The evolution of clustering and bias in the galaxy distribution
arXiv:astro-ph/9805208 · doi:10.1098/rsta.1999.0319
Abstract
This paper reviews the measurements of galaxy correlations at high redshifts, and discusses how these may be understood in models of hierarchical gravitational collapse. The clustering of galaxies at redshift one is much weaker than at present, and this is consistent with the rate of growth of structure expected in an open universe. If , this observation would imply that bias increases at high redshift, in conflict with observed values for known high- clusters. At redshift 3, the population of Lyman-limit galaxies displays clustering which is of similar amplitude to that seen today. This is most naturally understood if the Lyman-limit population is a set of rare recently-formed objects. Knowing both the clustering and the abundance of these objects, it is possible to deduce empirically the fluctuation spectrum required on scales which cannot be measured today owing to gravitational nonlinearities. Of existing physical models for the fluctuation spectrum, the results are most closely matched by a low-density spatially flat universe. This conclusion is reinforced by an empirical analysis of CMB anisotropies, in which the present-day fluctuation spectrum is forced to have the observed form. Open models are strongly disfavoured, leaving CDM as the most successful simple model for structure formation.
Invited review at the Royal Society Meeting `Large-scale structure in the universe', London, March 1998. 20 Pages LaTeX
References in corpus (13)
- Constraints on Cosmological Models from Hubble Space Telescope Observations of High-z Supernovae
- A Large Structure of Galaxies At Redshift z~3 and its Cosmological Implications
- Recovery of the Power Spectrum of Mass Fluctuations from Observations of the Lyman-alpha Forest
- The Epoch of Galaxy Formation
- Keck Spectroscopy of Redshift z~3 Galaxies in the Hubble Deep Field
- LBDS 53W091: An Old red Galaxy at z=1.552
- Damped Lyman alpha absorbers at high redshift -- large disks or galactic building blocks?
- The correlation function of radio sources
- Testing Cosmological Models Against the Abundance of Damped Lyman-Alpha Absorbers
- Old high-redshift galaxies and primordial density fluctuation spectra
- Cosmological Constraints from High-Redshift Damped Lyman-Alpha Systems
- A Study of Quasar Clustering at z>2.7 from the Palomar Transit Grism Survey
- Three-dimensional orbits of metal-poor halo stars and the formation of the Galaxy