Quasi-equilibrium models of high-redshift disc galaxy evolution
arXiv:2011.01966 · doi:10.1093/mnras/staa3451
Abstract
In recent years, simple models of galaxy formation have been shown to provide reasonably good matches to available data on high-redshift luminosity functions. However, these prescriptions are primarily phenomenological, with only crude connections to the physics of galaxy evolution. Here we introduce a set of galaxy models that are based on a simple physical framework but incorporate more sophisticated models of feedback, star formation, and other processes. We apply these models to the high-redshift regime, showing that most of the generic predictions of the simplest models remain valid. In particular, the stellar mass--halo mass relation depends almost entirely on the physics of feedback (and is thus independent of the details of small-scale star formation) and the specific star formation rate is a simple multiple of the cosmological accretion rate. We also show that, in contrast, the galaxy's gas mass is sensitive to the physics of star formation, although the inclusion of feedback-driven star formation laws significantly changes the naive expectations. While these models are far from detailed enough to describe every aspect of galaxy formation, they inform our understanding of galaxy formation by illustrating several generic aspects of that process, and they provide a physically-grounded basis for extrapolating predictions to faint galaxies and high redshifts currently out of reach of observations. If observations show violations from these simple trends, they would indicate new physics occurring inside the earliest generations of galaxies.
20 pages, 13 figures, in press at MNRAS
References in corpus (17)
- UV Luminosity Functions at redshifts z~4 to z~10: 10000 Galaxies from HST Legacy Fields
- Cosmic Reionization and Early Star-Forming Galaxies: A Joint Analysis of New Constraints from Planck and Hubble Space Telescope
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- Star formation in AEGIS field galaxies since z=1.1 . Staged galaxy formation, and a model of mass-dependent gas exhaustion
- Natural Downsizing in Hierarchical Galaxy Formation
- Dynamical Properties of z~2 Star Forming Galaxies and a Universal Star Formation Relation
- A lack of evolution in the very bright-end of the galaxy luminosity function from z = 8-10
- On the interplay between star formation and feedback in galaxy formation simulations
- Observational Evidence of Dynamic Star Formation Rate in Milky Way Giant Molecular Clouds
- Cloud Scale ISM Structure and Star Formation in M51
- The Global 21-cm Signal in the Context of the High-z Galaxy Luminosity Function
- Merger Rates of Dark-Matter Haloes
- The ALFALFA "Almost Darks" Campaign: Pilot VLA HI Observations of Five High Mass-to-Light Ratio Systems
- An analytic model for OIII fine structure emission from high redshift galaxies
- High-Contrast Testbeds for Future Space-Based Direct Imaging Exoplanet Missions
- Effects of self-consistent rest-ultraviolet colours in semi-empirical galaxy formation models
- Tomography of the Cosmic Dawn and Reionization Eras with Multiple Tracers