Biased Galaxy Formation And Measurements Of Beta
arXiv:astro-ph/0008305 · doi:10.1086/319462
Abstract
Measurements of the cosmological density parameter Omega using techniques that exploit the gravity-induced motions of galaxies constrain, in linear perturbation theory, the degenerate parameter combination beta = Omega^{0.6}/b, where the linear bias parameter b is the ratio of the fluctuation amplitudes of the galaxy and mass distributions. However, the relation between the galaxy and mass density fields depends on the complex physics of galaxy formation, and it can in general be non-linear, stochastic, and perhaps non-local. The one-parameter linear bias model is almost certainly oversimplified, which leads to the obvious question: What is the quantity beta that is actually measured by different techniques? To address this question, we estimate beta from galaxy distributions that are constructed by applying a variety of locally biased galaxy formation models to cosmological N-body simulations. We compare the values of beta estimated using three different techniques: a density-density comparison similar to the POTENT analysis, a velocity-velocity comparison similar to the VELMOD analysis, and an anisotropy analysis of the redshift-space power spectrum. In most cases, we find that beta estimated using all three methods is similar to the asymptotic value of Omega^{0.6}/b_{sigma}(R) at large R, where b_{sigma}(R) is the ratio of rms galaxy fluctuations to rms mass fluctuations on scale R. Thus, something close to the conventional interpretation of beta continues to hold even for complex bias models. Moreover, we find that beta estimates made using these three methods should, in principle, agree with each other. It is thus unlikely that non-linear or scale-dependent bias is responsible for the discrepancies that exist among current measurements of beta from different techniques.
26 pages including 9 eps figures. Submitted to ApJ
References in corpus (7)
- Dark Matter Substructure in Galactic Halos
- A simulation of galaxy formation and clustering
- Linear Redshift Distortions and Power in the PSCz Survey
- A First Comparison of the SBF Survey Distances with the Galaxy Density Field: Implications for H_0 and Omega
- Comparison of the ENEAR Peculiar Velocities with the PSCz Gravity Field
- Biased Estimates of Omega from Comparing Smoothed Predicted Velocity Fields to Unsmoothed Peculiar Velocity Measurements
- A robust method for fitting peculiar velocity field models
Cited by in corpus (24)
- Large-Scale Structure of the Universe and Cosmological Perturbation Theory
- The Halo Occupation Distribution: Towards an Empirical Determination of the Relation Between Galaxies and Mass
- Galaxy Clustering in Early SDSS Redshift Data
- Towards an accurate model of the redshift space clustering of halos in the quasilinear regime
- The 2dF Galaxy Redshift Survey: Spherical Harmonics analysis of fluctuations in the final catalogue
- The Mass-To-Light Function of Virialized Systems and the Relationship Between Their Optical and X-ray Properties
- Breaking the Degeneracies Between Cosmology and Galaxy Bias
- Redshift space bias and beta from the halo model
- Shear Selected Cluster Cosmology I: Tomography and Optimal Filtering
- Cosmological Parameters from the Comparison of the 2MASS Gravity Field with Peculiar Velocity Surveys
- Redshift-Space Distortions with the Halo Occupation Distribution I: Numerical Simulations
- Tests of redshift-space distortions models in configuration space for the analysis of the BOSS final data release
- Introducing a new, robust galaxy finder algorithm for simulations
- Measurement of the bias parameter from weak lensing
- New light on Dark Cosmos
- Consistent beta values from density-density and velocity-velocity comparisons
- Cosmic velocity--gravity relation in redshift space
- Spatial and Dynamical Biases in Velocity Statistics of Galaxies
- The Clustering of Galaxies in the Completed SDSS-III Baryon Oscillation Spectroscopic Survey: Cosmic Flows and Cosmic Web from Luminous Red Galaxies
- Bayesian cosmic density field inference from redshift space dark matter maps
- Bayesian redshift-space distortions correction from galaxy redshift surveys
- Angular Distribution of Gamma-ray Bursts and Weak Lensing
- Reconstruction Analysis of the IRAS Point Source Catalog Redshift Survey
- Biases in velocity reconstruction: investigating the effects on growth rate and expansion measurements in the local universe