Structural Properties of Central Galaxies in Groups and Clusters
arXiv:0901.1150 · doi:10.1111/j.1365-2966.2009.15223.x
Abstract
Using a representative sample of 911 central galaxies (CENs) from the SDSS DR4 group catalogue, we study how the structure of the most massive members in groups and clusters depend on (1) galaxy stellar mass (Mstar), (2) dark matter halo mass of the host group (Mhalo), and (3) their halo-centric position. We establish and thoroughly test a GALFIT-based pipeline to fit 2D Sersic models to SDSS data. We find that the fitting results are most sensitive to the background sky level determination and strongly recommend using the SDSS global value. We find that uncertainties in the background translate into a strong covariance between the total magnitude, half-light size (r50), and Sersic index (n), especially for bright/massive galaxies. We find that n depends strongly on Mstar for CENs, but only weakly or not at all on Mhalo. Less (more) massive CENs tend to be disk (spheroid)-like over the full Mhalo range. Likewise, there is a clear r50-Mstar relation for CENs, with separate slopes for disks and spheroids. When comparing CENs with satellite galaxies (SATs), we find that low mass (<10e10.75 Msun/h^2) SATs have larger median n than CENs of similar Mstar. Low mass, late-type SATs have moderately smaller r50 than late-type CENs of the same Mstar. However, we find no size differences between spheroid-like CENs and SATs, and no structural differences between CENs and SATs matched in both mass and colour. The similarity of massive SATs and CENs shows that this distinction has no significant impact on the structure of spheroids. We conclude that Mstar is the most fundamental property determining the basic structure of a galaxy. The lack of a clear n-Mhalo relation rules out a distinct group mass for producing spheroids, and the responsible morphological transformation processes must occur at the centres of groups spanning a wide range of masses. (abridged)
22 pages, 14 figures, submitted to MNRAS
References in corpus (17)
- A Cosmological Framework for the Co-Evolution of Quasars, Supermassive Black Holes, and Elliptical Galaxies: I. Galaxy Mergers & Quasar Activity
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- The Importance of Satellite Quenching for the Build-Up of the Red Sequence of Present Day Galaxies
- Kinematic Structure of Merger Remnants
- How special are Brightest Group and Cluster Galaxies?
- The stellar masses of 25000 galaxies at 0.2<z<1.0 estimated by the COMBO-17 survey
- A Revised Model for the Formation of Disk Galaxies: Low Spin and Dark-Halo Expansion
- The luminosities, sizes and velocity dispersions of Brightest Cluster Galaxies: Implications for formation history
- Environmental Effects on Satellite Galaxies: The Link Between Concentration, Size and Colour Profile
- Ongoing Assembly of Massive Galaxies by Major Merging in Large Groups and Clusters from the SDSS
- Curvature in the scaling relations of early-type galaxies
- The Intrinsic Properties of SDSS Galaxies
- The Dependence of Galaxy Morphology and Structure on Environment and Stellar Mass
- Evolution in the structural properties of early-type Brightest Cluster Galaxies at small lookback time and dependence on the environment
- Photometric Properties and Scaling Relations of Early Type Brightest Cluster Galaxies
- Sersic Properties of Disc Galaxy Mergers
- Galaxy Concentrations are Trimodal
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- Morphological evolution of galaxies from ultradeep HST WFC3 imaging: the Hubble sequence at z~2
- The effect of the environment on the stellar mass - size relation of present-day galaxies
- Catalog of Visually Classified Galaxies in the Local () Universe
- Spectroscopic Confirmation of an Ultra Massive and Compact Galaxy at z=3.35: A Detailed Look at an Early Progenitor of Local Most Massive Ellipticals
- Redshift evolution of the dynamical properties of massive galaxies from SDSS-III/BOSS
- One Plane for All: Massive Star-Forming and Quiescent Galaxies Lie on the Same Mass Fundamental Plane at z~0 and z~0.7