/
References in corpus (1)
Cited by in corpus (34)
- The Geneva-Copenhagen survey of the Solar neighbourhood: Ages, metallicities, and kinematic properties of 14,000 F and G dwarfs
- Ages for illustrative field stars using gyrochronology: viability, limitations and errors
- S4N: A Spectroscopic Survey of Stars in the Solar Neighborhood
- Galaxy Disks
- On the Metal-Richness of M Dwarfs with Planets
- The age of the oldest Open Clusters
- The Detailed Star Formation History in the Spheroid, Outer Disk, and Tidal Stream of the Andromeda Galaxy
- The Ages of the Thin Disk, Thick Disk, and the Halo from Nearby White Dwarfs
- New Period-Luminosity and Period-Color Relations of Classical Cepheids: II. Cepheids in LMC
- Do most planetary nebulae derive from binaries? I Population synthesis model of the galactic planetary nebula population produced by singlestars and binaries
- HST Observations of the White Dwarf Cooling Sequence of M4
- Dynamics of Galactic Disks and Mergers at z~1.6: Spatially Resolved Spectroscopy with Keck Laser Guide Star Adaptive Optics
- The Pan-Pacific Planet Search. I. A Giant Planet Orbiting 7 CMa
- New period-luminosity and period-color relations of classical Cepheids: III. Cepheids in SMC
- Integral Field Spectroscopy of a Candidate Disk Galaxy at z~1.5 using Laser Guide Star Adaptive Optics
- A barium central star binary in the Type-I diamond ring planetary nebula Abell 70
- The Physical Parameters of the Retired A Star HD185351
- OCCASO II. Physical parameters and Fe abundances of Red Clump stars in 18 Open Clusters
- An Ultra Metal-poor Star Near the Hydrogen-burning Limit
- An Examination of Recent Transformations to the BV(RI)_C Photometric System from the Perspective of Stellar Models for Old Stars
- Close binary stars in the solar-age Galactic open cluster M67
- A Star Catalog for the Open Cluster NGC188
- Fiducial Stellar Population Sequences for the VJKs Photometric System
- Subgiants as probes of galactic chemical evolution
- A New Absolute Magnitude Calibration for Red Clump Stars
- Sulfur isotope ratios in the Large Magellanic Cloud
- Comparison of Hipparcos Trigonometric and Mount Wilson Spectroscopic Parallaxes for 90 Subgiants that Defined the Class in 1935
- The age of the Galaxy's thick disk
- Flare Activity and Magnetic Feature Analysis of the Flare Stars II: Sub-Giant Branch
- Absolute Magnitude Calibration for Red Giants based on the Colour-Magnitude Diagrams of Galactic Clusters. I- Calibration with V and (B-V)
- MAISTEP -- a new grid-based machine learning tool for inferring stellar parameters I. Ages of giant-planet host stars
- Absolute Magnitude Calibration for Red Giants based on the Colour-Magnitude Diagrams of Galactic Clusters. III-Calibration with 2MASS
- Absolute Magnitude Calibration for Giants based on the Colour-Magnitude Diagrams of Galactic Clusters. II-Calibration with SDSS
- Metallicity Dependent Transformations for Red Giants with Synthetic Colours of UBV and ugr