Cluster Merger Variance and the Luminosity Gap Statistic
arXiv:astro-ph/0509647 · doi:10.1086/500547
Abstract
The presence of multiple luminous galaxies in clusters can be explained by the finite time over which a galaxy sinks to the center of the cluster and merges with the the central galaxy. The simplest measurable statistic to quantify the dynamical age of a system of galaxies is the luminosity (magnitude) gap, which is the difference in photometric magnitude between the two most luminous galaxies. We present a simple analytical estimate of the luminosity gap distribution in groups and clusters as a function of dark matter halo mass. The luminosity gap is used to define "fossil" groups; we expect the fraction of fossil systems to exhibit a strong and model-independent trend with mass: ~1-3% of massive clusters and ~5-40% of groups should be fossil systems. We also show that, on cluster scales, the observed intrinsic scatter in the central galaxy luminosity-halo mass relation can be ascribed to dispersion in the merger histories of satellites within the cluster. We compare our predictions to the luminosity gap distribution in a sample of 730 clusters in the Sloan Digital Sky Survey C4 Catalog and find good agreement. This suggests that theoretical excursion set merger probabilities and the standard theory of dynamical segregation are valid on cluster scales.
5 pages, 3 figures
References in corpus (10)
- The Physics of Galaxy Clustering I: A Model for Subhalo Populations
- The C4 Clustering Algorithm: Clusters of Galaxies in the Sloan Digital Sky Survey
- Halo Model at Its Best: Constraints on Conditional Luminosity Functions from Measured Galaxy Statistics
- The Formation of Fossil Galaxy Groups in the hierarchical Universe
- The RASS-SDSS Galaxy Cluster Survey. III. Scaling relations of galaxy clusters
- What is L*?: Anatomy of the Galaxy Luminosity Function
- The Formation Histories of Galaxy Clusters
- Dissipationless Merging and the Assembly of Central Galaxies
- Abundance of substructure in clusters of galaxies
- The Rise of Dwarfs and the Fall of Giants: Galaxy Formation Feedback Signatures in the Halo Satellite Luminosity Function
Cited by in corpus (52)
- Galaxy Evolution from Halo Occupation Distribution Modeling of DEEP2 and SDSS Galaxy Clustering
- Physical properties and environments of nearby galaxies
- Galaxy Groups in the SDSS DR4: II. halo occupation statistics
- Towards a Concordant Model of Halo Occupation Statistics
- Diffuse Optical Light in Galaxy Clusters II: Correlations with Cluster Properties
- Scaling relations in fossil galaxy groups
- The Mass Assembly of Fossil Groups of Galaxies in the Millennium Simulation
- The Fossil Phase in the Life of a Galaxy Group
- SHAM Beyond Clustering: New Tests of Galaxy-Halo Abundance Matching with Galaxy Groups
- The mass assembly of galaxy groups and the evolution of the magnitude gap
- LoCuSS: Connecting the Dominance and Shape of Brightest Cluster Galaxies with the Assembly History of Massive Clusters
- Satellite Galaxies and Fossil Groups in the Millennium Simulation
- Anatomy of luminosity functions: the 2dFGRS example
- A fossil galaxy cluster; an X-ray and optical study of RX J1416.4+2315
- The central elliptical galaxy in fossil groups and formation of BCGs
- Velocity dispersion, mass and the luminosity function of the fossil cluster RX J1416.4+2315
- The XMM Cluster Survey: The Stellar Mass Assembly of Fossil Galaxies
- The Galaxy-Halo/Subhalo connection: Mass relations and implications for some satellite occupational distributions
- Fossil Systems in the 400d Cluster Catalog
- A New Test of the Statistical Nature of the Brightest Cluster Galaxies
- Mining the gap: evolution of the magnitude gap in X-ray galaxy groups from the 3 square degree XMM coverage of CFHTLS
- Ultimate age-dating method for galaxy groups; clues from the Millennium Simulations
- Satellite Luminosities in Galaxy Groups
- Fossil Groups in the Millennium Simulation. Evolution of the Brightest Galaxies
- An Extremely Massive Dry Galaxy Merger in a Moderate Redshift Cluster
- Stellar mass-gap as a probe of halo assembly history and concentration: youth hidden among old fossils
- The Violent Youth of Bright and Massive Cluster Galaxies and their Maturation over 7 Billion Years
- Properties of fossil groups in cosmological simulations and galaxy formation models
- The Impact of Environment on the Stellar Mass - Halo Mass Relation
- MACSJ1423.8+2404: Gravitational Lensing by a Massive, Relaxed Cluster of Galaxies at z=0.54
- Where are the z=4 Lyman Break Galaxies? Results from Conditional Luminosity Function Models of Luminosity-dependent Correlation Functions
- The luminosities of the brightest cluster galaxies and brightest satellites in SDSS groups
- Evolution of galaxy groups in the Illustris simulation
- Are fossil groups a challenge of the Cold Dark Matter paradigm?
- Are fossil groups early-forming galaxy systems?
- Dark Matter in Elliptical Galaxies
- Evolution of the galaxy luminosity function in progenitors of fossil groups
- J0454-0309: Evidence for a strong lensing fossil group falling into a poor galaxy cluster
- Fossil group origins - VI. Global X-ray scaling relations of fossil galaxy clusters
- Fossil Groups in the Millennium Simulation: Their environment and its evolution
- Two fossil groups of galaxies at z~0.4 in the COSMOS: accelerated stellar-mass build-up, different progenitors
- LARgE Survey -- III. Environments of Ultra-Massive Passive Galaxies at Cosmic Noon: BCG progenitors growing through mergers
- Merger history of central galaxies in Semi-Analytic Models of galaxy formation
- A Comparison of Galaxy Group Luminosity Functions from Semi-Analytic Models
- A Normal Abundance of Faint Satellites in the Fossil Group NGC 6482
- Serendipitous XMM-Newton discovery of a cluster of galaxies at z=0.28
- Characterizing the nature of Fossil Groups with XMM
- SPT-CL J2215-3537: A Massive Starburst at the Center of the Most Distant Relaxed Galaxy Cluster
- An Order Statistics Approach to the Halo Model for Galaxies
- Chandra Observation of a Weak Shock in the Galaxy Cluster A2556
- Multiscale exploration of SMACS J0723.3--7327's intracluster light and past dynamical history
- Tracing the evolution of brightest galaxies and diffuse light in galaxy groups