Exploring the History of Stellar Mergers with Chemistry: Examining the Origins of Massive -Enriched Stars using Carbon Isotope Ratios
arXiv:2509.08900 · doi:10.3847/1538-4357/ae0a2d
Abstract
Recently discovered massive -enriched (MAE) stars have surface chemistry consistent with members of the older thick disk Milky Way population but high masses ( 1.5 - 3 M) that suggest these stars are young. The origin of MAE stars is not fully understood although binary interactions are likely an important formation pathway. To better constrain the history of MAE stars, we have measured metallicities, carbon isotope ratios, and CNO abundances in 49 red clump stars and four red giants. Our sample included thin disk, thick disk, and MAE stars to best constrain different formation scenarios. We observed our sample stars using the Tull spectrograph on the McDonald 2.7m telescope and derived abundances using synthetic spectra created by the Turbospectrum radiative transfer code. Overall, we find that 10 of our red clump MAE stars are consistent with the average thick disk carbon isotope ratio of C/C = 8.2 3.4. We find five MAE stars that have significantly higher carbon isotope ratios (C/C 15) than stars at similar metallicities. Two of the anomalous stars show abundance patterns consistent with AGB mass transfer while three MAE stars have C/C ratios similar to massive, single RC stars and show no clear signs of binarity from radial velocity monitoring or from the Gaia RUWE measurement. Overall, we find that carbon isotope ratio measurements provide a unique constraint when discerning the possible origins of MAE stars.
19 pages, 5 figures, accepted for publication in The Astrophysical Journal
References in corpus (45)
- 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
- Gaia Data Release 3: Summary of the content and survey properties
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- Gaia Early Data Release 3: Parallax bias versus magnitude, colour, and position
- Determining stellar atmospheric parameters and chemical abundances of FGK stars with iSpec
- APOGEE Data and Spectral Analysis from SDSS Data Release 16: Seven Years of Observations Including First Results from APOGEE-South
- The Optical to Mid-Infrared Extinction Law Based on the APOGEE, Gaia DR2, Pan-STARRS1, SDSS, APASS, 2MASS and WISE Surveys
- The APOKASC Catalog: An Asteroseismic and Spectroscopic Joint Survey of Targets in the Kepler Fields
- Modern stellar spectroscopy caveats
- Thermohaline mixing: A physical mechanism governing the photospheric composition of low-mass giants
- Precise radial velocities of giant stars. III. Spectroscopic stellar parameters
- Observational constraints on the origin of the elements. IV: The standard composition of the Sun
- Young [/Fe]-enhanced stars discovered by CoRoT and APOGEE: What is their origin?
- Atomic data for the Gaia-ESO Survey
- Rotational mixing in low-mass stars II. Self-consistent models of Pop II RGB stars
- First stars IX -Mixing in extremely metal-poor giants. Variation of the 12C/13C, [Na/Mg] and [Al/Mg] ratios
- The LAMOST Stellar Parameter Pipeline at Peking University --- LSP3
- Can Extra Mixing in RGB and AGB Stars Be Attributed to Magnetic Mechanisms?
- Estimating stellar atmospheric parameters, absolute magnitudes and elemental abundances from the LAMOST spectra with Kernel-based Principal Component Analysis
- Binary stars in the Galactic thick disc
- Magnetic Mixing in Red Giant and Asymptotic Giant Branch Stars
- Non-LTE Radiative Transfer with Turbospectrum
- 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
- Ages and Masses of 0.64 million Red Giant Branch stars from the LAMOST Galactic Spectroscopic Survey
- Population synthesis of helium white dwarf--red giant star mergers and the formation of lithium-rich giants and carbon stars
- Origin of -rich young stars: clues from C, N and O
- Mapping the Galactic disk with the LAMOST and Red clump sample: V: On the origin of the "young" [/Fe]-enhanced stars
- Carbon stars from LAMOST DR2 data
- Observational constraints on the origin of the elements. VII. NLTE analysis of Y II lines in spectra of cool stars and implications for Y as a Galactic chemical clock
- Most "young" -rich stars have high masses but are actually old
- Cannibals in the thick disk II -- Radial-velocity monitoring of the young alpha-rich stars
- Asteroseismic Fingerprints of Stellar Mergers
- The extra-mixing efficiency in very low metallicity RGB stars
- Red clump stars of the Milky Way - laboratories of extra-mixing
- 12C/13C isotopic ratios in red-giant stars of the open cluster NGC 6791
- Carbon, isotopic ratio C/C and nitrogen in solar twins: constraints for the chemical evolution of the local disc
- The Galactic Distribution of Phosphorus: A Survey of 163 Disk and Halo Stars
- CNO abundances and carbon isotope ratios in evolved stars of the open clusters NGC 2324, NGC 2477, and NGC 3960
- Evidence of extra-mixing in field giants as traced by lithium and carbon isotope ratio
- Stragglers of the thick disc
- An Investigation of Non-Canonical Mixing in Red Giant Stars Using APOGEE 12C/13C Ratios Observed in Open Cluster Stars
- HCT/HESP study of two carbon stars from the LAMOST survey
- Carbon Isotope Ratios in M10 Giants