Bent by baryons: the low mass galaxy-halo relation
arXiv:1404.3724 · doi:10.1093/mnras/stu2753
Abstract
The relation between galaxies and dark matter halos is of vital importance for evaluating theoretical predictions of structure formation and galaxy formation physics. We show that the widely used method of abundance matching based on dark matter only simulations fails at the low mass end because two of its underlying assumptions are broken: only a small fraction of low mass (below 10^9.5 solar masses) halos host a visible galaxy, and halos grow at a lower rate due to the effect of baryons. In this regime, reliance on dark matter only simulations for abundance matching is neither accurate nor self-consistent. We find that the reported discrepancy between observational estimates of the halo masses of dwarf galaxies and the values predicted by abundance matching does not point to a failure of LCDM, but simply to a failure to account for baryonic effects. Our results also imply that the Local Group contains only a few hundred observable galaxies in contrast with the thousands of faint dwarfs that abundance matching would suggest. We show how relations derived from abundance matching can be corrected, so that they can be used self-consistently to calibrate models of galaxy formation.
8 pages, submitted to MNRAS, comments welcome
References in corpus (11)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Massloss of galaxies due to a UV-background
- The Cold Dark Matter Halos of Local Group Dwarf Spheroidals
- The abundance of (not just) dark matter haloes
- Scaling Relations and the Fundamental Line of the Local Group Dwarf Galaxies
- The baryon fraction of LambdaCDM haloes
- A First Attempt to Calibrate the Baryonic Tully-Fisher Relation with Gas Dominated Galaxies
- The origin of failed subhaloes and the common mass scale of the Milky Way satellite galaxies
- Photo-heating and supernova feedback amplify each other's effect on the cosmic star formation rate
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- Too Big to Fail in the Local Group
- Is there a "too big to fail" problem in the field?
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- Expanded haloes, abundance matching and too-big-to-fail in the Local Group
- Milky Way mass constraints from the Galactic satellite gap
- Impact of Lyman alpha pressure on metal-poor dwarf galaxies
- Size matters: abundance matching, galaxy sizes, and the Tully-Fisher relation in EAGLE
- Constraining the HI-Halo Mass Relation From Galaxy Clustering
- Galaxy interactions in IllustrisTNG-100, I: The power and limitations of visual identification
- Simulations of galaxies formed in warm dark matter halos of masses at the filtering scale
- Chemical and stellar properties of star-forming dwarf galaxies
- The Spectroscopy and H-band Imaging of Virgo cluster galaxies (SHIVir) Survey: Scaling Relations and the Stellar-to-Total Mass Relation
- A low pre-infall mass for the Carina dwarf galaxy from disequilibrium modelling
- Primordial Black Holes as Dark Matter: Constraints From Compact Ultra-Faint Dwarfs
- Running with BICEP2: Implications for Small-Scale Problems in CDM
- The Normalization and Slope of the Dark Matter (Sub-)Halo Mass Function on Sub-Galactic Scales
- The AGORA High-resolution Galaxy Simulations Comparison Project. V: Satellite Galaxy Populations In A Cosmological Zoom-in Simulation of A Milky Way-mass Halo
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- Tracing stars in Milky Way satellites with A-SLOTH
- Identifying galaxy candidates in WSRT HI imaging of ultra-compact high velocity clouds
- The Milky Way, Coming into Focus: Precision Astrometry Probes its Evolution, and its Dark Matter
- Galaxy Three-Point Correlation Functions and Halo/Subhalo Models
- The effects of local stellar radiation and dust depletion on non-equilibrium interstellar chemistry
- Local Group Analogs in CDM cosmological simulations
- Predictions on the stellar-to-halo mass relation in the dwarf regime using the empirical model for galaxy formation EMERGE
- Comparing Galaxy Clustering in Horizon-AGN Simulated Lightcone Mocks and VIDEO Observations
- Evolution of dwarf galaxy observable parameters
- Too small to succeed: the difficulty of sustaining star formation in low-mass haloes
- Timing Mass of the Local Group