Convergence of Galaxy Properties with Merger Tree Temporal Resolution
arXiv:1107.4098 · doi:10.1111/j.1365-2966.2011.20002.x
Abstract
Dark matter halo merger trees are now routinely extracted from cosmological simulations of structure formation. These trees are frequently used as inputs to semi-analytic models of galaxy formation to provide the backbone within which galaxy formation takes place. By necessity, these merger trees are constructed from a finite set of discrete "snapshots" of the N-body simulation and so have a limited temporal resolution. To date, there has been little consideration of how this temporal resolution affects the properties of galaxies formed within these trees. In particular, the question of how many snapshots are needed to achieve convergence in galaxy properties has not be answered. Therefore, we study the convergence in the stellar and total baryonic masses of galaxies, distribution of merger times, stellar mass functions and star formation rates in the Galacticus model of galaxy formation as a function of the number of "snapshot" times used to represent dark matter halo merger trees. When utilizing snapshots between z=20 and z=0, we find that at least 128 snapshots are required to achieve convergence to within 5% for galaxy masses. This convergence is obtained for mean quantities averaged over large samples of galaxies - significant variance for individual galaxies remains even when using very large numbers of snapshots. We find only weak dependence of the rate of convergence on the distribution of snapshots in time - snapshots spaced uniformly in the expansion factor, uniformly in the logarithm of expansion factor or uniformly in the logarithm of critical overdensity for collapse work equally well in almost all cases. We provide input parameters to Galacticus which allow this type of convergence study to be tuned to other simulations and to be carried out for other galaxy properties.
15 pages, 12 figures, submitted to MNRAS. Parameter files and plotting scripts available at http://www.ctcp.caltech.edu/galacticus/parameters/dmTreeConvergence.tar.bz2 and in the anciliary data stored with this arXiv submission
References in corpus (6)
- The hierarchical formation of the brightest cluster galaxies
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- Galacticus: A Semi-Analytic Model of Galaxy Formation
- Generating Dark Matter Halo Merger Trees
- The MORGANA model for the rise of galaxies and active nuclei
- Monte Carlo Markov Chain Parameter Estimation in Semi-Analytic Models of Galaxy Formation
Cited by in corpus (24)
- Structure Finding in Cosmological Simulations: The State of Affairs
- An accurate tool for the fast generation of dark matter halo catalogs
- The accretion history of dark matter halos I: The physical origin of the universal function
- Approximate Bayesian Computation for Astronomical Model Analysis: A Case Study in Galaxy Demographics and Morphological Transformation at High Redshift
- The Outer Rim Simulation: A Path to Many-Core Supercomputers
- Chemo-Archaeological Downsizing in a Hierarchical Universe: Impact of a Top Heavy IGIMF
- MultiDark-Galaxies: data release and first results
- The evolution of SMBH spin and AGN luminosities for within a semi-analytic model of galaxy formation
- A First Look at Galaxy Flyby Interactions: I. Characterizing the Frequency of Flybys in a Cosmological Context
- Calibration of semi-analytic models of galaxy formation using Particle Swarm Optimization
- Physical drivers of galaxies' cold-gas content: exploring environmental and evolutionary effects with DARK SAGE
- Sussing Merger Trees: the influence of the halo finder
- Building a Predictive Model of Galaxy Formation - I: Phenomenological Model Constrained to the Stellar Mass Function
- SIBELIUS-DARK: a galaxy catalogue of the Local Volume from a constrained realisation simulation
- Convergence properties of halo merger trees; halo and substructure merger rates across cosmic history
- Streams Going Notts: The tidal debris finder comparison project
- Cosmic CARNage I: on the calibration of galaxy formation models
- A semi-analytic model comparison: testing cooling models against hydrodynamical simulations
- Massive galaxy formation caught in action at z~5 with JWST
- Halo concentrations from extended Press-Schechter merger histories
- Characterising the Structure of Halo Merger Trees Using a Single Parameter: The Tree Entropy
- Revealing the hidden cosmic feast: A z=4.3 galaxy group hosting two optically dark, efficiently star-forming galaxies
- Metal distribution in the ICM - a comprehensive numerical study of twelve galaxy clusters
- Building Halo Merger Trees from the Q Continuum Simulation