The impact of the FMR and starburst galaxies on the (low-metallicity) cosmic star formation history
arXiv:2109.06187 · doi:10.1093/mnras/stab2690
Abstract
The question how much star formation is occurring at low metallicity throughout the cosmic history appears crucial for the discussion of the origin of various energetic transients, and possibly - double black hole mergers. We revisit the observation-based distribution of birth metallicities of stars (f(Z,z)), focusing on several factors that strongly affect its low metallicity part: (i) the method used to describe the metallicity distribution of galaxies (redshift-dependent mass metallicity relation - MZR, or redshift-invariant fundamental metallicity relation - FMR), (ii) the contribution of starburst galaxies and (iii) the slope of the MZR. We empirically construct the FMR based on the low-redshift scaling relations, which allows us to capture the systematic differences in the relation caused by the choice of metallicity and star formation rate (SFR) determination techniques and discuss the related f(Z,z) uncertainty. We indicate factors that dominate the f(Z,z) uncertainty in different metallicity and redshift regimes. The low metallicity part of the distribution is poorly constrained even at low redshifts (even a factor of 200 difference between the model variations) The non-evolving FMR implies a much shallower metallicity evolution than the extrapolated MZR, however, its effect on the low metallicity part of the f(Z,z) is counterbalanced by the contribution of starbursts (assuming that they follow the FMR). A non-negligible fraction of starbursts in our model may be necessary to satisfy the recent high-redshift SFR density constraints.
resubmitted to MNRAS after minor revision
References in corpus (22)
- Cosmic Star Formation History
- A Highly Consistent Framework for the Evolution of the Star-Forming "Main Sequence" from z~0-6
- The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
- An Objective Definition for the Main Sequence of Star-Forming Galaxies
- The Mass-Metallicity and the Fundamental Metallicity Relation revisited on a fully Te-based abundance scale for galaxies
- Clues to the Origin of the Mass-Metallicity Relation: Dependence on Star Formation Rate and Galaxy Size
- The Universal Relation of Galactic Chemical Evolution: The Origin of the Mass-Metallicity Relation
- Merging black hole binaries: the effects of progenitor's metallicity, mass-loss rate and Eddington factor
- The MOSDEF Survey: The Evolution of the Mass-Metallicity Relation from to
- Mass loss from late-type WN stars and its Z-dependence: very massive stars approaching the Eddington limit
- The ALPINE-ALMA [CII] Survey: The nature, luminosity function and star formation history of dusty galaxies up to z~6
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations I: Black Hole-Neutron Star Mergers
- A Critical Look at the Mass-Metallicity-SFR Relation in the Local Universe. I. An Improved Analysis Framework and Confounding Systematics
- The ALPINE-ALMA [CII] Survey: Obscured Star Formation Rate Density and Main Sequence of star-forming galaxies at z>4
- The NIRVANDELS Survey: a robust detection of -enhancement in star-forming galaxies at
- Coevolution of metallicity and star formation in galaxies to z=3.7: I. A fundamental plane
- The MOSDEF-LRIS Survey: The Connection Between Massive Stars and Ionized Gas in Individual Galaxies at
- Analysis of the SFR - M* plane at z<3: single fitting versus multi-Gaussian decomposition
- Evolution of Galaxy Star Formation and Metallicity: Impact on Double Compact Objects Mergers
- The effect of the environment-dependent IMF on the formation and metallicities of stars over the cosmic history
- Gas accretion regulates the scatter of the mass-metallicity relation
- The ALPINE-ALMA [C II] survey: the luminosity function of serendipitous [C II] line emitters at
Cited by in corpus (13)
- The redshift evolution of the binary black hole merger rate: a weighty matter
- The Science of the Einstein Telescope
- The locations of features in the mass distribution of merging binary black holes are robust against uncertainties in the metallicity-dependent cosmic star formation history
- LIGO-Virgo-KAGRA's Oldest Black Holes: Probing star formation at cosmic noon with GWTC-3
- Trading oxygen for iron I: the [O/Fe] -- specific star formation rate relation of galaxies
- The GW-Universe Toolbox II: constraining the binary black hole population with second and third generation detectors
- Formation and fate of low metallicity stars in IllustrisTNG50
- The more accurately the metal-dependent star formation rate is modeled, the larger the predicted excess of binary black hole mergers
- Luminous Fast Blue Optical Transients as "Failed" Gravitational-wave Sources: Helium CoreBlack Hole Mergers Following Delayed Dynamical Instability
- The metallicity dependence of long-duration gamma-ray bursts
- Modelling the host galaxies of binary compact object mergers with observational scaling relations
- Impact of Massive Binary Star and Cosmic Evolution on Gravitational Wave Observations II: Double Compact Object Rates and Properties
- Detecting White Dwarf Binary Mergers with Gravitational Waves