Disentangling the Galactic Halo with APOGEE: II. Chemical and Star Formation Histories for the Two Distinct Populations
arXiv:1711.06225 · doi:10.3847/1538-4357/aa9ced
Abstract
The formation processes that led to the current Galactic stellar halo are still under debate. Previous studies have provided evidence for different stellar populations in terms of elemental abundances and kinematics, pointing to different chemical and star-formation histories. In the present work we explore, over a broader range in metallicity (-2.2 < [Fe/H] < -0.5), the two stellar populations detected in the first paper of this series from metal-poor stars in DR13 of the Apache Point Observatory Galactic Evolution Experiment (APOGEE). We aim to infer signatures of the initial mass function (IMF) and the most APOGEE-reliable alpha-elements (O, Mg, Si and Ca). Using simple chemical-evolution models, for each population. Compared with the low-alpha population, we obtain a more intense and longer-lived SFH, and a top-heavier IMF for the high-alpha population.
References in corpus (17)
- The 2.5 m Telescope of the Sloan Digital Sky Survey
- Galactic chemical evolution: Carbon through Zinc
- Two Stellar Components in the Halo of the Milky Way
- A systematic variation of the stellar initial mass function in early-type galaxies
- The Dual Origin of Stellar Halos
- The stellar halo of the Galaxy
- Exploring Anticorrelations and Light Element Variations in Northern Globular Clusters Observed by the APOGEE Survey
- A Synoptic Map of Halo Substructures from the Pan-STARRS1 3π Survey
- Nucleosynthesis Predictions for Intermediate-Mass AGB Stars: Comparison to Observations of Type I Planetary Nebulae
- ATLAS lifts the Cup: Discovery of a New Milky Way satellite in Crater
- Fashionably Late? Building up the Milky Way's Inner Halo
- IMF shape constraints from stellar populations and dynamics from CALIFA
- The Complex Structure of Stars in the Outer Galactic Disk as revealed by Pan-STARRS1
- Deep SDSS optical spectroscopy of distant halo stars II. Iron, calcium, and magnesium abundances
- The origin of low [alpha/Fe] ratios in extremely metal-poor stars
- A comprehensive view of the Virgo Stellar Stream
- Self-similarity in the chemical evolution of galaxies and the delay time distribution of SNe Ia
Cited by in corpus (39)
- Streams, substructures and the early history of the Milky Way
- Evidence from the H3 Survey that the Stellar Halo is Entirely Comprised of Substructure
- Kraken reveals itself -- the merger history of the Milky Way reconstructed with the E-MOSAICS simulations
- From dawn till disk: Milky Way's turbulent youth revealed by the APOGEE+Gaia data
- The Global Dynamical Atlas of the Milky Way mergers: Constraints from Gaia EDR3 based orbits of globular clusters, stellar streams and satellite galaxies
- Reconstructing the Last Major Merger of the Milky Way with the H3 Survey
- APOGEE Chemical Abundance Patterns of the Massive Milky Way Satellites
- The Fall of a Giant. Chemical evolution of Enceladus, alias the Gaia Sausage
- Chronologically dating the early assembly of the Milky Way
- Weighing the stellar constituents of the Galactic halo with APOGEE red giant stars
- Selecting accreted populations: metallicity, elemental abundances, and ages of the Gaia-Sausage-Enceladus and Sequoia populations
- The GALAH Survey: Chemical tagging and chrono-chemodynamics of accreted halo stars with GALAH+ DR3 and eDR3
- Reconstructing the Disrupted Dwarf Galaxy -Sausage/Enceladus Using its Stars and Globular Clusters
- Galactic Archaeology with Gaia
- -process enhancements of Gaia-Enceladus in GALAH DR3
- GASTRO library I: the simulated chemodynamical properties of several GSE-like stellar halos
- Evidence from Disrupted Halo Dwarfs that -process Enrichment via Neutron Star Mergers is Delayed by Myrs
- High-precision chemical abundances of Galactic building blocks. The distinct chemical abundance sequence of Sequoia
- The stellar velocity distribution function in the Milky Way galaxy
- The detailed chemical abundance patterns of accreted halo stars from the optical to infrared
- Local RR Lyrae Stars: native and alien
- Jurassic: A Chemically Anomalous Structure in the Galactic Halo
- The stellar halo in Local Group Hestia simulations II. The accreted component
- How the origin of stars in the Galaxy impacts the composition of planetary building blocks
- Exploring the diversity and similarity of radially anisotropic Milky Way-like stellar haloes: implications for disrupted dwarf galaxy searches
- Origin of metals in old Milky Way halo stars based on GALAH and Gaia
- Elemental Abundances in M31: Properties of the Inner Stellar Halo
- A new set of chisels for Galactic archaeology: Sc, V and Zn as taggers of accreted globular clusters
- Understanding the early stages of galaxy formation using very metal-poor stars from the Hamburg/ESO survey
- On the metal-poor edge of the Milky Way "thin disc"
- Exploring the chemodynamics of metal-poor stellar populations
- Radial velocities in the outermost disk toward the anticenter
- Existence of the Metal-Rich Stellar Halo and High-velocity Thick Disk in the Galaxy
- Chronology of our Galaxy from Gaia colour-magnitude diagram fitting (ChronoGal) -- III. Age and metallicity distribution of Gaia-Sausage-Enceladus stars near the Sun
- Role of host galaxy in the formation of multiple stellar populations: Analysis of NGC 1786 and NGC 1898
- Build-up and survival of the disc: From numerical models of galaxy formation to the Milky Way
- Caveats about measuring carbon abundances in stars using the CH band
- Chemical evolution history of MaNGA galaxies
- An ancient system hidden in the Galactic plane?