The oldest low- alpha thin disc stars
astro-ph.SR, astro-ph.GA
Submitted: 2026-09-21
Updated: 2026-09-21
Comments: Accepted in A&A
Project page: https://www.cosmos.esa.int/gaia
License: http://creativecommons.org/licenses/by/4.0/
The gist: The formation pathway of the α-poor Milky Way thin disc remains under debate.
Terminology
Abstract
The formation pathway of the α-poor Milky Way thin disc remains under debate. The latest observational data indicates the presence of comparable numbers of old stars in both the low- and high- α disc components, suggesting either coeval or overlapping formation epochs. Using GALAH DR4, we provide evidence that the α-poor stars coexist with α-rich stars up to about 12.5 Gyr. Stellar ages of 0.5 Gyr precision were re-derived for nearly 30,000 subgiant stars using accurate effective temperatures (T) from the infrared flux method (IRFM) together with distances based on Gaia parallaxes. About 22% of the sample constitutes a population peaking at 9.2 Gyr, with evidence for an extended old-age tail reaching 12.5 Gyr. Among stars older than 10 and 11 Gyr, between 20 and 30% have relative low [α /Fe] and solar-like metallicities (-0.5 at most[Fe/H] at most +0.5 dex). These stars exhibit kinematics consistent with those of near solar-age α-poor stars in the thin disc. These stars can be evolved Sun-like stars, i.e. old solar analogues, whose T and gravity modified with the time. Comparison with a well-tested Galactic disc chemical evolution model supports the presence of a significant fraction of old, α-poor disc stars, confirming the plausibility of our selection criteria. We provide a catalogue with the selected sample to facilitate spectroscopic follow-ups at high resolution.
Sources
- Chasing the impact of the Gaia-Sausage-Enceladus merger on the formation of the Milky Way thick disc
- The ALPINE-CRISTAL-JWST Survey: The Fast Metal Enrichment of Massive Galaxies at z~5
- Co-evolution of the Milky Way high- and low-{\alpha} sequences with chemical evolution models
- Planet-Host Stars Across the Galaxy in the 2040s
- Tracing the early Milky Way thin disc with the Gaia-ESO Survey
- The PLATO Science Calibration and Validation Plan: Targets for the First Long-pointing Field
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