Morphology of galaxies with quiescent recent assembly history in a Lambda-CDM universe
arXiv:1405.5836 · doi:10.1051/0004-6361/201323079
Abstract
The standard disc formation scenario postulates that disc forms as the gas cools and flows into the centre of the dark matter halo, conserving the specific angular momentum. Major mergers have been shown to be able to destroy or highly perturb the disc components. More recently, the alignment of the material that is accreted to form the galaxy has been pointed out as a key ingredient to determine galaxy morphology. However, in a hierarchical scenario galaxy formation is a complex process that combines these processes and others in a non-linear way so that the origin of galaxy morphology remains to be fully understood. We aim at exploring the differences in the formation histories of galaxies with a variety of morphology, but quite recent merger histories, to identify which mechanisms are playing a major role. We analyse when minor mergers can be considered relevant to determine galaxy morphology. We also study the specific angular momentum content of the disc and central spheroidal components separately. We used cosmological hydrodynamical simulations that include an effective, physically motivated supernova feedback that is able to regulate the star formation in haloes of different masses. We analysed the morphology and formation history of a sample of 15 galaxies of a cosmological simulation. We performed a spheroid-disc decomposition of the selected galaxies and their progenitor systems. The angular momentum orientation of the merging systems as well as their relative masses were estimated to analyse the role played by orientation and by minor mergers in the determination of the morphology. We found the discs to be formed by conserving the specific angular momentum in accordance with the classical disc formation model. The specific angular momentum of the stellar central spheroid correlates with the dark matter halo angular momentum and determines a power law. Abridged
10 pages, 9 figures, A&A in press
References in corpus (5)
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- Reconstructing the Subsurface Three-Dimensional Magnetic Structure of A Solar Active Region Using SDO/HMI Observations
- Effects of Supernova Feedback on the Formation of Galaxy Disks
- Feedback and metal enrichment in cosmological SPH simulations - II. A multiphase model with supernova energy feedback
- Properties of Bars and Bulges in the Hubble Sequence
Cited by in corpus (8)
- Synthetic Galaxy Images and Spectra from the Illustris Simulation
- Massive Close Pairs Measure Rapid Galaxy Assembly in Mergers at High Redshift
- Diverse Structural Evolution at z > 1 in Cosmologically Simulated Galaxies
- Stellar feedback from HMXBs in cosmological hydrodynamical simulations
- Mild evolution of the stellar metallicity gradients of disc galaxies
- Tidal features and disc thicknesses of edge-on galaxies in the SDSS Stripe 82
- Properties of the circumgalactic medium in simulations compared to observations
- Stability of galaxies across morphological sequence