Dark-ages reionization and galaxy formation simulation - IX. Economics of reionizing galaxies
arXiv:1705.07255 · doi:10.1093/mnras/stx1242
Abstract
Using a series of high-resolution hydrodynamical simulations we show that during the rapid growth of high-redshift (z > 5) galaxies, reserves of molecular gas are consumed over a time-scale of 300Myr, almost independent of feedback scheme. We find that there exists no such simple relation for the total gas fractions of these galaxies, with little correlation between gas fractions and specific star formation rates. The bottleneck or limiting factor in the growth of early galaxies is in converting infalling gas to cold star-forming gas. Thus, we find that the majority of high redshift dwarf galaxies are effectively in recession, with demand (of star formation) never rising to meet supply (of gas), irrespective of the baryonic feedback physics modelled. We conclude that the basic assumption of self-regulation in galaxies - that they can adjust total gas consumption within a Hubble time - does not apply for the dwarf galaxies thought to be responsible for providing most UV photons to reionize the high redshift Universe. We demonstrate how this rapid molecular time-scale improves agreement between semi-analytic model predictions of the early Universe and observed stellar mass functions.
17 pages, 27 figures, accepted for publication in MNRAS, minor updates to align with final published version
References in corpus (20)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Properties of galaxies reproduced by a hydrodynamic simulation
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- The Hubble Ultra Deep Field
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Combined CO & Dust Scaling Relations of Depletion Time and Molecular Gas Fractions with Cosmic Time, Specific Star Formation Rate and Stellar Mass
- The Role of Pressure in GMC Formation II: The H_2 - Pressure Relation
- 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
- Structure and star formation in galaxies out to z=3: evidence for surface density dependent evolution and upsizing
- COLD GASS, an IRAM Legacy Survey of Molecular Gas in Massive Galaxies: II. The non-universality of the Molecular Gas Depletion Timescale
- The mass evolution of the first galaxies: stellar mass functions and star formation rates at in the CANDELS GOODS-South field
- Environmental Dependence of the Kennicutt-Schmidt Relation in Galaxies
- The Atomic to Molecular Transition and its Relation to the Scaling Properties of Galaxy Disks in the Local Universe
- Dark-ages reionization and galaxy formation simulation--VII. The sizes of high-redshift galaxies
- Low-mass galaxy formation and the ionizing photon budget during reionization
- Dark-ages Reionization & Galaxy Formation Simulation VIII. Suppressed growth of dark matter halos during the Epoch of Reionization