The Stellar Abundances for Galactic Archaeology (SAGA) Database III - Analysis of Enrichment Histories for Elements and Two Modes of Star Formation during the Early Evolution of Milky Way
arXiv:1309.3430 · doi:10.1093/mnras/stt1652
Abstract
We study the enrichment histories for nine elements, C, four alpha-elements of Mg, Si, Ca, and Ti, Sc, and three iron-peak elements of Co, Ni, and Zn, by using a large number of stellar data, collected by the Stellar Abundances for Galactic Archaeology (SAGA) database. We find statistically significant changes, or breaks, of the mean abundance ratios to iron at three metallicities of [Fe/H]-1.8, -2.2, and -3.3. Across the first one, the mean abundance ratios decrease with the metallicity by similar extents for all the elements with the sufficient data. Across the latter two, downward trends with the metallicity are also detected but for limited elements, C, Co, Zn, and possibly Sc, and for two of Co and Zn, respectively. The breaks define four stellar populations with the different abundance patters which are dominant in each metallicity range divided by the breaks, Pop IIa, IIb, IIc, and IId in order of increasing metallicity. We also explore their spatial distributions with the spectroscopic distances to demonstrate that Pops IIa and IIb spread over the Galactic halo while Pops IIc and IId are observed near the Galactic plane. In particular, Pop IIc stars emerge around [Fe/H] -2.6 and coexist with Pop IIb stars, segregated by the spatial distributions. Our results reveal two distinct modes of star formation during the early stages of Galaxy formation, which are associated with the variations of IMF and the spatial distribution of remnant low-mass stars. For the two lower-metallicity populations, the enhancements of Zn and Co indicate a high-mass and top-heavy IMF together with the statistics on the carbon-enhanced stars. We discuss the relevance to the kinematically resolved structures of the Galactic halo and the possible sites of these populations within the framework of hierarchical structure formation scenario.
19 pages, 16 figures, submitted to MNRAS on January, 21 and accepted on August, 23
References in corpus (15)
- Two Stellar Components in the Halo of the Milky Way
- alpha-, r-, and s-process element trends in the Galactic thin and thick disks
- Carbon Enhanced Metal-Poor Stars. I. Chemical Compositions of 26 Stars
- First stars VI - Abundances of C, N, O, Li, and mixing in extremely metal-poor giants. Galactic evolution of the light elements
- Improved Laboratory Transition Probabilities for Neutral Chromium and Re-determination of the Chromium Abundance for the Sun and Three Stars
- First stars IX -Mixing in extremely metal-poor giants. Variation of the 12C/13C, [Na/Mg] and [Al/Mg] ratios
- Sulphur and zinc abundances in Galactic halo stars revisited
- Multi-Element Abundance Measurements from Medium-Resolution Spectra. IV. Alpha Element Distributions in Milky Way Dwarf Satellite Galaxies
- New Extremely Metal-Poor Stars in the Galactic Halo
- Carbon Stars in the Hamburg/ESO Survey: Abundances
- Kinematic Decoupling of Globular Clusters with Extended Horizontal-Branch
- Evidence for Distinct Components of the Galactic Stellar Halo from 838 RR Lyrae Stars Discovered in the LONEOS-I Survey
- A high-resolution spectral analysis of three carbon-enhanced metal-poor stars
- A New Type of Extremely Metal Poor Star
- Spectroscopy of high proper motion stars in the ground--based UV
Cited by in corpus (55)
- Observational Constraints on First-Star Nucleosynthesis. I. Evidence for Multiple Progenitors of CEMP-no Stars
- Reconstructing the star formation history of the Milky Way disc(s) from chemical abundances
- Galactic evolution of rapid neutron capture process abundances: the inhomogeneous approach
- Stellar Yields of Rotating First Stars. II. Pair Instability Supernovae and Comparison with Observations
- Four-hundred Very Metal-Poor Stars Studied with LAMOST and Subaru. II. Elemental abundances
- Enrichment of r-process elements in dwarf spheroidal galaxies in chemo-dynamical evolution model
- Origin of the excess of high-energy retrograde stars in the Galactic halo
- Stellar Abundances for Galactic Archaeology Database IV - Compilation of Stars in Dwarf Galaxies
- Galactic Archeology with the AEGIS Survey: The Evolution of Carbon and Iron in the Galactic Halo
- Bright Metal-Poor Stars from the Hamburg/ESO Survey. II. A Chemodynamical Analysis
- Benchmark stars for Gaia: fundamental properties of the Population II star HD140283 from interferometric, spectroscopic and photometric data
- Constraining cosmic scatter in the Galactic halo through a differential analysis of metal-poor stars
- Contribution of Neutron Star Mergers to the R-process Chemical Evolution in the Hierarchical Galaxy Formation
- Classification of extremely metal-poor stars: absent region in A(C)-[Fe/H] plane and the role of dust cooling
- Chemistry of the Most Metal-poor Stars in the Bulge and the z > 10 Universe
- The New Model of Chemical Evolution of r-process Elements Based on The Hierarchical Galaxy Formation I: Ba and Eu
- The Mass Distribution of Population III Stars
- Nucleosynthesis in 2D Core-Collapse Supernovae of 11.2 and 17.0 M Progenitors: Implications for Mo and Ru Production
- An Ultra Metal-poor Star Near the Hydrogen-burning Limit
- Enrichment of Zinc in galactic chemodynamical evolution models
- High-resolution spectroscopy of extremely metal-poor stars from SDSS/SEGUE. III. Unevolved Stars with
- High-precision chemical abundances of Galactic building blocks. The distinct chemical abundance sequence of Sequoia
- Early chemo-dynamical evolution of dwarf galaxies deduced from enrichment of r-process elements
- Zero and extremely low metallicity rotating massive stars: evolution, explosion, and nucleosynthesis up to the heaviest nuclei
- Origin of the CEMP-no Group Morphology in the Milky Way
- Using failed supernovae to constrain the Galactic r-process element production
- Efficiency of metal mixing in dwarf galaxies
- Chemical trends in the Galactic Halo with APOGEE data
- High-precision chemical abundances of Galactic building blocks. II. Revisiting the chemical distinctness of the Helmi streams
- Origin of highly -process-enhanced stars in a cosmological zoom-in simulation of a Milky Way-like galaxy
- Primordial nucleosynthesis with varying fundamental constants: Solutions to the Lithium problem and the Deuterium discrepancy
- Lithium in CEMP-no stars: A new constraint on the lithium depletion mechanism in the early universe
- Identification of a Group III CEMP-no Star in the Dwarf Spheroidal Galaxy Canes Venatici I
- Carbon-enhanced Metal-poor Stars in SDSS/SEGUE. II. Comparison of CEMP Star Frequencies with Binary Population Synthesis Models
- The energy distribution of the first supernovae
- Rapidly rotating Population III stellar models as a source of primary nitrogen
- Enrichment of Strontium in Dwarf Galaxies
- The Cosmic Evolution of Magnesium Isotopes
- Are Faint Supernovae Responsible for Carbon-Enhanced Metal-Poor Stars?
- A view of Large Magellanic Cloud HII regions N159, N132, and N166 through the 345 GHz window
- Fates of the oldest intermediate-mass stars - Primordial to Extremely Metal-Poor AGB and Super-AGB Stars: White Dwarf or Supernova progenitors
- Can Population III stars be major origins of both merging binary black holes and extremely metal poor stars?
- The stochastic enrichment of Population II stars
- Nucleosynthetic yields of Z= intermediate-mass stars
- Matter accretion in metal-poor stars down to extremely metal-poor stars and the lithium problem
- A Hierarchical Model for the Ages of Galactic Halo White Dwarfs
- Mapping the Milky Way with Gaia Bp/Rp spectra I: Systematic flux corrections and atmospheric parameters for 68 million stars
- Stellar Loci VI: An Updated Catalog of the Best and Brightest Metal-poor Stars
- A Catalog of 12,766 Carbon-enhanced Metal-poor Stars from LAMOST Data Release 8
- Dependence of the Sr-to-Ba and Sr-to-Eu Ratio on the Nuclear Equation of State in Metal Poor Halo Stars
- Main-sequence Turnoff Stars as Probes of the Ancient Galactic Relic: Chemo-dynamical Analysis of a Pilot Sample
- Searching for Low-mass Population III Stars Disguised as White Dwarfs
- HR-GO II: chemical abundances of low- retrograde dynamically-tagged-groups: Revealing Thamnos as a very metal-poor substructure
- The s-Process Nucleosynthesis in Extremely Metal-Poor Stars as the Generating Mechanism of Carbon Enhanced Metal-Poor Stars
- A comparative study on three modes of s-process nucleosynthesis in extremely metal-poor AGB stars