Simulations of Cosmic Chemical Enrichment
arXiv:astro-ph/0604107 · doi:10.1111/j.1365-2966.2007.11555.x
Abstract
Using a new numerical model for cosmic chemical evolution, we study the influence of hypernova feedback on the star formation and metal enrichment history of the universe. For assumptions which produce plausible results in idealized collapse models of individual galaxies, our cosmological simulations of the standard Lambda-CDM cosmology show a peak of the cosmic star formation rate at z~4, with ~10% of the baryons turning into stars. We find that the majority of stars in present-day massive galaxies formed in much smaller galaxies at high redshifts, giving them a mean stellar age as old as 10 Gyr, despite their late assembly times. The hypernova feedback drives galactic outflows efficiently in low mass galaxies, and these winds eject heavy elements into the intergalactic medium. The ejected baryon fraction is larger for less massive galaxies, correlates well with stellar metallicity, and amounts to ~20% of all baryons in total. The resulting enrichment history is broadly consistent with the observed abundances of Lyman break galaxies, of damped Lyman alpha systems, and of the intergalactic medium. The metallicity of the cold gas in galaxies increases with galaxy mass, which is comparable to observations with a significant scatter. The stellar mass-metallicity relation of the observed galaxy population is well reproduced by the simulation model as a result of mass-dependent galactic winds. However, star formation does not terminate in massive galaxies at late times in our model, and too few dwarf galaxies are still forming stars. These problems may be due to a lack of resolution, to inappropriate modelling of supernova feedback, or to a neglect of other feedback processes such as active galactic nuclei.
16 pages, 20 figures. Accepted for publication in MNRAS
References in corpus (6)
- The Mass-Metallicity Relation at z~2
- Galactic chemical evolution: Carbon through Zinc
- Subaru Deep Survey V. A Census of Lyman Break Galaxies at z=4 and 5 in the Subaru Deep Fields: Photometric Properties
- The Galaxy Mass Function up to z=4 in the GOODS-MUSIC sample: into the epoch of formation of massive galaxies
- Measuring the Average Evolution of Luminous Galaxies at z<3: The Rest-frame Optical Luminosity Density, Spectral Energy Distribution, and Stellar Mass Density
- The Enrichment History of Baryons in the Universe
Cited by in corpus (68)
- A unified model for AGN feedback in cosmological simulations of structure formation
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- Clues to the Origin of the Mass-Metallicity Relation: Dependence on Star Formation Rate and Galaxy Size
- Star Formation History up to z = 7.4: Implications for Gamma-Ray Bursts and the Cosmic Metallicity Evolution
- The Role of Environment in the Mass-Metallicity Relation
- Ages of Type Ia Supernovae Over Cosmic Time
- Do galaxy global relationships emerge from local ones? The SDSS IV MaNGA surface mass density-metallicity relation
- The Diversity and Variability of Star Formation Histories in Models of Galaxy Evolution
- Chemical evolution of galaxies. I. A composition-dependent SPH model for chemical evolution and cooling
- The missing metals problem. III How many metals are expelled from galaxies?
- The Chemical Evolution Carousel of Spiral Galaxies: Azimuthal Variations of Oxygen Abundance in NGC1365
- Starburst-AGN mixing: II. Optically-selected active galaxies
- Chemical mixing in smoothed particle hydrodynamics simulations
- C IV absorption in damped and sub-damped Lyman-alpha systems: correlations with metallicity and implications for galactic winds at z~2-3
- Stellar migrations and metal flows -- Chemical evolution of the thin disc of a simulated Milky Way analogous galaxy
- Transverse Sizes of CIV Absorption Systems Measured from Multiple QSO Sightlines
- The Absence of an Environmental Dependence in the Mass-Metallicity Relation at z=2
- Modeling The GRB Host Galaxy Mass Distribution: Are GRBs Unbiased Tracers of Star Formation?
- The Effects of AGN Feedback on Present-Day Galaxy Properties in Cosmological Simulations
- The mass-metallicity relations for gas and stars in star-forming galaxies: strong outflow vs variable IMF
- Seeding Black Holes in Cosmological Simulations
- The enrichment history of cosmic metals
- The Metallicity and Elemental Abundance Gradients of Simulated Galaxies, and their Environmental Dependence
- Metallicity, ionization parameter, and pressure variations of HII regions in the TYPHOON spiral galaxies
- Constrained semi-analytical models of Galactic outflows
- The KLEVER survey: Nitrogen abundances at 2 and probing the existence of a fundamental nitrogen relation
- The Evolving Faint-End of the Luminosity Function
- The evolution of the oxygen abundance gradients in star-forming galaxies in the EAGLE simulations
- Astraeus V: The emergence and evolution of metallicity scaling relations during the Epoch of Reionization
- Understanding chemical evolution in resolved galaxies -- I The local star fraction-metallicity relation
- Time Evolution of Galaxy Scaling Relations in Cosmological Simulations
- Galactic Wind Signatures around High Redshift Galaxies
- The Fornax3D project: Assembly histories of lenticular galaxies from a combined dynamical and population orbital analysis
- The evolution of galaxy metallicity scaling relations in cosmological hydrodynamical simulations
- Missing cosmic metals revealed by X-ray absorption towards distant sources
- Are dry mergers of Ellipticals the way to reconcile model predictions with the downsizing?
- Arm-interarm gas abundance variations explored with MUSE: the role of spiral structure in the chemical enrichment of galaxies
- Supermassive black holes, star formation and downsizing of elliptical galaxies
- Metallicity Gradient of Barred Galaxies with TYPHOON
- SPICE: the connection between cosmic reionisation and stellar feedback in the first galaxies
- The SAMI Galaxy Survey: the drivers of gas and stellar metallicity differences in galaxies
- DEVILS: Cosmic evolution of SED-derived metallicities and their connection to star-formation histories
- Examining the Decline in the C IV Content of the Universe over 4.3 < z < 6.3 using the E-XQR-30 Sample
- Galactic 26Al traces metal loss through hot chimneys
- An empirical prediction for stellar metallicity distributions in nearby galaxies
- A high fraction of close massive binary stars at low metallicity
- SIMBA-C: An updated chemical enrichment model for galactic chemical evolution in the SIMBA simulation
- Star-forming galaxies in SDSS: signs of metallicity evolution
- The impact of black hole seeding in cosmological simulations
- Star Formation in Simulated Galaxies: Understanding the Transition to Quiescence at M
- The star formation history and the nature of the mass-metallicity relation of passive galaxies at 1.0<z<1.4 from VANDELS
- Constraining IGM enrichment and metallicity with the C IV forest correlation function
- The extent of intergalactic metal enrichment from galactic winds during the Cosmic Dawn
- Physical Properties of the Host Galaxies of Ca-rich Transients
- Star Formation and Chemical Enrichment in Protoclusters
- HII Region Metallicity Constraints Near the Site of the Strongly Lensed Supernova "SN Refsdal" at Redshift 1.49
- Oxygen Loss from Simulated Galaxies and the Metal Flow Main Sequence: Predicting the Dependence on Mass and Environment
- The metallicity and elemental abundance maps of kinematically atypical galaxies for constraining minor merger and accretion histories
- Potential contributions of Pop III and intermediate-mass Pop II stars to cosmic chemical enrichment
- The Origin of the Stellar Mass-Stellar Metallicity Relation in the Milky Way Satellites and beyond
- Modelling the chemical evolution of the Milky Way
- JWST reveals a supernova following a gamma-ray burst at z 7.3
- Mass-dependent chemical enrichment sequences of SDSS star-forming galaxies out to z~0.3 revealed by direct O & Ar abundances
- Signatures of AGN induced metal loss in the stellar population
- The aluminium-26 distribution in a cosmological simulation of a Milky Way-type Galaxy
- Cosmic Radioactivity and Galactic Chemical Evolution