Young [/Fe]-enhanced stars discovered by CoRoT and APOGEE: What is their origin?
arXiv:1503.06990 · doi:10.1051/0004-6361/201525865
Abstract
We report the discovery of a group of apparently young CoRoT red-giant stars exhibiting enhanced [alpha/Fe] abundance ratios (as determined from APOGEE spectra) with respect to Solar values. Their existence is not explained by standard chemical evolution models of the Milky Way, and shows that the chemical-enrichment history of the Galactic disc is more complex. We find similar stars in previously published samples for which isochrone-ages could be robustly obtained, although in smaller relative numbers, which could explain why these stars have not received prior attention. The young [alpha/Fe]-rich stars are much more numerous in the CoRoT-APOGEE (CoRoGEE) inner-field sample than in any other high-resolution sample available at present, as only CoRoGEE can explore the inner-disc regions and provide ages for its field stars. The kinematic properties of the young [/Fe]-rich stars are not clearly thick-disc like, despite their rather large distances from the Galactic mid-plane. Our tentative interpretation of these and previous intriguing observations in the Milky Way is that these stars were formed close to the end of the Galactic bar, near corotation -- a region where gas can be kept inert for longer times, compared to other regions shocked more frequently by the passage of spiral arms. Moreover, that is where the mass return from older inner-disc stellar generations should be maximal (according to an inside-out disc-formation scenario), further diluting the in-situ gas. Other possibilities to explain these observations (e.g., a recent gas-accretion event) are also discussed.
Letter in press in Astronomy and Astrophysics (5 pages, 4 figures + 2 pages Appendix)
References in corpus (9)
- The 2.5 m Telescope of the Sloan Digital Sky Survey
- The K2 Mission: Characterization and Early results
- Basic physical parameters of a selected sample of evolved stars
- Oxygen Abundances in Nearby Stars. Clues to the formation and evolution of the Galactic disk
- On the fine structure of the Cepheid metallicity gradient in the Galactic thin disk
- Asteroseismology for "à la carte" stellar age-dating and weighing: Age and mass of the CoRoT exoplanet host HD 52265
- Chemical Abundances of Luminous Cool Stars in the Galactic Center from High-Resolution Infrared Spectroscopy
- Cepheid Variables in the Flared Outer Disk of our Galaxy
- How accurate are stellar ages based on stellar models ? I. The impact of stellar models uncertainties
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- Probing the interior physics of stars through asteroseismology
- Testing the asteroseismic scaling relations for Red Giants with Eclipsing Binaries Observed by Kepler
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- On the origin of the chemical bimodality of disk stars: A tale of merger and migration
- Abundance to age ratios in the HARPS-GTO sample with Gaia DR2: Chemical clocks for a range of [Fe/H]
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- The GALAH Survey: Chemical tagging and chrono-chemodynamics of accreted halo stars with GALAH+ DR3 and eDR3
- Galactic Archaeology with asteroseismic ages. II. Confirmation of a delayed gas infall using Bayesian analysis based on MCMC methods
- Constraining Metallicity-dependent Mixing and Extra Mixing using [C/N] in Alpha-Rich Field Giants
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- Spectroscopic age estimates for APOGEE red-giant stars: Precise spatial and kinematic trends with age in the Galactic disc
- Unveiling the Distinct Formation Pathways of the Inner and Outer Discs of the Milky Way with Bayesian Machine Learning
- The age-chemical abundance structure of the Galactic disc II: -dichotomy and thick disc formation
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- Chemical Evolution in the Milky Way: Rotation-based ages for APOGEE-Kepler cool dwarf stars
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- Mapping the Galactic disk with the LAMOST and Gaia Red clump sample: I: precise distances, masses, ages and 3D velocities of 140000 red clump stars
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- Ages and Masses of 0.64 million Red Giant Branch stars from the LAMOST Galactic Spectroscopic Survey
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- Observed binary populations reflect the Galactic history. Explaining the orbital period-mass ratio relation in wide hot subdwarf binaries
- The K2 Galactic Archaeology Program Data Release 3: Age-abundance patterns in C1-C8 and C10-C18
- Origin of -rich young stars: clues from C, N and O
- Age-chemical abundance structure of the Galaxy I: Evidence for a late accretion event in the outer disc at z ~ 0.6
- Elemental Abundances in M31: A Comparative Analysis of Iron and Alpha Element Abundances in the Outer Disk, Giant Stellar Stream, and Inner Halo of M31
- Mapping the Galactic disk with the LAMOST and Red clump sample: V: On the origin of the "young" [/Fe]-enhanced stars
- The GALAH Survey: Chemical Clocks
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- A variational encoder-decoder approach to precise spectroscopic age estimation for large Galactic surveys
- Most "young" -rich stars have high masses but are actually old
- APOGEE [C/N] Abundances Across the Galaxy: Migration and Infall from Red Giant Ages
- Cannibals in the thick disk II -- Radial-velocity monitoring of the young alpha-rich stars
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- Star Formation Timescales of the Halo Populations from Asteroseismology and Chemical Abundances
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- The AMBRE Project: Solar neighbourhood chemodynamical constraints on Galactic disc evolution
- An Intermediate-age Alpha-rich Galactic Population in K2
- The APO-K2 Catalog. II. Accurate Stellar Ages for Red Giant Branch Stars across the Milky Way
- Universal properties of the high- and low-α disk: small intrinsic abundance scatter and migrating stars
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- Self-similarity in the chemical evolution of galaxies and the delay time distribution of SNe Ia
- Stragglers of the thick disc
- One Star to Tag Them All (OSTTA): I. Radial velocities and chemical abundances for 20 poorly studied open clusters
- Cardinal kinematics: I. Rotation fields of the APOGEE Survey
- The Gaia-ESO Survey: Spectroscopic-asteroseismic analysis of K2 stars in Gaia-ESO
- Unveiling the Structure and Dynamics of Red Giants with Asteroseismology
- The Gaia-ESO survey: placing constraints on the origin of r-process elements
- Metallicity Gradient of the Thick Disc Progenitor at High Redshift
- The CoRoT-GES Collaboration. Improving Red Giants spectroscopic surface gravity and abundances with asteroseismology
- Chronology of our Galaxy from Gaia colour-magnitude diagram fitting (ChronoGal) II. Unveiling the formation and evolution of the kinematically selected Thick and Thin Discs
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- Stellar Migration and Chemical Enrichment in the Milky Way Disc: A Hybrid Model
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- Recovering Signals in CoRoT Mission (RSCoRoT): I. Short Period Variable Stars
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- A 'Quick Look' at All-Sky Galactic Archeology with TESS: 158,000 Oscillating Red Giants from the MIT Quick-Look Pipeline
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