Coming of Age in the Dark Sector: How Dark Matter Haloes grow their Gravitational Potential Wells
arXiv:1409.2750 · doi:10.1093/mnras/stu1872
Abstract
We present a detailed study of how dark matter haloes assemble their mass and grow their (central) potential well. We characterize these via their mass accretion histories (MAHs) and potential well growth histories (PWGHs), which we extract from the Bolshoi simulation and from semi-analytical merger trees supplemented with a method to compute the maximum circular velocity, Vmax, of progenitor haloes. The results of both methods are in excellent agreement, both in terms of the average and the scatter. We show that the MAH and PWGH are tightly correlated, and that growth of the central potential precedes the assembly of mass; the maximum circular velocity is already half the present day value by the time the halo has accreted only 2 percent of its final mass. Finally, we demonstrate that MAHs have a universal form, which we use to develop a new and improved universal model that can be used to compute the average or median MAH and PWGH for a halo of any mass in any LCDM cosmology, without having to run a numerical simulation or a set of halo merger trees.
20 pages, 14 figures, accepted for publication in MNRAS
References in corpus (23)
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Concentration, Spin and Shape of Dark Matter Haloes as a Function of the Cosmological Model: WMAP1, WMAP3 and WMAP5 results
- Rotation-Dependent Catastrophic Disruption of Gravitational Aggregates
- Generating Dark Matter Halo Merger Trees
- A Revised Model for the Formation of Disk Galaxies: Low Spin and Dark-Halo Expansion
- Natural Downsizing in Hierarchical Galaxy Formation
- On the Lack of Evolution in Galaxy Star Formation Efficiency
- The Nearly Universal Merger Rate of Dark Matter Haloes in Lambda-CDM Cosmology
- The pseudo-evolution of halo mass
- The Population of Dark Matter Subhaloes: Mass Functions and Average Mass Loss Rates
- On Halo Formation Times and Assembly Bias
- The virialized mass of dark matter haloes
- The 12C + 12C reaction and the impact on nucleosynthesis in massive stars
- Merger Rates of Dark-Matter Haloes
- The Dependence of the Mass Assembly History of Cold Dark Matter Halos on Environment
- Constructing Merger Trees that Mimic N-Body Simulations
- An improved model for the formation times of dark matter haloes
- The statistical properties of LCDM halo formation
- Predicting Galaxy Star Formation Rates via the Co-evolution of Galaxies and Halos
- Rhapsody. II. Subhalo Properties and the Impact of Tidal Stripping From a Statistical Sample of Cluster-Size Halos
- Mass distribution and accretion of sub-halos
- Statistics of Dark Matter Substructure: I. Model and Universal Fitting Functions
- Statistics of Dark Matter Substructure: II. Comparison of Model with Simulation Results
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