A GALAH View of the Chemical Homogeneity and Ages of Stellar Strings Identified in Gaia
arXiv:2201.07809 · doi:10.1093/mnras/stac236
Abstract
The advent of Gaia has led to the discovery of nearly 300 elongated stellar associations (called `strings') spanning hundreds of parsecs in length and mere tens of parsecs in width. These newfound populations present an excellent laboratory for studying the assembly process of the Milky Way thin disk. In this work, we use data from GALAH DR3 to investigate the chemical distributions and ages of 18 newfound stellar populations, 10 of which are strings and 8 of which are compact in morphology. We estimate the intrinsic abundance dispersions in [X/H] of each population and compare them with those of both their local fields and the open cluster M 67. We find that all but one of these groups are more chemically homogeneous than their local fields. Furthermore, half of the strings, namely Theias 139, 169, 216, 303, and 309, have intrinsic [X/H] dispersions that range between 0.01 and 0.07 dex in most elements, equivalent to those of many open clusters. These results provide important new observational constraints on star formation and the chemical homogeneity of the local interstellar medium (ISM). We investigate each population's Li and chemical clock abundances (e.g., [Sc/Ba], [Ca/Ba], [Ti/Ba], and [Mg/Y]) and find that the ages suggested by chemistry generally support the isochronal ages in all but six structures. This work highlights the unique advantages that chemistry holds in the study of kinematically-related stellar groups.
19 pages, 6 figures, 4 tables, accepted for publication in MNRAS
References in corpus (45)
- The NumPy array: a structure for efficient numerical computation
- The Transiting Exoplanet Survey Satellite
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Theory of Star Formation
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- The GALAH Survey: Scientific Motivation
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- The GALAH+ Survey: Third Data Release
- High-precision abundances of elements in solar twin stars: Trends with stellar age and elemental condensation temperature
- Age determination for 269 DR2 Open Clusters
- A cosmic abundance standard: chemical homogeneity of the solar neighbourhood and the ISM dust-phase composition
- A Galactic-scale gas wave in the Solar Neighborhood
- The Bones of the Milky Way
- The distinction between star clusters and associations
- Estimating distances from parallaxes. III. Distances of two million stars in the Gaia DR1 catalogue
- Chemically Tagging the HR1614 Moving Group
- The GALAH survey: tracing the Galactic disk with Open Clusters
- The temporal evolution of neutron-capture elements in the Galactic discs
- Stars with Photometrically Young Gaia Luminosities Around the Solar System (SPYGLASS) I: Mapping Young Stellar Structures and their Star Formation Histories
- The Galactic radial abundance gradients of C, N, O, Ne, S, Cl and Ar from deep spectra of H II regions
- Identical or fraternal twins? : The chemical homogeneity of wide binaries from Gaia DR2
- Chemical Abundances of Main-Sequence, Turnoff, Subgiant and red giant Stars from APOGEE spectra II: Atomic Diffusion in M67 Stars
- Early turbulent mixing as the origin of chemical homogeneity in open star clusters
- The chemical compositions of solar twins in the open cluster M67
- The K2 M67 Study: Revisiting old friends with K2 reveals oscillating red giants in the open cluster M67
- Testing the chemical tagging technique with open clusters
- Chemical (in)homogeneity and atomic diffusion in the open cluster M67
- Diagnosing the Stellar Population and Tidal Structure of the Blanco1 Star Cluster
- Lithium depletion and angular momentum transport in solar-type stars
- Different Fates of Young Star Clusters After Gas Expulsion
- Differential abundances of open clusters and their tidal tails: chemical tagging and chemical homogeneity
- HIP 114328: a new refractory-poor and Li-poor solar twin
- The Gaia-ESO Survey: Calibrating the lithium-age relation with open clusters and associations. I. Cluster age range and initial membership selections
- The history of dynamics and stellar feedback revealed by the HI filamentary structure in the disk of the Milky Way
- Strong chemical tagging with APOGEE: 21 candidate star clusters that have dissolved across the Milky Way disc
- Open Cluster Chemical Homogeneity Throughout the Milky Way
- Shallow extra mixing in solar twins inferred from Be abundances
- Discovery of a young stellar "snake" with two dissolving cores in the solar neighborhood
- The GALAH survey: Chemical homogeneity of the Orion complex
- Disentangled Representation Learning for Astronomical Chemical Tagging
- WIYN Open Cluster Study LXXXV. Li in NGC 2243 -- Implications for Stellar and Galactic Evolution
- The K2 M67 Study: Precise Mass for a Turnoff Star in the Old Open Cluster M67
- Testing the chemical homogeneity of chemically tagged dissolved birth clusters
- Extremely precise age and metallicity of the open cluster NGC 2506 using detached eclipsing binaries
- Prospecting for chemical tags among open clusters
Cited by in corpus (4)
- Reliability and limitations of inferring birth radii in the Milky Way disk
- Using the Gaia excess uncertainty as a proxy for stellar variability and age
- Disconnecting the Dots: Re-Examining the Nature of Stellar "Strings" in the Milky Way
- Unraveling UBC 274: a morphological, kinematical and chemical analysis of a disrupting open cluster