On the variation of carbon abundance in galaxies and its implications
arXiv:2005.05717 · doi:10.1051/0004-6361/202037972
Abstract
The trends of chemical abundances and abundance ratios observed in stars of different ages, kinematics, and metallicities bear the imprints of several physical processes that concur to shape the host galaxy properties. By inspecting these trends, we get precious information on stellar nucleosynthesis, the stellar mass spectrum, the timescale of structure formation, the efficiency of star formation, as well as any inward or outward flows of gas. In this paper, we analyse recent determinations of carbon-to-iron and carbon-to-oxygen abundance ratios in different environments (the Milky Way and elliptical galaxies) using our latest chemical evolution models that implement up-to-date stellar yields and rely on the tight constraints provided by asteroseismic stellar ages (whenever available). A scenario where most carbon is produced by rotating massive stars, with yields largely dependent on the metallicity of the parent proto-star clouds, allows us to fit simultaneously the high-quality data available for the local Galactic components (thick and thin discs) and for microlensed dwarf stars in the Galactic bulge, as well as the abundance ratios inferred for massive elliptical galaxies. Yet, more efforts are needed from both observers and theoreticians in order to base these conclusions on firmer grounds.
10 pages, 8 figures, 1 table, accepted for publication in A&A
References in corpus (14)
- Galactic chemical evolution: Carbon through Zinc
- The GALAH Survey: Scientific Motivation
- What is a globular cluster? An observational perspective
- The evolution of CNO isotopes: a new window on cosmic star-formation history and the stellar IMF in the age of ALMA
- Carbon and oxygen abundances in stellar populations
- The role of neutron star mergers in the chemical evolution of the Galactic halo
- The AMBRE Project: chemical evolution models for the Milky Way thick and thin discs
- The effect of stellar migration on Galactic chemical evolution: a heuristic approach
- The origin of stellar populations in the Galactic bulge from chemical abundances
- The Gaia-ESO Survey: Carbon abundance in the Galactic thin and thick disks
- A High-Resolution Spectrum of the Highly Magnified Bulge G-Dwarf MOA-2006-BLG-099S
- Modelling the chemical evolution of Zr, La, Ce and Eu in the Galactic discs and bulge
- Clues to the Metallicity Distribution in the Galactic Bulge: Abundances in MOA-2008-BLG310 and MOA-2008-BLG311
- Carbon Isotope Ratios in M10 Giants
Cited by in corpus (30)
- The GALAH Survey: Non-LTE departure coefficients for large spectroscopic surveys
- The Gaia-ESO Survey: Galactic evolution of lithium from iDR6
- The evolution of CNO elements in galaxies
- Beyond the two-infall model I. Indications for a recent gas infall with Gaia DR3 chemical abundances
- Light Elements in the Universe
- The cosmic carbon footprint of massive stars stripped in binary systems
- Fluorine in the solar neighborhood: modelling the Galactic thick and thin discs
- The impact of very massive stars on the chemical evolution of extremely metal-poor galaxies
- On the effects of the Initial Mass Function on Galactic chemical enrichment
- New Post-AGB star models as tools to understand AGB evolution and nucleosynthesis
- High N/O ratio at high redshift as a result of a strong burst of star formation and differential galactic winds
- The Gaia-ESO Survey: Oxygen abundance in the Galactic thin and thick disks
- The most metal-rich asymptotic giant branch stars
- Analytic solution of Chemical Evolution Models with Type Ia SNe
- Chemical evolution of Al and Fe in the Milky Way
- Stellar Population and Elemental Abundance Gradients of Early-type Galaxies
- Are extreme AGB stars post-common envelope binaries?
- The impact of carbon and oxygen abundances on the metal-poor initial mass function
- Nitrogen evolution in the halo, thick disc, thin disc and bulge of the Galaxy
- Orbital and atmospheric parameters of two wide O-type subdwarf binaries: BD11162 and Feige 80
- CHEMOUT: CHEMical complexity in star-forming regions of the OUTer Galaxy. II. Methanol formation at low metallicity
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. VIII. Carbon and oxygen
- The earliest phases of CNO enrichment in galaxies
- Assessing stellar yields in Galaxy chemical evolution: observational stellar abundance patterns
- Carbon from massive binary-stripped stars over cosmic time: effect of metallicity
- Modelling the chemical evolution of the Milky Way
- The Wanderer: Charting WASP-77A b's Formation and Migration Using a System-Wide Inventory of Carbon and Oxygen Abundances
- The metal-poorest tail of the Galactic halo: hypothesis on its origin from precise spectral analysis
- Downsizing revised: Star formation timescales for elliptical galaxies with an environment-dependent IMF and number of SNIa
- Two Sites of r-Process Production Assessed on the Basis of the Age-tagged Abundances of Solar Twins