Beyond Halo Mass: Galactic Conformity as a Smoking Gun of Central Galaxy Assembly Bias
arXiv:1404.6524 · doi:10.1093/mnras/stv1358
Abstract
Quenched central galaxies tend to reside in a preferentially quenched large-scale environment, a phenomenon that has been dubbed galactic conformity. Remarkably, this tendency persists out to scales far larger than the virial radius of the halo hosting the central. Therefore, conformity manifestly violates the widely adopted assumption that the dark matter halo mass Mvir exclusively governs galaxy occupation statistics. This paper is the first in a series studying the implications of the observed conformity signal for the galaxy-dark matter connection. We show that recent measurements of conformity on scales R ~1-5 Mpc imply that central galaxy quenching statistics cannot be correctly predicted with the knowledge of Mvir alone. We also demonstrate that ejected (or `backsplash') satellites cannot give rise to the signal. We then invoke the age matching model, which is predicated on the co-evolution of galaxies and halos. We find that this model produces a strong signal, and that central galaxies are solely responsible. We conclude that large-scale `2-halo' conformity represents a smoking gun of central galaxy assembly bias, and indicates that contemporary models of satellite quenching have systematically over-estimated the influence of post-infall processes.
13 pages, 4 figures, including one appendix. Submitted to MNRAS
References in corpus (22)
- The hierarchical formation of the brightest cluster galaxies
- Galaxy Evolution from Halo Occupation Distribution Modeling of DEEP2 and SDSS Galaxy Clustering
- The Importance of Satellite Quenching for the Build-Up of the Red Sequence of Present Day Galaxies
- Assembly bias in the clustering of dark matter haloes
- Halo assembly bias and its effects on galaxy clustering
- Galaxy Groups in the SDSS DR4: II. halo occupation statistics
- Towards a Concordant Model of Halo Occupation Statistics
- The MORGANA model for the rise of galaxies and active nuclei
- Galaxy Assembly Bias: A Significant Source of Systematic Error in the Galaxy-Halo Relationship
- The dependence of dark halo clustering on the formation epoch and the concentration parameter
- On Halo Formation Times and Assembly Bias
- A Halo Model of Galaxy Colors and Clustering in the SDSS
- Satellite abundances around bright isolated galaxies
- The Clustering of Massive Halos
- The Dark Side of Galaxy Color: evidence from new SDSS measurements of galaxy clustering and lensing
- The clustering of galaxies in the SDSS-III Baryon Oscillation Spectroscopic Survey: modeling of the luminosity and colour dependence in the Data Release 10
- Predicting Galaxy Star Formation Rates via the Co-evolution of Galaxies and Halos
- The nature of assembly bias - I. Clues from a LCDM cosmology
- Formation of disk galaxies in preheated media: a preventative feedback model
- The nature of assembly bias - II. Halo spin
- Evolution of the Clustering of Photometrically Selected SDSS Galaxies
- Are Halo and Galaxy Formation Histories Correlated?
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- Disruption of Dark Matter Substructure: Fact or Fiction?
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: measurement of the BAO and growth rate of structure of the luminous red galaxy sample from the anisotropic power spectrum between redshifts 0.6 and 1.0
- Dark Matter Substructure in Numerical Simulations: A Tale of Discreteness Noise, Runaway Instabilities, and Artificial Disruption
- Halo and Subhalo Demographics with Planck Cosmological Parameters: Bolshoi-Planck and MultiDark-Planck Simulations
- Mapping stellar content to dark matter halos using galaxy clustering and galaxy-galaxy lensing in the SDSS DR7
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- Subhalo abundance matching and assembly bias in the EAGLE simulation
- The Impact of Assembly Bias on the Galaxy Content of Dark Matter Halos
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- Cosmic Web of Galaxies in the COSMOS Field: Public Catalog and Different Quenching for Centrals and Satellites
- The Halo Boundary of Galaxy Clusters in the SDSS
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- Revealing the galaxy-halo connection in IllustrisTNG
- Stellar mass function of cluster galaxies at z 1.5: evidence for reduced quenching efficiency at high redshift
- The Completed SDSS-IV extended Baryon Oscillation Spectroscopic Survey: exploring the Halo Occupation Distribution model for Emission Line Galaxies
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- Connecting massive galaxies to dark matter halos in BOSS - I. Is galaxy color a stochastic process in high-mass halos?
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- The Evolution of Assembly Bias
- Multi-tracer extension of the halo model: probing quenching and conformity in eBOSS
- ELUCID IV: Galaxy Quenching and its Relation to Halo Mass, Environment, and Assembly Bias
- On the Physical Origin of Galactic Conformity
- Correlating galaxy colour and halo concentration: A tunable Halo Model of galactic conformity
- Galaxy and Mass Assembly (GAMA): halo formation times and halo assembly bias on the cosmic web
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- Galaxy And Mass Assembly (GAMA): growing up in a bad neighbourhood - how do low-mass galaxies become passive?
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- Galaxy Zoo: The interplay of quenching mechanisms in the group environment
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- The Immitigable Nature of Assembly Bias: The Impact of Halo Definition on Assembly Bias
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- Small- and Large-Scale Galactic Conformity in SDSS DR7
- The dependence of galaxy clustering on tidal environment in the Sloan Digital Sky Survey
- Using Galaxy Pairs to Probe Star Formation During Major Halo Mergers
- What determines large scale galaxy clustering: halo mass or local density?
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- The Physical Origin of Galactic Conformity: From Theory to Observation
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- On the environmental influence of groups and clusters of galaxies beyond the virial radius: Galactic conformity at few Mpc scales
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- Photometric Objects Around Cosmic Webs (PAC) Delineated in a Spectroscopic survey. II. Morphology, Color and Size Dependences of the Stellar-halo Mass Relation for Massive Galaxies
- SDSS-IV MaNGA: The effect of stellar mass and halo mass on the assembly histories of satellite galaxies
- Global analysis of luminosity- and colour-dependent galaxy clustering in the Sloan Digital Sky Survey
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- Why do semi-analytic models predict higher scatter in the stellar mass-halo mass relation than cosmological hydrodynamic simulations?
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- Large scale correlations in gas traced by MgII absorbers around low mass galaxies
- Modeling Strong Lenses from Wide-Field Ground-Based Observations in KiDS and GAMA
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- The conformity of HI galaxies in ALFALFA-SDSS sample
- Scatter in the star formation rate-halo mass relation: secondary bias and its impact on line-intensity mapping
- Assessing the connection between galactic conformity and assembly-type bias
- Assembly bias in quadratic bias parameters of dark matter halos from forward modeling
- Insights into the dependence of galaxy properties on the environment with explainable machine learning models
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