Void Statistics in Large Galaxy Redshift Surveys: Does Halo Occupation of Field Galaxies Depend on Environment?
arXiv:0707.3445 · doi:10.1086/589983
Abstract
We use measurements of the projected galaxy correlation function w_p and galaxy void statistics to test whether the galaxy content of halos of fixed mass is systematically different in low density environments. We present new measurements of the void probability function (VPF) and underdensity probability function (UPF) from Data Release Four of the Sloan Digital Sky Survey, as well as new measurements of the VPF from the full data release of the Two-Degree Field Galaxy Redshift Survey. We compare these measurements to predictions calculated from models of the Halo Occupation Distribution (HOD) that are constrained to match both w_p and the space density of galaxies. The standard implementation of the HOD assumes that galaxy occupation depends on halo mass only, and is independent of local environment. For luminosity-defined samples, we find that the standard HOD prediction is a good match to the observations, and the data exclude models in which galaxy formation efficiency is reduced in low-density environments. More remarkably, we find that the void statistics of red and blue galaxies (at L ~ 0.4L_*) are perfectly predicted by standard HOD models matched to the correlation function of these samples, ruling out "assembly bias" models in which galaxy color is correlated with large-scale environment at fixed halo mass. We conclude that the luminosity and color of field galaxies are determined predominantly by the mass of the halo in which they reside and have little direct dependence on the environment in which the host halo formed. In broader terms, our results show that the sizes and emptiness of voids found in the distribution of L > 0.2L_* galaxies are in excellent agreement with the predictions of a standard cosmological model with a simple connection between galaxies and dark matter halos. (abridged)
20 emulateapj pages, 9 figures. submitted to ApJ
References in corpus (10)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- K-corrections and filter transformations in the ultraviolet, optical, and near infrared
- Halo assembly bias and its effects on galaxy clustering
- Properties of Galaxy Groups in the SDSS: II.- AGN Feedback and Star Formation Truncation
- The Properties of Galaxies in Voids
- Luminosity and redshift dependent quasar clustering
- The Clustering of Massive Halos
- Asymmetries in the inner regions of LCDM haloes
- The Effect of Large-Scale Structure on the SDSS Galaxy Three-Point Correlation Function
- Statistical analysis of galaxy surveys - III: The non-linear clustering of red and blue galaxies in the 2dFGRS
Cited by in corpus (28)
- A Halo Model of Galaxy Colors and Clustering in the SDSS
- The origin of scatter in the stellar mass - halo mass relation of central galaxies in the EAGLE simulation
- The Void Phenomenon Explained
- Stringent constraints from small-scale galaxy clustering using a hybrid MCMC+emulator framework
- The Aemulus Project V: Cosmological constraint from small-scale clustering of BOSS galaxies
- Central and Satellite Colors in Galaxy Groups: A Comparison of the Halo Model and SDSS Group Catalogs
- Non-Gaussian halo assembly bias
- The HI Mass Function and Velocity Width Function of Void Galaxies in the Arecibo Legacy Fast ALFA Survey
- Major Cluster Mergers and the Location of the Brightest Cluster Galaxy
- Evolution of the Clustering of Photometrically Selected SDSS Galaxies
- The Clustering and Host Halos of Galaxy Mergers at High Redshift
- Probing Galaxy Assembly Bias in BOSS Galaxies Using Void Probabilities
- The morphological transformation and the quenching of galaxies
- The Galaxy Cross-Correlation Function as a Probe of the Spatial Distribution of Galactic Satellites
- The Aemulus Project VI: Emulation of beyond-standard galaxy clustering statistics to improve cosmological constraints
- Effects of biasing on the galaxy power spectrum at large scales
- Constraining Reionization in Progress at z=5.7 with Lyman- Emitters: Voids, Peaks, and Cosmic Variance
- Connections between galaxy properties and halo formation time in the cosmic web
- Differentiable Predictions for Large Scale Structure with SHAMNet
- How the Galaxy-Halo Connection Depends on Large-Scale Environment
- Toward Accurate Modeling of Galaxy Clustering on Small Scales: Halo Model Extensions and Lingering Tension
- Galaxy assembly bias in the stellar-to-halo mass relation for red central galaxies from SDSS
- Void Probability Function of Simulated Surveys of high-redshift Lyman-Alpha Emitters
- Insights into the dependence of galaxy properties on the environment with explainable machine learning models
- Significance of the negative binomial distribution in multiplicity phenomena
- Mapping Nearby Galaxies with Apache Point Observatory: Group and field galaxies' morphologies in the colour-magnitude plane
- Void probability function in the Quijote simulations
- Measurements of cosmic expansion and growth rate of structure from voids in the Sloan Digital Sky Survey between redshift 0.07 and 1.0