The limited role of galaxy mergers in driving stellar mass growth over cosmic time
arXiv:1708.09396 · doi:10.1093/mnrasl/slx136
Abstract
A key unresolved question is the role that galaxy mergers play in driving stellar mass growth over cosmic time. Recent observational work hints at the possibility that the overall contribution of `major' mergers (mass ratios 1:4) to cosmic stellar mass growth may be small, because they enhance star formation rates by relatively small amounts at high redshift, when much of today's stellar mass was assembled. However, the heterogeneity and relatively small size of today's datasets, coupled with the difficulty in identifying genuine mergers, makes it challenging to quantify the merger contribution to stellar mass growth. Here, we use Horizon-AGN, a cosmological hydrodynamical simulation, to comprehensively quantify the contribution of mergers to the star formation budget over the lifetime of the Universe. We show that: (1) both major and minor mergers enhance star formation to similar amounts, (2) the fraction of star formation directly attributable to merging is small at all redshifts (e.g. 35 and 20 per cent at z3 and z1 respectively) and (3) only 25 per cent of today's stellar mass is directly attributable to galaxy mergers over cosmic time. Our results suggest that smooth accretion, not merging, is the dominant driver of stellar mass growth over the lifetime of the Universe.
5 pages, 3 figures, accepted for publication in MNRASl
References in corpus (16)
- Cosmic Star Formation History
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- The effect of galaxy mass ratio on merger--driven starbursts
- Star formation efficiency in galaxy interactions and mergers: a statistical study
- Evolution of the dust emission of massive galaxies up to z=4 and constraints on their dominant mode of star formation
- On the frequency, intensity and duration of starburst episodes triggered by galaxy interactions and mergers
- Building Merger Trees from Cosmological N-body Simulations
- The Structures of Distant Galaxies I: Galaxy Structures and the Merger Rate to z~3 in the Hubble Ultra-Deep Field
- High-resolution simulations of galaxy mergers: Resolving globular cluster formation
- High-redshift major mergers weakly enhance star formation
- Galaxy Zoo: the dependence of the star formation-stellar mass relation on spiral disk morphology
- Major mergers are not significant drivers of star formation or morphological transformation around the epoch of peak cosmic star formation
- Time Evolution of Galaxy Scaling Relations in Cosmological Simulations
- A Physical Approach to the Identification of High-z Mergers: Morphological Classification in the Stellar Mass Domain
- An infrared study of local galaxy mergers
Cited by in corpus (21)
- The Fall of a Giant. Chemical evolution of Enceladus, alias the Gaia Sausage
- Interacting galaxies in the IllustrisTNG simulations -- I: Triggered star formation in a cosmological context
- Preparing for low surface brightness science with the Vera C. Rubin Observatory: characterisation of tidal features from mock images
- The role of mergers and interactions in driving the evolution of dwarf galaxies over cosmic time
- The radio loudness of SDSS quasars from the LOFAR Two-metre Sky Survey: ubiquitous jet activity and constraints on star formation
- An alternate approach to measure specific star formation rates at 2<z<7
- Investigating the Effect of Galaxy Interactions on Star Formation at 0.5<z<3.0
- Why do extremely massive disc galaxies exist today?
- Identification of tidal features in deep optical galaxy images with Convolutional Neural Networks
- Long Tidal Tails in Merging Galaxies and Their Implications
- Dust and Power: Unravelling the merger - active galactic nucleus connection in the second half of cosmic history
- Molecular gas and star formation in nearby starburst galaxy mergers
- CANDELS Meets GSWLC: Evolution of the Relationship Between Morphology and Star Formation Since z = 2
- Identifying the progenitors of present-day early-type galaxies in observational surveys: correcting `progenitor bias' using the Horizon-AGN simulation
- A Comparison of Star-Forming Clumps and Tidal Tails in Local Mergers and High Redshift Galaxies
- Distribution of merging and post-merging galaxies in nearby galaxy clusters
- Test of Cosmic Web-feeding Model for Star Formation in Galaxy Clusters in the COSMOS Field
- Unveiling the Main Sequence to Starburst Transition Region with a Sample of Intermediate Redshift Luminous Infrared Galaxies
- Time-average properties of major mergers: mergers significantly scatter high-z scaling relations
- On the Origin of Intracluster Light based on the High-resolution Simulation, NewCluster
- Ultraviolet-to-far-infra-red self-consistent analysis of the stellar populations of massive starburst galaxies at intermediate redshifts