Lessons from cosmic history: The case for a linear star formation -- H2 relation
arXiv:1212.2223 · doi:10.1093/mnras/stt851
Abstract
Observations show that star formation in galaxies is closely correlated with the abundance of molecular hydrogen. Modeling this empirical relation from first principles proves challenging, however, and many questions regarding its properties remain open. For instance, the exact functional form of the relation is still debated and it is also unknown whether it applies at z>4, where CO observations are sparse. Here, we analyze how the shape of the star formation -- gas relation affects the cosmic star formation history and global galaxy properties using an analytic model that follows the average evolution of galaxies in dark matter halos across cosmic time. We show that a linear relation with an H2 depletion time of ~2.5 Gyr, as found in studies of nearby galaxies, results in good agreement with current observations of galaxies at both low and high redshift. These observations include the evolution of the cosmic star formation rate density, the z~4-9 UV luminosity function, the evolution of the mass -- metallicity relation, the relation between stellar and halo mass, and the gas-to-stellar mass ratios of galaxies. In contrast, the short depletion times that result from adopting a highly super-linear star formation -- gas relation lead to large star formation rates, substantial metal enrichment (~0.1 solar), and low gas-to-stellar mass ratios already at z~10, in disagreement with observations. These results can be understood in terms of an equilibrium picture of galaxy evolution in which gas inflows, outflows, and star formation drive the metallicities and gas fractions toward equilibrium values that are determined by the ratio of the accretion time to the gas depletion time. In this picture, the cosmic modulation of the accretion rate is the primary process that drives the evolution of stellar masses, gas masses, and metallicities of galaxies from high redshift until today.
22 pages, 13 figures, minor revision after referee report
References in corpus (23)
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- The Mass-Metallicity Relation at z~2
- PHIBSS: molecular gas content and scaling relations in z~1-3 normal star forming galaxies
- UV Luminosity Functions at z~4, 5, and 6 from the HUDF and other Deep HST ACS Fields: Evolution and Star Formation History
- Massloss of galaxies due to a UV-background
- The Evolving Interstellar Medium of Star Forming Galaxies Since z=2 as Probed by Their Infrared Spectral Energy Distributions
- COLD GASS, an IRAM legacy survey of molecular gas in massive galaxies: I. Relations between H2, HI, stellar content and structural properties
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- Simulating the formation of molecular clouds. II. Rapid formation from turbulent initial conditions
- Natural Downsizing in Hierarchical Galaxy Formation
- On the Lack of Evolution in Galaxy Star Formation Efficiency
- Environmental Dependence of the Kennicutt-Schmidt Relation in Galaxies
- The Atomic to Molecular Transition in Galaxies. I: An Analytic Approximation for Photodissociation Fronts in Finite Clouds
- The Relationship Between Molecular Gas Tracers and Kennicutt-Schmidt Laws
- A Model for Star Formation, Gas Flows and Chemical Evolution in Galaxies at High Redshifts
- A Universal Neutral Gas Profile for Nearby Disk Galaxies
- Constructing Merger Trees that Mimic N-Body Simulations
- The Molecular Gas Content of z = 3 Lyman Break Galaxies; Evidence of a non Evolving Gas Fraction in Main Sequence Galaxies at z > 2
- Evidence for a non-universal Kennicutt-Schmidt relationship using hierarchical Bayesian linear regression
- How Universal is the SFR - H2 Relation?
- Galaxy Gas Fractions at High-Redshift: The Tension between Observations and Cosmological Simulations
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- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- FIRE-2 Simulations: Physics versus Numerics in Galaxy Formation
- Regularity underlying complexity: a redshift-independent description of the continuous variation of galaxy-scale molecular gas properties in the mass-star formation rate plane
- Validation of the equilibrium model for galaxy evolution to z~3 through molecular gas and dust observations of lensed star-forming galaxies
- The evolution of the mass-metallicity relation in IllustrisTNG
- Star formation sustained by gas accretion
- From haloes to Galaxies - I. The dynamics of the gas regulator model and the implied cosmic sSFR history
- The Argo Simulation: I. Quenching of Massive Galaxies at High Redshift as a Result of Cosmological Starvation
- The equilibrium view on dust and metals in galaxies: Galactic outflows drive low dust-to-metal ratios in dwarf galaxies
- PHIBSS2: survey design and z=0.5-0.8 results. Molecular gas reservoirs during the winding-down of star formation
- Modeling the Formation of Globular Cluster Systems in the Virgo Cluster
- FIREbox: Simulating galaxies at high dynamic range in a cosmological volume
- Possible Signatures of a Cold-Flow Disk from MUSE using a z=1 galaxy--quasar pair towards SDSSJ1422-0001
- On the origin of the fundamental metallicity relation and the scatter in galaxy scaling relations
- Colours, Star formation Rates, and Environments of Star forming and Quiescent Galaxies at the Cosmic Noon
- Why do high-redshift galaxies show diverse gas-phase metallicity gradients?
- A Star Formation Law for Dwarf Irregular Galaxies
- The Global Star Formation Laws of Galaxies from a Radio Continuum Perspective
- Coincidence between morphology and star-formation activity through cosmic time: the impact of the bulge growth
- Stellar Mass--Gas-phase Metallicity Relation at : A Power Law with Increasing Scatter toward the Low-mass Regime
- A simple model linking galaxy and dark matter evolution
- GRUMPY: a simple framework for realistic forward-modelling of dwarf galaxies
- Understanding chemical evolution in resolved galaxies -- I The local star fraction-metallicity relation
- On the cosmic evolution of the specific star formation rate
- Gas Accretion and Galactic Chemical Evolution: Theory and Observations
- Spatial and orbital planes of the Milky Way satellites: unusual but consistent with CDM
- Gas Accretion and Star Formation Rates
- MusE GAs FLOw and Wind (MEGAFLOW) VII. A NOEMA pilot program to probe molecular gas in galaxies with measured circumgalactic gas flows
- Positive feedback at the disc-halo interface
- Central star formation in double-peak gas rich radio galaxies
- Gas Accretion and Star-Formation Rates with IFUs and Background Quasars
- Densities and mass assembly histories of the Milky Way satellites are not a challenge to CDM
- Forward-modelling the Luminosity, Distance, and Size distributions of the Milky Way Satellites