Chemical Inhomogeneities in the Milky Way Stellar Halo
arXiv:0810.3648 · doi:10.1088/0004-6256/137/1/272
Abstract
We have compiled a sample of 699 stars from the recent literature with detailed chemical abundance information (spanning -4.2 < [Fe/H] < +0.3), and we compute their space velocities and Galactic orbital parameters. We identify members of the inner and outer stellar halo populations in our sample based only on their kinematic properties and then compare the abundance ratios of these populations as a function of [Fe/H]. In the metallicity range where the two populations overlap (-2.5 < [Fe/H] < -1.5), the mean [Mg/Fe] of the outer halo is lower than the inner halo by ~0.1 dex. For [Ni/Fe] and [Ba/Fe], the star-to-star abundance scatter of the inner halo is consistently smaller than in the outer halo. The [Na/Fe], [Y/Fe], [Ca/Fe], and [Ti/Fe] ratios of both populations show similar means and levels of scatter. Our inner halo population is chemically homogeneous, suggesting that a significant fraction of the Milky Way stellar halo originated from a well-mixed ISM. In contrast, our outer halo population is chemically diverse, suggesting that another significant fraction of the Milky Way stellar halo formed in remote regions where chemical enrichment was dominated by local supernova events. We find no abundance trends with maximum radial distance from the Galactic center or maximum vertical distance from the Galactic disk. We also find no common kinematic signature for groups of metal-poor stars with peculiar abundance patters, such as the alpha-poor stars or stars showing unique neutron-capture enrichment patterns. Several stars and dSph systems with unique abundance patterns spend the majority of their time in the distant regions of the Milky Way stellar halo, suggesting that the true outer halo of the Galaxy may have little resemblance to the local stellar halo.
Accepted for publication in AJ. Full tables available upon request
References in corpus (30)
- Two Stellar Components in the Halo of the Milky Way
- The Milky Way Tomography with SDSS: II. Stellar Metallicity
- Nucleosynthetic signatures of the first stars
- The SEGUE Stellar Parameter Pipeline. I. Description and Initial Validation Tests
- The accretion origin of the Milky Way's stellar halo
- First Stars VIII -- Enrichment of the neutron-capture elements in the early Galaxy
- The SEGUE Stellar Parameter Pipeline. III. Comparison with High-Resolution Spectroscopy of SDSS/SEGUE Field Stars
- Near-UV Observations of HD221170: New Insights into the Nature of r-Process-Rich Stars
- HE 0557-4840 - Ultra-Metal-Poor and Carbon-Rich
- The exotic chemical composition of the Sagittarius dwarf Spheroidal galaxy
- Neutron-capture elements in the very metal-poor star HD122563
- The ACS Survey of Galactic Globular Clusters: M54 and Young Populations in the Sagittarius Dwarf Spheroidal Galaxy
- The stellar content of the Hamburg/ESO survey. IV. Selection of candidate metal-poor stars
- Bright Metal-Poor Stars from the Hamburg/ESO Survey. I. Selection and Follow-up Observations from 329 Fields
- The rp-Process in Neutrino-driven Winds
- HE 1327-2326, an unevolved star with [Fe/H]<-5.0. II. New 3D-1D corrected abundances from a VLT/UVES spectrum
- Complexity on Small Scales III: Iron and alpha Element Abundances in the Carina Dwarf Spheroidal Galaxy
- A 2MASS All-Sky View of the Sagittarius Dwarf Galaxy: Variation of the Metallicity Distribution Function Along the Sagittarius Stream
- Neutron-capture elements in the very metal-poor star HD88609: another st ar with excesses of light neutron-capture elements
- Chemical Abundances and Kinematics in Globular Clusters and Local Group Dwarf Galaxies and Their Implications for Formation Theories of the Galactic Halo
- Proper Motions of Dwarf Spheroidal Galaxies from Hubble Space Telescope Imaging. IV: Measurement for Sculptor
- Halo Star Streams in the Solar Neighborhood
- Evidence for Distinct Components of the Galactic Stellar Halo from 838 RR Lyrae Stars Discovered in the LONEOS-I Survey
- Abundances of Sr, Y, and Zr in Metal-Poor Stars and Implications for Chemical Evolution in the Early Galaxy
- Heavy element abundances in giant stars of the globular clusters M4 and M5
- Cold r-Process in Neutrino-Driven Winds
- Carbon and Strontium Abundances of Metal-Poor Stars
- Detection of a population gradient in the Sagittarius Stream
- Chemical Abundances of the Leo II Dwarf Galaxy
- Kinematic Structure in the Galactic Halo at the North Galactic Pole: RR Lyrae and BHB Stars show different kinematics
Cited by in corpus (12)
- The Chemical Evolution of the Draco Dwarf Spheroidal Galaxy
- Multi-Element Abundance Measurements from Medium-Resolution Spectra. II. Catalog of Stars in Milky Way Dwarf Satellite Galaxies
- Silver and palladium help unveil the nature of a second r-process
- Detailed Abundances of Two Very Metal-Poor Stars in Dwarf Galaxies
- The formation of the Milky Way halo and its dwarf satellites; a NLTE-1D abundance analysis. II. Early chemical enrichment
- Improved V II log() Values, Hyperfine Structure Constants, and Abundance Determinations in the Photospheres of the Sun and Metal-poor Star HD 84937
- The Distribution of Alpha Elements in Andromeda Dwarf Galaxies
- FORS2/VLT survey of Milky Way globular clusters I. Description of the method for derivation of metal abundances in the optical and application to NGC 6528, NGC 6553, M 71, NGC 6558, NGC 6426 and Terzan 8
- [/Fe] Abundances of Four Outer M 31 Halo Stars
- What is the Milky Way outer halo made of? High resolution spectroscopy of distant red giants
- Spectroscopy of high proper motion stars in the ground--based UV
- Demonstration of Plate Analysis, an algorithm for precise relative astrometry