The Evolution of Carbon and Oxygen in the Bulge and Disk of the Milky Way
arXiv:0907.4308 · doi:10.1051/0004-6361/200912759
Abstract
The evolution of C and O abundances in the Milky Way can impose strong constraints on stellar nucleosynthesis and help understanding the formation and evolution of our Galaxy. The aim is to review the measured C and O abundances in the disk and bulge of the Galaxy and compare them with model predictions. We adopt two successful chemical evolution models for the bulge and the disk, which assume the same nucleosynthesis prescriptions but different histories of star formation. The data show a clear distinction between the trend of [C/O] in the thick and thin Galactic disks, while the thick disk and bulge trends are indistinguishable with a large (>0.5 dex) increase in the C/O ratio in the range from -0.1 to +0.4 dex for [O/H]. In our models we consider yields from massive stars with and without the inclusion of metallicity-dependent stellar winds. The observed increase in the [C/O] ratio with metallicity in the bulge and thick disk lies between the predictions utilizing the mass-loss rates of Maeder (1992) and those of Meynet & Maeder (2002). A model without metallicity-dependent yields completely fails to match the observations. Thus, the relative increase in carbon abundance at high metallicity appears to be due to metallicity-dependent stellar winds in massive stars. These results also explain the steep decline of the [O/Fe] ratio with [Fe/H] in the Galactic bulge, while the [Mg/Fe] ratio is enhanced at all [Fe/H]. (abridged)
18 pages, 6 figures, submitted to Astronomy & Astrophysics
References in corpus (14)
- Stellar Models and Yields of Asymptotic Giant Branch Stars
- Oxygen, Sodium, Magnesium and Aluminium as tracers of the Galactic Bulge Formation
- A strong case for fast stellar rotation at very low metallicities
- Chemical similarities between Galactic bulge and local thick disk red giant stars
- Elemental abundances in the atmosphere of clump giants
- Chemical Evolution of the Galactic Bulge as Derived from High-Resolution Infrared Spectroscopy of K and M Red Giants
- Formation & evolution of the Galactic bulge: constraints from stellar abundances
- The First Detailed Abundances for M giants in the inner Bulge from Infrared Spectroscopy
- On the solar nickel and oxygen abundances
- The Evolution of Oxygen and Magnesium in the Bulge and Disk of the Milky Way
- Testing the universal stellar IMF on the metallicity distribution in the bulges of the Milky Way and M31
- The non-LTE line formation of neutral carbon in late-type stars
- Abundances in bulge stars from high-resolution, near-IR spectra I. The CNO elements observed during the science verification of CRIRES at VLT
- A High-Resolution Spectrum of the Highly Magnified Bulge G-Dwarf MOA-2006-BLG-099S
Cited by in corpus (52)
- Quantifying the uncertainties of chemical evolution studies. II. Stellar yields
- The Evolution of Isotope Ratios in the Milky Way Galaxy
- Stellar populations dominated by massive stars in dusty starburst galaxies across cosmic time
- The Bimodal Metallicity Distribution of the Cool Circumgalactic Medium at z<1
- Chemical similarities between Galactic bulge and local thick disk red giants: O, Na, Mg, Al, Si, Ca and Ti
- Chemistry of the Sagittarius Dwarf Galaxy: a Top-Light IMF, Outflows and the R-Process
- Carbon, oxygen, and iron abundances in disk and halo stars. Implications of 3D non-LTE spectral line formation
- Light, Alpha, and Fe-Peak Element Abundances in the Galactic Bulge
- Carbon and oxygen abundances in stellar populations
- Chemical element ratios of SDSS early-type galaxies
- Carbon and oxygen abundances from recombination lines in low-metallicity star-forming galaxies. Implications for chemical evolution
- The Stellar Halos of Massive Elliptical Galaxies II: Detailed Abundance Ratios at Large Radius
- Carbon star formation as seen through the non-monotonic initial-final mass relation
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. II. Ages, metallicities, detailed elemental abundances, and connections to the Galactic thick disc
- Project AMIGA: The Circumgalactic Medium of Andromeda
- Iron and alpha-element Production in the First One Billion Years after the Big Bang
- The chemical evolution of elliptical galaxies with stellar and QSO dust production
- Metallicity Distribution Functions, Radial Velocities, and Alpha Element Abundances in Three Off-Axis Bulge Fields
- What are little worlds made of? Stellar abundances and the building blocks of planets
- The carbon-to-oxygen ratio in stars with planets
- Chemical evolution of the Galactic bulge: different stellar populations and possible gradients
- The COS CGM Compendium. III: Metallicity and Physical Properties of the Cool Circumgalactic Medium at z<1
- Carbon and oxygen in metal-poor halo stars
- The evolution of CNO elements in galaxies
- Abundance ratios in GALAH DR2 and their implications for nucleosynthesis
- Individual Alpha Elements, C, N, and Ba in Early Type Galaxies
- Light Elements in the Universe
- Nucleosynthesis of binary-stripped stars
- The Chemical Evolution of Fluorine in the Bulge - High-resolution K-band spectra of giants in three fields
- The physical mechanism behind M dwarf metallicity indicators and the role of C and O abundances
- On the variation of carbon abundance in galaxies and its implications
- Origin of Cosmic Chemical Abundances
- The cosmic carbon footprint of massive stars stripped in binary systems
- Galactic astroarchaeology: reconstructing the bulge history by means of the newest data
- High-resolution Spectroscopic Study of Dwarf Stars in the Northern Sky: Lithium, Carbon, and Oxygen Abundances
- The Gaia-ESO Survey: Carbon abundance in the Galactic thin and thick disks
- KODIAQ-Z: Metals and Baryons in the Cool Intergalactic and Circumgalactic Gas at 2.2<z<3.6
- A bound on the 12C/13C ratio in near-pristine gas with ESPRESSO
- Residual Abundances in GALAH DR3: Implications for Nucleosynthesis and Identification of Unique Stellar Populations
- Jet interactions with a giant molecular cloud in the Galactic centre and ejection of hypervelocity stars
- Origins of carbon-enhanced metal-poor stars
- PopIII signatures in the spectra of PopII/I GRBs
- Understanding AGB evolution in Galactic bulge stars from high-resolution infrared spectroscopy
- The Gaia-ESO Survey: Oxygen abundance in the Galactic thin and thick disks
- Abundance ratios in the hot ISM of elliptical galaxies
- The most metal-rich asymptotic giant branch stars
- The metal contents of two groups of galaxies
- Nitrogen evolution in the halo, thick disc, thin disc and bulge of the Galaxy
- Chemical evolution of the Galactic bulge as traced by microlensed dwarf and subgiant stars. VIII. Carbon and oxygen
- A survey of extremely metal-poor gas at cosmic noon: evidence of elevated [O/Fe]
- The Stellar Population of the Galactic Bulge
- Galactic chemical evolution: the observational side