Large-scale structure in COBE-normalized cold dark matter cosmogonies
arXiv:astro-ph/9702082 · doi:10.1093/mnras/289.1.37
Abstract
We study the clustering of the mass distribution in COBE-normalized open and flat CDM models using large N-body simulations. With an age of the universe of 14 Gyr (12 Gyr) for the flat (open) models and a baryon density fixed by nucleosynthesis constraints, the observed abundance of rich galaxy clusters leads to tight constraints on the density parameter; 0.25<Omega_0<0.4 (0.4<Omega_0<0.5) for flat (open) models. The upper limits on Omega_0 can be relaxed if one lowers the H_0 and increases the age of the universe, but h<0.25 is required to allow Omega_0=1. The constraints also change if one allows tilted primordial power spectra. An acceptable Omega_0=1 model with h=0.5 can be constructed, with a tilt of n=0.8. We compare the evolved mass correlation functions of the most promising models with those of APM galaxies. The flat models have steep correlation functions at small scales and require galaxies to be antibiased on scales r<8 Mpc/h. The open models require little or no antibias on small scales and a positive bias on large scales. The lack of a positive bias on small scales is difficult to reconcile with the virial analysis of galaxy clusters which, if Omega_0>0.2, implies that galaxies are overabundant in clusters relative to the field. The tilted Omega_0=1 model, on the other hand, does require that galaxies be positively biased on all scales. We also compute the topology of isodensity contours in these models, obtaining theoretical predictions that are less sensitive to galaxy bias.
Accepted for publication in MNRAS. (shortened abstract) Also available at ftp://star-ftp.dur.ac.uk/pub/preprints/cobe_cdm.ps.gz
Cited by in corpus (42)
- The Cosmological Constant and Dark Energy
- Hierarchical Galaxy Formation
- Observational Probes of Cosmic Acceleration
- Evolution of structure in cold dark matter universes
- Towards a Precise Measurement of Matter Clustering: Lyman-alpha Forest Data at Redshifts 2-4
- The Epoch of Galaxy Formation
- Evolution of bias in different cosmological models
- Origin and evolution of halo bias in linear and non-linear regimes
- Properties of Galaxy Clusters: Mass and Correlation Functions
- Supernovae Ia Constraints on a Time-Variable Cosmological "Constant"
- Cosmological Constraints from Compact Radio Source Angular Size versus Redshift Data
- The Clustering of High Redshift Galaxies in the Cold Dark Matter Scenario
- Locally Biased Galaxy Formation and Large Scale Structure
- Inflation in a closed universe
- A Galaxy-Weighted Measure of the Relative Peculiar Velocity Dispersion
- CMB Anisotropy Constraints on Open and Flat-Lambda CDM Cosmogonies from UCSB South Pole, ARGO, MAX, White Dish, and SuZIE Data
- High-Redshift Galaxies in Cold Dark Matter Models
- Measuring the Nonlinear Biasing Function from a Galaxy Redshift Survey
- Cosmological Evolution of Linear Bias
- CMB Anisotropy Correlation Function and Topology from Simulated Maps for MAP
- Statistical characteristics of formation and evolution of structure in the universe
- Biased Galaxy Formation And Measurements Of Beta
- Superlarge-Scale Structure in N-body Simulations
- Topology from the Simulated Sloan Digital Sky Survey
- Reconstruction Analysis of Galaxy Redshift Surveys: A Hybrid Reconstruction Method
- MAX 4 and MAX 5 CMB anisotropy measurement constraints on open and flat-Lambda CDM cosmogonies
- Luminosity bias: from haloes to galaxies
- Biased Estimates of Omega from Comparing Smoothed Predicted Velocity Fields to Unsmoothed Peculiar Velocity Measurements
- Cosmological Parameter Determination from Counts of Galaxies
- Breaking Degeneracy of Dark Matter Models by the Scale-Scale Correlations of Galaxies
- ARGO CMB Anisotropy Measurement Constraints on Open and Flat-Lambda CDM Cosmogonies
- Using White Dish CMB Anisotropy Data to Probe Open and Flat-Lambda CDM Cosmogonies
- Neutrino Mass Limit from Galaxy Cluster Number Density Evolution
- Cluster mass function in mixed models
- Statistical characteristics of observed Ly- forest and the shape of initial power spectrum
- Morphological Number Counts and Redshift Distributions to I = 25 from the Hubble Deep Fields: Constraints on Cosmological Models from Early Type Galaxies
- Statistical characteristics of simulated walls
- Reconstruction Analysis of the IRAS Point Source Catalog Redshift Survey
- Redshift distribution of {\bf Ly-} lines and metal systems
- Cluster Correlation in Mixed Models
- Constraining Lambda using cluster quadrupoles
- Probing the Large-Scale Homogeneity of the Universe with Galaxy Redshift Surveys