Exploring Simulated Early Star Formation in the Context of the Ultrafaint Dwarf Galaxies
arXiv:1801.08569 · doi:10.1093/mnras/sty064
Abstract
Ultrafaint dwarf galaxies (UFDs) are typically assumed to have simple, stellar populations with star formation ending at reionization. Yet as the observations of these galaxies continue to improve, their star formation histories (SFHs) are revealed to be more complicated than previously thought. In this paper, we study how star formation, chemical enrichment, and mixing proceed in small, dark matter halos at early times using a high-resolution, cosmological, hydrodynamical simulation. The goals are to inform the future use of analytic models and to explore observable properties of the simulated halos in the context of UFD data. Specifically, we look at analytic approaches that might inform metal enrichment within and beyond small galaxies in the early Universe. We find that simple assumptions for modeling the extent of supernova-driven winds agree with the simulation on average whereas inhomogeneous mixing and gas flows have a large effect on the spread in simulated stellar metallicities. In the context of the UFDs, this work demonstrates that simulations can form halos with a complex SFH and a large spread in the metallicity distribution function within a few hundred Myr in the early Universe. In particular, bursty and continuous star formation are seen in the simulation and both scenarios have been argued from the data. Spreads in the simulated metallicities, however remain too narrow and too metal-rich when compared to the UFDs. Future work is needed to help reduce these discrepancies and advance our interpretation of the data.
14 pages, 11 figures, accepted by MNRAS
References in corpus (14)
- The Quenching of the Ultra-Faint Dwarf Galaxies in the Reionization Era
- Resolving the Formation of Protogalaxies. III. Feedback from the First Stars
- Simulating galaxies in the reionization era with FIRE-2: galaxy scaling relations, stellar mass functions, and luminosity functions
- Feedback-regulated star formation and escape of LyC photons from mini-haloes during reionisation
- The Birth of a Galaxy. II. The Role of Radiation Pressure
- Multi-Element Abundance Measurements from Medium-Resolution Spectra. IV. Alpha Element Distributions in Milky Way Dwarf Satellite Galaxies
- Ultra faint dwarfs: probing early cosmic star formation
- Connecting the first galaxies with ultra faint dwarfs in the Local Group: chemical signatures of Population~III stars
- The effect of feedback and reionization on star formation in low-mass dwarf galaxy haloes
- Ultrafaint Dwarf Galaxies - the lowest mass relics from before reionization
- A comparison of the s- and r-process element evolution in local dwarf spheroidal galaxies and in the Milky Way
- Scaling Relations for Galaxies Prior to Reionization
- Star Formation in Ultrafaint Dwarfs: Continuous or Single-age Bursts?
- On the constancy of the high-mass slope of the initial mass function
Cited by in corpus (14)
- Origin of the Heaviest Elements: the Rapid Neutron-Capture Process
- Ultra-faint dwarfs in a Milky Way context: Introducing the Mint Condition DC Justice League Simulations
- Simulating an Isolated Dwarf Galaxy with Multi-Channel Feedback and Chemical Yields from Individual Stars
- The Formation Times and Building Blocks of Milky Way-mass Galaxies in the FIRE Simulations
- Dancing in the Dark: Uncertainty in ultra-faint dwarf galaxy predictions from cosmological simulations
- Double dark matter vision: twice the number of compact-source lenses with narrow-line lensing and the WFC3 grism
- Metal Mixing and Ejection in Dwarf Galaxies is Dependent on Nucleosynthetic Source
- The little things matter: relating the abundance of ultrafaint satellites to the hosts' assembly history
- High-resolution three-dimensional simulations of gas removal from ultrafaint dwarf galaxies. I. Stellar feedback
- Simulating Metal Mixing of Both Common and Rare Enrichment Sources in a Low Mass Dwarf Galaxy
- Exploring Chemical Homogeneity in Dwarf Galaxies: A VLT-MUSE study of JKB 18
- The observable properties of galaxy accretion events in Milky Way-like galaxies in the FIRE-2 cosmological simulations
- Minimum star-forming halo mass in axion cosmology
- Probing the assembly of dwarf galaxies through cosmic time with damped Lyman- absorption spectroscopy