Luminosity dependence of the spatial and velocity distributions of galaxies: Semi-analytic models versus the Sloan Digital Sky Survey
arXiv:astro-ph/0701218 · doi:10.1111/j.1365-2966.2007.11518.x
Abstract
By comparing semi-analytic galaxy catalogues with data from the Sloan Digital Sky Survey (SDSS), we show that current galaxy formation models reproduce qualitatively the dependence of galaxy clustering and pairwise peculiar velocities on luminosity, but some subtle discrepancies with the data still remain. The comparisons are carried out by constructing a large set of mock galaxy redshift surveys that have the same selection function as the SDSS Data Release Four (DR4). The mock surveys are based on two sets of semi-analytic catalogues presented by Croton et al. and Kang et al. From the mock catalogues, we measure the redshift-space projected two-point correlation function, the power spectrum, and the pairwise velocity dispersion (PVD) in Fourier space and in configuration space, for galaxies in different luminosity intervals. We then compare these theoretical predictions with the measurements derived from the SDSS DR4. On large scales and for galaxies brighter than L*, both sets of mock catalogues agree well with the data. For fainter galaxies, however, both models predict stronger clustering and higher pairwise velocities than observed. We demonstrate that this problem can be resolved if the fraction of faint satellite galaxies in massive haloes is reduced by ~30% compared to the model predictions. A direct look into the model galaxy catalogues reveals that a signifcant fraction (15%) of faint galaxies () reside in haloes with $M_{vir}>10^{13}\msun$, and this population is predominantly red in colour. These faint red galaxies are responsible for the high PVD values of low-luminosity galaxies on small scales.
16 pages, 12 figures, accepted for publication in Monthly Notices, typos corrected
References in corpus (4)
Cited by in corpus (24)
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- Late-time cosmology with 21cm intensity mapping experiments
- Galaxy Groups in the SDSS DR4: II. halo occupation statistics
- Testing cosmological structure formation using redshift-space distortions
- Understanding the shape of the halo-mass and galaxy-mass cross-correlation functions
- The Luminosity Dependence of the Galaxy Merger Rate
- ELUCID - Exploring the Local Universe with reConstructed Initial Density field III: Constrained Simulation in the SDSS Volume
- The Dependence of Galaxy Formation on Cosmological Parameters: Can we distinguish the WMAP1 and WMAP3 Parameter Sets?
- Halo masses for optically-selected and for radio-loud AGN from clustering and galaxy-galaxy lensing
- Tests of redshift-space distortions models in configuration space for the analysis of the BOSS final data release
- Prospects for Constraining Interacting Dark Energy Models with 21 cm Intensity Mapping Experiments
- Precise measurements of inflationary features with 21 cm observations
- How can gravitational-wave standard sirens and 21 cm intensity mapping jointly provide a precise late-universe cosmological probe?
- Compact groups in theory and practice - I. The spatial properties of compact groups
- A path to precision cosmology: synergy between four promising late-universe cosmological probes
- Prospects for measuring dark energy with 21 cm intensity mapping experiments
- Galaxy and Mass Assembly (GAMA): Small-scale anisotropic galaxy clustering and the pairwise velocity dispersion of galaxies
- Compact groups in theory and practice - II. Comparing the observed and predicted nature of galaxies in compact groups
- Genus statistics using the Delaunay tessellation field estimation method: (I) tests with the Millennium Simulation and the SDSS DR7
- Studying Large and Small Scale Environments of Ultraviolet Luminous Galaxies
- Galaxy-galaxy(-galaxy) lensing as a sensitive probe of galaxy evolution
- Measuring neutrino mass and asymmetry with matter pairwise velocities
- Prospects for cosmological research with the FAST array: 21-cm intensity mapping survey observation strategies
- Measuring galaxy abundance and clustering at high redshift from incomplete spectroscopic data: Tests on mock catalogs