The Shapes of BCGs and normal Ellipticals in Nearby Clusters
arXiv:1001.2701 · doi:10.1111/j.1365-2966.2010.16361.x
Abstract
We compare the apparent axial ratio distributions of Brightest Cluster Galaxies (BCGs) and normal ellipticals (Es) in our sample of 75 galaxy clusters from the WINGS survey. Most BCGs in our clusters (69%) are classified as cD galaxies. The sample of cDs has been completed by 14 additional cDs (non-BCGs) we found in our clusters. We find that: (i) Es have triaxial shape, the triaxiality sharing almost evenly the intrinsic axial ratios parameter space, with a weak preference for prolateness; (ii) the BCGs have triaxial shape as well. However, their tendence towards prolateness is much stronger than in the case of Es. Such a strong prolateness appears entirely due to the sizeable (dominant) component of cDs inside the WINGS sample of BCGs. In fact, while the 'normal'(non-cD) BCGs do not differ from Es, as far as the shape distribution is concerned, the axial ratio distribution of BCG_cD galaxies is found to support quite prolate shapes; (iii) our result turns out to be strongly at variance with the only similar, previous analysis by Ryden et al.(1993)(RLP93), where BCGs and Es were found to share the same axial ratio distribution; (iv) our data suggest that the above discrepancy is mainly caused by the different criteria that RLP93 and ourselves use to select the cluster samples, coupled with a preference of cDs to reside in powerful X-ray emitting clusters; (v) the GIF2 N-body results suggest that the prolateness of the BCGs (in particular the cDs) could reflect the shape of the associated dark matter halos.
18 pages, 9 figures, 2 tables. Accepted for publication in MNRAS
References in corpus (16)
- The hierarchical formation of the brightest cluster galaxies
- Concentration, Spin and Shape of Dark Matter Haloes as a Function of the Cosmological Model: WMAP1, WMAP3 and WMAP5 results
- The spin and shape of dark matter haloes in the Millennium simulation of a LambdaCDM universe
- How special are Brightest Group and Cluster Galaxies?
- The luminosities, sizes and velocity dispersions of Brightest Cluster Galaxies: Implications for formation history
- Resurrecting the Red from the Dead: Optical Properties of BCGs in X-ray Luminous Clusters
- The evolution of the brightest cluster galaxies since z~1 from the ESO Distant Cluster Survey (EDisCS)
- The dynamical state of brightest cluster galaxies and the formation of clusters
- WINGS: A WIde-field Nearby Galaxy-cluster Survey. II. Deep optical photometry of 77 nearby clusters
- Shape, spin and baryon fraction of clusters in the MareNostrum Universe
- Evolution in the structural properties of early-type Brightest Cluster Galaxies at small lookback time and dependence on the environment
- Probing the Intrinsic Shape and Alignment of Dark Matter Haloes using SDSS Galaxy Groups
- Near-infrared evolution of brightest cluster galaxies in the most X-ray luminous clusters since z=1
- Radio morphology and spectral analysis of cD galaxies in rich and poor galaxy clusters
- Intrinsic Axis Ratio Distribution of Early-type Galaxies From Sloan Digital Sky Survey
- Structural properties of disk galaxies. II. Intrinsic shape of bulges
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