Dark-ages Reionization & Galaxy Formation Simulation I: The dynamical lives of high redshift galaxies
arXiv:1512.00559 · doi:10.1093/mnras/stw674
Abstract
We present the Dark-ages Reionization and Galaxy-formation Observables from Numerical Simulations (DRAGONS) program and Tiamat, the collisionless N-body simulation program upon which DRAGONS is built. The primary trait distinguishing Tiamat from other large simulation programs is its density of outputs at high redshift (100 from z=35 to z=5; roughly one every 10 Myr) enabling the construction of very accurate merger trees at an epoch when galaxy formation is rapid and mergers extremely frequent. We find that the friends-of-friends halo mass function agrees well with the prediction of Watson et al. at high masses, but deviates at low masses, perhaps due to our use of a different halo finder or perhaps indicating a break from "universal" behaviour. We then analyse the dynamical evolution of galaxies during the Epoch of Reionization finding that only a small fraction (~20%) of galactic halos are relaxed. We illustrate this using standard relaxation metrics to establish two dynamical recovery time-scales: i) halos need ~1.5 dynamical times following formation, and ii) ~2 dynamical times following a major (3:1) or minor (10:1) merger to be relaxed. This is remarkably consistent across a wide mass range. Lastly, we use a phase-space halo finder to illustrate that major mergers drive long-lived massive phase-space structures which take many dynamical times to dissipate. This can yield significant differences in the inferred mass build-up of galactic halos and we suggest that care must be taken to ensure a physically meaningful match between the galaxy-formation physics of semi-analytic models and the halo finders supplying their input.
15 pages, 10 figures. Accepted for publication by MNRAS
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- SURFS: Riding the waves with Synthetic UniveRses For Surveys
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- The Prevalence of Galaxy Overdensities Around UV-Luminous Lyman Emitters in the Epoch of Reionization
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- Dark-ages reionization and galaxy formation simulation--VII. The sizes of high-redshift galaxies
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- Cosmic Variance of the 21-cm Global Signal
- Dark-ages Reionization and Galaxy Formation Simulation -- XIX: Predictions of infrared excess and cosmic star formation rate density from UV observations
- Dark-ages reionization and galaxy-formation simulation - VI. The origins and fate of the highest known redshift galaxy
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- Cosmic Sands: The Origin of Dusty, Star-forming Galaxies in the Epoch of Reionization
- Supermassive black hole seeds from sub-keV dark matter
- Dark-ages reionization and galaxy formation simulation XI: Clustering and halo masses of high redshift galaxies
- A Global Semi-Analytic Model of the First Stars and Galaxies Including Dark Matter Halo Merger Histories
- Dark Matter Annihilation in the Circumgalactic Medium at High Redshifts
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- Dark-ages Reionization and Galaxy Formation Simulation - XIV. Gas accretion, cooling and star formation in dwarf galaxies at high redshift
- Geometric distances between closed universes