Trading oxygen for iron I: the [O/Fe] -- specific star formation rate relation of galaxies
arXiv:2308.00023 · doi:10.1051/0004-6361/202347602
Abstract
Our current knowledge of star-forming metallicity relies primarily on gas-phase oxygen abundance measurements. This may not allow one to accurately describe differences in stellar evolution and feedback driven by variations in iron abundance. -elements (such as oxygen) and iron are produced by sources that operate on different timescales and the link between them is not straightforward. We explore the origin of the [O/Fe] - specific SFR (sSFR) relation, linking chemical abundances to galaxy formation timescales. This relation is followed by star-forming galaxies across redshifts according to cosmological simulations and basic theoretical expectations. Its apparent universality makes it suitable for trading the readily available oxygen for iron abundance. The relation is determined by the relative iron production efficiency of core-collapse and type Ia supernovae and the delay time distribution of the latter -- uncertain factors that could be constrained empirically with the [O/Fe]-sSFR relation. We compile and homogenise a literature sample of star-forming galaxies with observational iron abundance determinations to place first constraints on the [O/Fe]-sSFR relation over a wide range of sSFR. The relation shows a clear evolution towards lower [O/Fe] with decreasing sSFR and a flattening above log(sSFR/yr)>-9. The result is broadly consistent with expectations, but better constraints are needed to inform the models. We independently derive the relation from old Milky Way stars and find a remarkable agreement between the two, as long as the recombination-line absolute oxygen abundance scale is used in conjunction with stellar metallicity measurements.
submitted to A&A
References in corpus (80)
- Array Programming with NumPy
- Cosmic Star Formation History
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- UV Star Formation Rates in the Local Universe
- A Highly Consistent Framework for the Evolution of the Star-Forming "Main Sequence" from z~0-6
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- Theory of Core-Collapse Supernovae
- Pulsational Pair-Instability Supernovae
- Nucleosynthesis and Remnants in Massive Stars of Solar Metallicity
- Understanding Galaxy Evolution through Emission Lines
- The Effects of Stellar Rotation. II. A Comprehensive Set of Starburst99 Models
- A Common Explosion Mechanism for Type Ia Supernovae
- The Main Sequence of star-forming galaxies across cosmic times
- A z=0 Multi-wavelength Galaxy Synthesis I: A WISE and GALEX Atlas of Local Galaxies
- The chemical enrichment in the early Universe as probed by JWST via direct metallicity measurements at z~8
- The star formation main sequence and stellar mass assembly of galaxies in the Illustris simulation
- The Landscape of the Neutrino Mechanism of Core-Collapse Supernovae: Neutron Star and Black Hole Mass Functions, Explosion Energies and Nickel Yields
- The Explosion of Helium Stars Evolved With Mass Loss
- Ultraviolet spectra of extreme nearby star-forming regions --- approaching a local reference sample for JWST
- Systematic non-LTE study of the [Fe/H] F and G dwarfs in the solar neighbourhood. II. Abundance patterns from Li to Eu
- Quantitative Spectroscopy of 24 A supergiants in the Sculptor galaxy NGC 300: Flux weighted gravity luminosity relationship, metallicity and metallicity gradient
- Pair creation supernovae at low and high redshift
- Type Ia Supernova Explosions in Binary Systems: A Review
- Nebular spectroscopy: A guide on H II regions and planetary nebulae
- The TESS-HERMES survey Data Release 1: high-resolution spectroscopy of the TESS southern continuous viewing zone
- Revisiting the Integrated Star Formation Law. Paper I: Non-Starbursting Galaxies
- A First Look at the Abundance Pattern -- O/H, C/O, and Ne/O -- in Galaxies with JWST/NIRSpec
- Theory and Diagnostics of Hot Star Mass Loss
- The VANDELS survey: the stellar metallicities of star-forming galaxies at 2.5 < z < 5.0
- Carbon and oxygen abundances from recombination lines in low-metallicity star-forming galaxies. Implications for chemical evolution
- Timing the Early Assembly of the Milky Way with the H3 Survey
- New Insights into the Evolution of Massive Stars and Their Effects on Our Understanding of Early Galaxies
- VLT spectroscopy of blue supergiants in IC 1613
- The GALAH Survey: Non-LTE departure coefficients for large spectroscopic surveys
- Young stars and ionized nebulae in M83: comparing chemical abundances at high metallicity
- Evolution of surface CNO abundances in massive stars
- The Galactic radial abundance gradients of C, N, O, Ne, S, Cl and Ar from deep spectra of H II regions
- The Araucaria Project: the Local Group Galaxy WLM--Distance and metallicity from quantitative spectroscopy of blue Supergiants
- First Insights into the ISM at with JWST: Possible Physical Implications of a High [O III]/[O III]
- The Star Formation Rate of the Milky Way as seen by Herschel
- The Canada-France Imaging Survey: Reconstructing the Milky Way Star Formation History from its White Dwarf Population
- The Gaia-ESO Survey: a new approach to chemically characterising young open clusters
- Type II supernovae from the Carnegie Supernova Project-I. II. Physical parameter distributions from hydrodynamical modelling
- Mapping the Galactic Metallicity Gradient with Open Clusters: The State-of-the-Art and Future Challenges
- Explosive Nucleosynthesis from GRB and Hypernova Progenitors: Direct Collapse versus Fallback
- A spectroscopic study of blue supergiant stars in the Sculptor galaxy NGC 55: chemical evolution and distance
- PUSHing core-collapse supernovae to explosions in spherical symmetry IV: Explodability, remnant properties and nucleosynthesis yields of low metallicity stars
- The contribution from stars stripped in binaries to cosmic reionization of hydrogen and helium
- Winds of low-metallicity OB-type stars: HST-COS spectroscopy in IC1613
- X-Shooting ULLYSES: massive stars at low metallicity. I. Project Description
- Nucleosynthesis imprints from different Type Ia Supernova explosion scenarios and implications for galactic chemical evolution
- Exploring HeII1640 emission line properties at
- Temperature inhomogeneities cause the abundance discrepancy in H II regions
- The VANDELS survey: the relation between UV continuum slope and stellar metallicity in star-forming galaxies at z~3
- Chemical abundance scaling relations for multiple elements in z~2-3 star-forming galaxies
- Red Supergiants as Cosmic Abundance Probes: massive star clusters in M83, and the mass-metallicity relation of nearby galaxies
- The stellar mass versus stellar metallicity relation of star-forming galaxies at and implications for the evolution of the -enhancement
- METAL: The Metal Evolution, Transport, and Abundance in the Large Magellanic Cloud Hubble program. II. Variations of interstellar depletions and dust-to-gas ratio within the LMC
- The Large-Scale Environments of Type Ia Supernovae: Evidence for a Metallicity Bias in the Rate or Luminosity of Prompt Ia Events
- The chemical composition of planetary nebulae and HII regions in NGC 3109
- Delay Time Distributions of Type Ia Supernovae From Galaxy and Cosmic Star Formation Histories
- Stars and gas in the most metal-poor galaxies I: COS and MUSE observations of SBS 0335-052E
- Detailed chemical composition of classical Cepheids in the LMC cluster NGC 1866 and in the field of the SMC
- The impact of the FMR and starburst galaxies on the (low-metallicity) cosmic star formation history
- Direct Constraints on the Extremely Metal-Poor Massive Stars Underlying Nebular C IV Emission from Ultra-Deep HST/COS Ultraviolet Spectroscopy
- The homogeneity of chemical abundances in H II regions of the Magellanic Clouds
- The metallicity and distance of NGC 2403 from blue supergiants
- The impact of very massive stars on the chemical evolution of extremely metal-poor galaxies
- Accurate Oxygen Abundance of Interstellar Gas in Mrk 71 from Optical and Infrared Spectra
- The First Metallicity Study of M83 using the integrated UV light of Star Clusters
- On the reliability of CIV 1549 as an abundance indicator for high redshift star-forming galaxies
- A spectroscopic study of blue supergiant stars in Local Group spiral galaxies: Andromeda and Triangulum
- Triple evolution: an important channel in the formation of type Ia supernovae
- Optical spectroscopy of the extremely metal-deficient star-forming galaxy HSC J1631+4426: a test of the strong-line method
- Deciphering stellar metallicities in the early Universe: Case study of a young galaxy at z = 4.77 in the MUSE eXtremely Deep Field
- Parameterisations of thermal bomb explosions for core-collapse supernovae and 56Ni production
- Extremely weak CO emission in IZw 18
- MUSE spectroscopic observations of the Young Massive Cluster NGC1850
- Chemical composition of the young massive cluster NGC 1569-B
Cited by in corpus (9)
- The Science of the Einstein Telescope
- Gas-phase Fe/O and Fe/N abundances in Star-Forming Regions. Relations between nucleosynthesis, metallicity and dust
- On the Contribution of Very Massive Stars to the Sulfur Abundance in Star-Forming Galaxies: the Role of PISN
- Luminous Fast Blue Optical Transients as "Failed" Gravitational-wave Sources: Helium CoreBlack Hole Mergers Following Delayed Dynamical Instability
- MARTA: The connection between chemical enrichment, feedback, and dust in a Wolf-Rayet galaxy at z2
- Compact object populations over cosmic time I. BOSSA: a Binary Object environment-Sensitive Sampling Algorithm
- The metallicity dependence of long-duration gamma-ray bursts
- FROST-CLUSTERS -- III. Metallicity-dependent intermediate mass black hole formation by runaway collisions in dense star clusters
- A comparative study of O, Ne, Cl, and Ar in Hii regions and PNe of the Galactic disk: Temporal evolution of radial gradients?