Fossil Groups Origins III. Characterization of the sample and observational properties of fossil systems
S. Zarattini, R. Barrena, M. Girardi, N. Castro-Rodriguez, W. Boschin,, J. A. L. Aguerri, J. M\'endez-Abreu, R. S\'anchez-Janssen, C., Catal\'an-Torrecilla, E. M. Corsini, C. del Burgo, E. D'Onghia, N., Herrera-Ruiz, J. Iglesias-P\'aramo, E. Jimenez Bailon, M. Lozada Mu\~noz, N.

TL;DR
This study characterizes 34 fossil galaxy systems, analyzing their properties and evolution, and finds that fossil systems are extreme but follow similar correlations to non-fossil systems, supporting a merger-based formation scenario.
Contribution
The paper provides a detailed observational analysis of a large sample of fossil systems, confirming their properties and supporting the merger scenario for their formation.
Findings
15 out of 34 candidates are confirmed as fossil systems.
Fossil systems have brighter central galaxies and larger light fractions in the core.
Fossil systems follow the same correlations as non-fossil systems, but are more extreme.
Abstract
(Abridged) Fossil systems are group- or cluster-sized objects whose luminosity is dominated by a very massive central galaxy. In the current cold dark matter scenario, these objects formed hierarchically at an early epoch of the Universe and then slowly evolved until present day. That is the reason why they are called {\it fossils}. We started an extensive observational program to characterize a sample of 34 fossil group candidates spanning a broad range of physical properties. Deep band images were taken for each candidate and optical spectroscopic observations were obtained for 1200 galaxies. This new dataset was completed with SDSS DR7 archival data to obtain robust cluster membership and global properties of each fossil group candidate. For each system, we recomputed the magnitude gaps between the two brightest galaxies () and the first and fourth ranked…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Stellar, planetary, and galactic studies
