An analytic model for the epoch of halo creation
arXiv:astro-ph/0002328 · doi:10.1046/j.1365-8711.2000.03769.x
Abstract
In this paper we describe the Bayesian link between the cosmological mass function and the distribution of times at which isolated halos of a given mass exist. By assuming that clumps of dark matter undergo monotonic growth on the time-scales of interest, this distribution of times is also the distribution of `creation' times of the halos. This monotonic growth is an inevitable aspect of gravitational instability. The spherical top-hat collapse model is used to estimate the rate at which clumps of dark matter collapse. This gives the prior for the creation time given no information about halo mass. Applying Bayes' theorem then allows any mass function to be converted into a distribution of times at which halos of a given mass are created. This general result covers both Gaussian and non-Gaussian models. We also demonstrate how the mass function and the creation time distribution can be combined to give a joint density function, and discuss the relation between the time distribution of major merger events and the formula calculated. Finally, we determine the creation time of halos within three N-body simulations, and compare the link between the mass function and creation rate with the analytic theory.
7 pages, 2 figures, submitted to MNRAS
Cited by in corpus (21)
- A Model For Halo Formation With Axion Mixed Dark Matter
- Cosmological structure formation in a homogeneous dark energy background
- Evidence that powerful radio jets have a profound influence on the evolution of galaxies
- Dark matter halo abundances, clustering and assembly histories at high redshift
- The Formation Histories of Galaxy Clusters
- Damped Lyman alpha systems and disk galaxies: number density, column density distribution and gas density
- On Galaxy-Cluster Sizes and Temperatures
- Two-Dimensional Modelling of Optical HST and Infrared Tip-Tilt Images of Quasar Host Galaxies
- Substructure in dark matter halos: Towards a model of the abundance and spatial distribution of subclumps
- The extragalactic sub-mm population: predictions for the SCUBA Half-Degree Extragalactic Survey (SHADES)
- Major Mergers of Haloes, Growth of Massive Black Holes and Evolving Luminosity Function of Quasars
- A Comparison of Simulated and Analytic Major Merger Counts
- Testing the Modified Press-Schechter Model against N-Body Simulations
- Galactosynthesis: Halo Histories, Star Formation, and Disks
- The Normalization and Slope of the Dark Matter (Sub-)Halo Mass Function on Sub-Galactic Scales
- The build-up of halos within Press-Schechter theory
- The Cosmological History of Accretion onto Dark Halos and Supermassive Black Holes
- A Merger Tree with Microsolar Mass Resolution: Application to -ray Emission from Subhalo Population
- Dark matter halo creation in moving barrier models
- Extended Press-Schechter theory and the density profiles of dark matter haloes
- A Stochastic Theory of the Hierarchical Clustering II. Halo progenitor mass function and large-scale bias