Untangling the Sources of Abundance Dispersion in Low-Metallicity Stars
arXiv:2210.01821 · doi:10.3847/1538-4357/aca659
Abstract
We measure abundances of 12 elements (Na, Mg, Si, Ca, Sc, Ti, V, Cr, Mn, Fe, Co, Ni) in a sample of 86 metal-poor () subgiant stars in the solar neighborhood. Abundances are derived from high-resolution spectra taken with the Potsdam Echelle Polarimetric and Spectroscopic Instrument on the Large Binocular Telescope, modeled using iSpec and MOOG. By carefully quantifying the impact of photon-noise ( dex for all elements) we robustly measure the intrinsic scatter of abundance ratios. At fixed [Fe/H] the RMS intrinsic scatter in [X/Fe] ranges from 0.04 dex (Cr) to 0.16 dex (Na), with a median of 0.08 dex. Scatter in [X/Mg] is similar, and accounting for [/Fe] only reduces the overall scatter moderately. We consider several possible origins of the intrinsic scatter with particular attention to fluctuations in the relative enrichment by core-collapse supernovae (CCSN) and Type Ia supernovae (SNIa) and stochastic sampling of the CCSN progenitor mass distribution. The stochastic sampling scenario provides a good quantitative explanation of our data if the effective number of CCSN contributing to the enrichment of a typical sample star is . At the median metallicity of our sample, this interpretation implies that the CCSN ejecta are mixed over a gas mass before forming stars. The scatter of elemental abundance ratios is a powerful diagnostic test for simulations of star formation, feedback, and gas mixing in the early phases of the Galaxy.
28 pages, 15 figures, 5 tables
References in corpus (44)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- galpy: A Python Library for Galactic Dynamics
- The mass distribution and gravitational potential of the Milky Way
- EXOFAST: A fast exoplanetary fitting suite in IDL
- The GALAH+ Survey: Third Data Release
- Determining stellar atmospheric parameters and chemical abundances of FGK stars with iSpec
- A Search for Stars of Very Low Metal Abundance. VI. Detailed Abundances of 313 Metal-Poor Stars
- APOGEE Data and Spectral Analysis from SDSS Data Release 16: Seven Years of Observations Including First Results from APOGEE-South
- Evidence from the H3 Survey that the Stellar Halo is Entirely Comprised of Substructure
- Modern stellar spectroscopy caveats
- Evidence from APOGEE for the presence of a major building block of the halo buried in the inner Galaxy
- NLTE abundances of Mn in a sample of metal-poor stars
- From dawn till disk: Milky Way's turbulent youth revealed by the APOGEE+Gaia data
- Abundance Estimates for 16 Elements in 6 Million Stars from LAMOST DR5 Low-Resolution Spectra
- A non-LTE study of neutral and singly-ionized calcium in late-type stars
- Atomic data for the Gaia-ESO Survey
- PEPSI: The high-resolution echelle spectrograph and polarimeter for the Large Binocular Telescope
- Multi-Element Abundance Measurements from Medium-Resolution Spectra. IV. Alpha Element Distributions in Milky Way Dwarf Satellite Galaxies
- APOGEE Chemical Abundance Patterns of the Massive Milky Way Satellites
- Disentangling the Galactic Halo with APOGEE: I. Chemical and Kinematical Investigation of Distinct Metal-Poor Populations
- The Gaia-ESO Public Spectroscopic Survey: Motivation, implementation, GIRAFFE data processing, analysis, and final data products
- High-Resolution Spectroscopic Study of Extremely Metal-Poor Star Candidates from the SkyMapper Survey
- The Poor Old Heart of the Milky Way
- Four-hundred Very Metal-Poor Stars Studied with LAMOST and Subaru. II. Elemental abundances
- Resolving the Metallicity Distribution of the Stellar Halo with the H3 Survey
- The R136 star cluster dissected with Hubble Space Telescope/STIS. II. Physical properties of the most massive stars in R136
- The imprint of clump formation at high redshift. I. A disc alpha-abundance dichotomy
- Age dating of an early Milky Way merger via asteroseismology of the naked-eye star Indi
- Experimental and theoretical oscillator strengths of Mg I for accurate abundance analysis
- Nucleosynthesis imprints from different Type Ia Supernova explosion scenarios and implications for galactic chemical evolution
- The Relationship Between Globular Cluster Mass, Metallicity, and Light Element Abundance Variations
- The Similarity of Abundance Ratio Trends and Nucleosynthetic Patterns in the Milky Way Disk and Bulge
- BACCHUS Analysis of Weak Lines in APOGEE Spectra (BAWLAS)
- How Many Elements Matter?
- Chemical Cartography with APOGEE: Mapping Disk Populations with a Two-Process Model and Residual Abundances
- Non-LTE abundance corrections for late-type stars from 2000Å to 3μm: I. Na, Mg, and Al
- The COMBS survey I: Chemical Origins of Metal-Poor Stars in the Galactic Bulge
- The distribution of [/Fe] in the Milky Way disc
- The Impact of Black Hole Formation on Population Averaged Supernova Yields
- Chemical Evolution of R-process Elements in Stars (CERES). I. Stellar parameters and chemical abundances from Na to Zr
- Residual Abundances in GALAH DR3: Implications for Nucleosynthesis and Identification of Unique Stellar Populations
- The stochastic enrichment of Population II stars