Shape and kinematics of elliptical galaxies: evolution due to merging at z < 1.5
arXiv:0812.4306 · doi:10.1051/0004-6361/200811452
Abstract
Aims:In this study we investigate the evolution of shape and kinematics of elliptical galaxies in a cosmological framework. Methods: We use a set of hydrodynamic, self-consistent simulations operating in the context of a concordance cosmological model where relaxed elliptical-like objects (ELOs) were identified at redshifts z=0, z=0.5, z=1 and z=1.5. Results: The population of elliptical systems analysed here present a systematic change through time, i.e. evolution, by becoming rounder in general at z=0 and, at the same time more velocity dispersion supported. This is found to be primarily due to major dry mergers where only a modest amount of angular momentum is involved into the merger event. Despite the general trend, in a significant amount of cases the merger event involves a higher specific angular momentum, which in general causes the system to acquire a higher rotational support and/or a more oblate shape. These evolutionary patterns are still present when we study our systems in projection, mimicking real observations, and thus they should become apparent in future observations.
7 pages, 4 figures, re-submitted to A&A after positive referee report
References in corpus (16)
- The Aquarius Project: the subhalos of galactic halos
- The SAURON project -- IX. A kinematic classification for early-type galaxies
- The SAURON project -- X. The orbital anisotropy of elliptical and lenticular galaxies: revisiting the (V/sigma,epsilon) diagram with integral-field stellar kinematics
- Kinematic Structure of Merger Remnants
- Mergers and Mass Accretion Rates in Galaxy Assembly: The Millennium Simulation Compared to Observations of z~2 Galaxies
- The redshift evolution of early-type galaxies in COSMOS: Do massive early-type galaxies form by dry mergers?
- 2-Dimensional Kinematics of Simulated Disc Merger Remnants
- The Properties and Evolution of a K-band Selected Sample of Massive Galaxies at z~0.4 - 2 in the Palomar/DEEP2 Survey
- A Population of Massive and Evolved Galaxies at z$\ga$5
- Growth of galactic bulges by mergers. II. Low-density satellites
- Line-of-sight velocity distributions of elliptical galaxies from collisionless mergers
- Bright and Dark Matter in Elliptical Galaxies: Mass and Velocity Distributions from Self-consistent Hydrodynamical Simulations
- Dynamical Models of Elliptical Galaxies in z=0.5 Clusters: I. Data-Model Comparison and Evolution of Galaxy Rotation
- Intrinsic Axis Ratio Distribution of Early-type Galaxies From Sloan Digital Sky Survey
- Clues on Regularity in the Structure and Kinematics of Elliptical Galaxies from Self-consistent Hydrodynamical Simulations: the Dynamical Fundamental Plane
- On the Origin of the Dichotomy of Early-Type Galaxies: The Role of Dry Mergers and AGN Feedback
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- Orbital structure of merger remnants: Trends with gas fraction in 1:1 mergers
- The Dark Halo - Spheroid Conspiracy and the Origin of Elliptical Galaxies
- A review of elliptical and disc galaxy structure, and modern scaling laws
- A minor merger origin for stellar inner discs and rings in spiral galaxies
- The VIMOS VLT Deep Survey: the contribution of minor mergers to the growth of L_B >= L*_B galaxies since z ~ 1 from spectroscopically identified pairs
- Simulating multiple merger pathways to the central kinematics of early-type galaxies
- LEDA 074886: A remarkable rectangular-looking galaxy
- Spectro-photometric close pairs in GOODS-S: major and minor companions of intermediate-mass galaxies
- The assembly of spheroid-dominated galaxies in the EAGLE simulation
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