Cannibals in the thick disk II -- Radial-velocity monitoring of the young alpha-rich stars
arXiv:2207.11084 · doi:10.1051/0004-6361/202244524
Abstract
Determining ages of stars for reconstructing the history of the Milky Way remains one of the most difficult tasks in astrophysics. This involves knowing when it is possible to relate the stellar mass with its age and when it is not. The young rich (YAR) stars present such a case in which we are still not sure about their ages because they are relatively massive, implying young ages, but their abundances are enhanced, which implies old ages. We report the results from new observations from a long-term radial-velocity-monitoring campaign complemented with high-resolution spectroscopy, as well as new astrometry and seismology of a sample of 41 red giants from the third version of APOKASC, which includes YAR stars. The aim is to better characterize the YAR stars in terms of binarity, mass, abundance trends, and kinematic properties.The radial velocities of HERMES, APOGEE, and Gaia were combined to determine the binary fraction among YAR stars. In combination with their mass estimate, evolutionary status, chemical composition, and kinematic properties, it allowed us to better constrain the nature of these objects. We found that stars with were all single, whereas stars with could be either single or binary. This is in agreement with theoretical predictions of population synthesis models. Studying their [C/N], [C/Fe], and [N/Fe], trends with mass, it became clear that many YAR stars do not follow the APOKASC stars, favoring the scenario that most of them are the product of mass transfer. Abr.
Accepted in A&A
References in corpus (24)
- galpy: A Python Library for Galactic Dynamics
- APOGEE Data and Spectral Analysis from SDSS Data Release 16: Seven Years of Observations Including First Results from APOGEE-South
- The APOKASC Catalog: An Asteroseismic and Spectroscopic Joint Survey of Targets in the Kepler Fields
- Gaia Data Release 3: Stellar multiplicity, a teaser for the hidden treasure
- Testing the asteroseismic scaling relations for Red Giants with Eclipsing Binaries Observed by Kepler
- Young [/Fe]-enhanced stars discovered by CoRoT and APOGEE: What is their origin?
- Radius determination of solar-type stars using asteroseismology: What to expect from the Kepler mission
- Binary stars in the Galactic thick disc
- Constraining Metallicity-dependent Mixing and Extra Mixing using [C/N] in Alpha-Rich Field Giants
- The Close Binary Fraction as a Function of Stellar Parameters in APOGEE: A Strong Anti-Correlation With Abundances
- Discovery of post-mass-transfer helium-burning red giants using asteroseismology
- 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
- Nitrogen depletion in field red giants: mixing during the He flash?
- Mapping the Galactic disk with the LAMOST and Red clump sample: V: On the origin of the "young" [/Fe]-enhanced stars
- 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
- Asteroseismology of luminous red giants with Kepler. II. Dependence of mass loss on pulsations and radiation
- The spectroscopic indistinguishability of red giant branch and red clump stars
- An Intermediate-age Alpha-rich Galactic Population in K2
- Comparison of the Asteroseismic Mass Scale of Red Clump Giants with Photometric Mass Estimates
- Li-rich K giants, dust excess, and binarity
- J01020100-7122208: an accreted evolved blue straggler that wasn't ejected from a supermassive black hole
- Two sequences in the age-metallicity relation as seen from [C/N] abundances in APOGEE
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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 time evolution of chemical abundances across the Milky Way disk with APOGEE
- A variational encoder-decoder approach to precise spectroscopic age estimation for large Galactic surveys
- Nature vs. Nurture: Distinguishing Effects from Stellar Processing and Chemical Evolution on Carbon and Nitrogen in Red Giant Stars
- Stragglers of the thick disc
- Are Lithium-Rich Giants Binaries? A Radial Velocity Variability Analysis of 1,400 Giants
- Lithium in Kepler Red Giants: Defining Normal and Anomalous
- 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
- Rediscovering the Milky Way with orbit superposition approach and APOGEE data II. Chrono-chemo-kinematics of the disc
- Chemical abundances of the young inner-disk open cluster NGC 6705 observed by APOGEE: sodium-rich and not -enhanced
- Exploring the dependence of chemical traits on metallicity: chemical trends for red giant stars with asteroseismic ages
- A comprehensive Gaia view of ellipsoidal and rotational red giant binaries
- The accreted Galaxy: An overview of TESS metal-poor accreted stars candidates
- The odd bunch: chrono-chemo-dynamics of sixteen unusual stars from Kepler
- Exploring the History of Stellar Mergers with Chemistry: Examining the Origins of Massive -Enriched Stars using Carbon Isotope Ratios
- Gaia DR3 high radial velocity stars: Genuine fast-moving objects or outliers?