The Physical Origin of Scale Dependent Bias in Cosmological Simulations
arXiv:astro-ph/9807029 · doi:10.1086/307660
Abstract
Using large-scale hydrodynamic simulations with heuristic criteria for galaxy formation, we investigate how the galaxy field is related to the mass density and the gas temperature. We find that the bias b(R) = sigma_g(R)/sigma(R), where sigma_g(R) is the variance of galaxy counts in spheres of radius R and sigma(R) is the same for mass, varies from 2.6 at 1 h^{-1} Mpc to 1.2 at 30 h^{-1} Mpc. Including the dependence of the galaxy density on local gas temperature as well as on local mass density can fully account for this scale dependence. Galaxy density depends on temperature because gas which is too hot cannot cool to form galaxies; this causes scale dependence of b(R) because local gas temperature is related to the gravitational potential, and thus contains information about the large scale density field. We show that temperature dependence generally causes b(R) to vary on quasilinear and nonlinear scales, indicating that scale dependence of bias may be a generic effect in realistic galaxy formation scenarios. We find that the relationship between the galaxy and mass density fields is also a function of galaxy age. On large scales, the older galaxies are highly biased (b ~ 1.7) and highly correlated (r ~ 1.0) with the mass density field; younger galaxies are not biased (b ~ 0.8) and are poorly correlated (r ~ 0.5) with the mass. We argue that linear bias is inadequate to describe the relationship between galaxies and mass. (Abridged)
38 pages of text and figures; accepted by ApJ; revised text
References in corpus (15)
- Star Formation in Galaxies Along the Hubble Sequence
- The Cosmic Baryon Budget
- Supernova Limits on the Cosmic Equation of State
- Galaxies in N-body simulations: overcoming the overmerging problem
- The Cores of Dark Matter Dominated Galaxies: theory vs. observations
- The Dependence of Cluster Galaxy Star Formation Rates on the Global Environment
- Measuring the galaxy power spectrum with future redshift surveys
- Constraints on the Effects of Locally-biased Galaxy Formation
- Spectral Classification and Luminosity Function of Galaxies in the Las Campanas Redshift Survey
- Maximum-Likelihood Comparisons of Tully-Fisher and Redshift Data. II. Results from an Expanded Sample
- IRAS versus POTENT Density Fields on Large Scales: Biasing and Omega
- Eulerian bias and the galaxy density field
- The Galaxy Pairwise Velocity Dispersion as a Function of Local Density
- The nature of Lyman-break galaxies
- Model-Independent Measurement of the Primordial Power Spectrum
Cited by in corpus (86)
- Populating a cluster of galaxies - I. Results at z=0
- Cosmological SPH simulations: A hybrid multi-phase model for star formation
- Large-Scale Structure of the Universe and Cosmological Perturbation Theory
- The 3D power spectrum of galaxies from the SDSS
- Analytic model for galaxy and dark matter clustering
- The Halo Occupation Distribution: Towards an Empirical Determination of the Relation Between Galaxies and Mass
- Large-Scale Galaxy Bias
- Galaxy Clustering in Early SDSS Redshift Data
- The history of star formation in a LCDM universe
- A primer on hierarchical galaxy formation: the semi-analytical approach
- Galaxy ecology: groups and low-density environments in the SDSS and 2dFGRS
- Cosmic Concordance and Quintessence
- Clustering of dark matter tracers: generalizing bias for the coming era of precision LSS
- Combined analysis of the integrated Sachs-Wolfe effect and cosmological implications
- Clustering of Low-Redshift (z <= 2.2) Quasars from the Sloan Digital Sky Survey
- Voids in the 2dF Galaxy Redshift Survey
- The Bispectrum: From Theory to Observations
- Multiphase Smoothed-Particle Hydrodynamics
- Non-linear Stochastic Galaxy Biasing in Cosmological Simulations
- Evolution of bias in different cosmological models
- Simulating IGM Reionization
- The evolution of the galaxy distribution
- Small-Scale Structure in the SDSS and LCDM: Isolated L* Galaxies with Bright Satellites
- Adding Environmental Gas Physics to the Semi-Analytic Method for Galaxy Formation: Gravitational Heating
- Discovery of a Galaxy Cluster via Weak Lensing
- The Atacama Cosmology Telescope: A CMB lensing mass map over 2100 square degrees of sky and its cross-correlation with BOSS-CMASS galaxies
- Nonlinear Stochastic Biasing of Galaxies and Dark Halos in Cosmological Hydrodynamic Simulations
- Scaling Laws in the Distribution of Galaxies
- Simulations of galaxy formation in a cosmological volume
- Clustering of Lyman Break Galaxies at z=4 and 5 in The Subaru Deep Field: Luminosity Dependence of The Correlation Function Slope
- Density profiles of dark matter haloes: diversity and dependence on environment
- Physical Bias of Galaxies From Large-Scale Hydrodynamic Simulations
- Star formation rate and metallicity of damped Lyman-alpha absorbers in cosmological SPH simulations
- Stochasticity of Bias and Nonlocality of Galaxy Formation: Linear Scales
- The VIMOS VLT Deep Survey: Evolution of the non-linear galaxy bias up to z=1.5
- Time Evolution of Galaxy Formation and Bias in Cosmological Simulations
- Galaxy-dark matter correlations applied to galaxy-galaxy lensing: predictions from the semi-analytic galaxy formation models
- CAIRNS: The Cluster And Infall Region Nearby Survey II. Environmental Dependence of Infrared Mass-to-Light Ratios
- The near-infrared luminosity function of cluster galaxies beyond redshift one
- Locally Biased Galaxy Formation and Large Scale Structure
- Environmental Effects on Evolution of Cluster Galaxies in a LCDM Universe
- Metallicity Evolution of Damped Lyman Alpha Systems In Lambda CDM Cosmology
- COSMOS: Stochastic bias from measurements of weak lensing and galaxy clustering
- The evolution of clustering length, large-scale bias and host halo mass at 2<z<5 in the VIMOS Ultra Deep Survey (VUDS)
- Measuring the Nonlinear Biasing Function from a Galaxy Redshift Survey
- Nonlinear stochastic biasing from the formation epoch distribution of dark halos
- Cosmological Density and Power Spectrum from Peculiar Velocities: Nonlinear Corrections and PCA
- Scale-dependent Galaxy Bias
- The quasar epoch and the stellar ages of early-type galaxies
- The 2dF QSO Redshift Survey - XI. The QSO Power Spectrum
- The redshift-space two-point correlation functions of galaxies and groups in the Nearby Optical Galaxy sample
- Light to Mass Variations with Environment
- Testing cold dark matter with the low mass Tully-Fisher relation
- Consistent beta values from density-density and velocity-velocity comparisons
- Estimating beta from redshift-space distortions in the 2dF galaxy survey
- The Lyman Break Galaxies: their Progenitors and Descendants
- The VIMOS Ultra Deep Survey. Luminosity and stellar mass dependence of galaxy clustering at z~3
- How Stochastic is the Relative Bias Between Galaxy Types?
- Nonlinearity and stochasticity in the density--velocity relation
- Biased Galaxy Formation And Measurements Of Beta
- Reconstructing Cosmic Peculiar Velocities from the Mildly Nonlinear Density Field
- The Angular Three-Point Correlation Function in the Quasilinear Regime
- Tracing the Warm Hot Intergalactic Medium in the local Universe
- How dominant is the vacuum?
- A question of separation: disentangling tracer bias and gravitational nonlinearity with counts-in-cells statistics
- Nonlinear Stochastic Biasing of Peaks and Halos: Scale-Dependence, Time-Evolution, and Redshift-Space Distortion from Cosmological N-body Simulations
- The nonlinear biasing of the 10k zCOSMOS galaxies up to z~1
- The Probability Distribution Function of Light in the Universe: Results from Hydrodynamic Simulations
- Stochastic Biasing and Weakly Non-linear Evolution of Power Spectrum
- The clustering of dark matter halos: scale-dependent bias on quasi-linear scales
- Transformations of galaxies in the environments of the cluster ABCG 209 at z~0.2
- Galaxy Evolution in the Environment of ABCG 209
- Time evolution of the stochastic linear bias of interacting galaxies on linear scales
- Relativistic bias in neutrino cosmologies
- Detection of 20-30 Mpc-scale Galaxy Structures Embedded in 100 Mpc-scale Structures of Quasars and MgII Absorbers at z~0.8 and z~1.2
- ISW-LSS cross-correlation in coupled Dark Energy models with massive neutrinos
- Cosmic Mach Number as a Function of Overdensity and Galaxy Age
- Connecting the Dots: Tracking Galaxy Evolution Using Constant Cumulative Number Density at 3<z<7
- Measuring the Deviation from the Linear and Deterministic Bias through Cosmic Gravitational Lensing Effects
- Comparing Galaxy Clustering in Horizon-AGN Simulated Lightcone Mocks and VIDEO Observations
- Biasing and Genus Statistics of Dark Matter Halos in the Hubble Volume Simulation
- Joint constraints on galaxy bias and through the N-pdf of the galaxy number density
- CFHTLenS: Galaxy bias as function of scale, stellar mass, and colour. Conflicts with predictions by semi-analytic models
- Evolution of matter and galaxy clustering in cosmological hydrodynamical simulations
- Light on Dark Matter
- Colour Dependence of the Distribution of IRAS Galaxies revealed by Multifractal Measures