The insignificance of major mergers in driving star formation at z~2
arXiv:1210.4160 · doi:10.1093/mnrasl/sls019
Abstract
We study the significance of major-merger-driven star formation in the early Universe, by quantifying the contribution of this process to the total star formation budget in 80 massive (M* > 10^10 MSun) galaxies at z~2. Employing visually-classified morphologies from rest-frame V-band HST imaging, we find that 55+/-14% of the star formation budget is hosted by non-interacting late-types, with 27+/-8% in major mergers and 18+/-6% in spheroids. Given that a system undergoing a major merger continues to experience star formation driven by other processes at this epoch (e.g. cold accretion, minor mergers), ~27% is an upper limit to the major-merger contribution to star formation activity at this epoch. The ratio of the average specific star formation rate in major mergers to that in the non-interacting late-types is ~2.2:1, suggesting that the enhancement of star formation due to major merging is typically modest, and that just under half the star formation in systems experiencing major mergers is unrelated to the merger itself. Taking this into account, we estimate that the actual major-merger contribution to the star formation budget may be as low as ~15%. While our study does not preclude a major-merger-dominated era in the very early Universe, if the major-merger contribution to star formation does not evolve strongly into larger look-back times, then this process has a relatively insignificant role in driving stellar mass assembly over cosmic time.
Re-submitted to MNRAS Letters after addressing very minor corrections
References in corpus (9)
- EAZY: A Fast, Public Photometric Redshift Code
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- From rings to bulges: evidence for rapid secular galaxy evolution at z~2 from integral field spectroscopy in the SINS survey
- Star formation efficiency in galaxy interactions and mergers: a statistical study
- H-alpha Observations of a Large Sample of Galaxies at z~2: Implications for Star Formation in High Redshift Galaxies
- Kinemetry of SINS High-Redshift Star-Forming Galaxies: Distinguishing Rotating Disks from Major Mergers
- The Great Observatories Origins Deep Survey. VLT/VIMOS Spectroscopy in the GOODS-South Field
- The cosmic star formation rate evolution from z=5 to z=0 from the VIMOS VLT Deep Survey
- Is the Gini coefficient a stable measure of galaxy structure?
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- Interacting galaxies in the IllustrisTNG simulations -- II: Star formation in the post-merger stage
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- The ALPINE-ALMA [CII] survey: The contribution of major mergers to the galaxy mass assembly at z~5
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- The rise and fall of stellar discs across the peak of cosmic star formation history: mergers versus smooth accretion
- Delayed triggering of radio Active Galactic Nuclei in gas-rich minor mergers in the local Universe
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- The limited role of galaxy mergers in driving stellar mass growth over cosmic time
- Galaxy mergers up to z < 2.5 II: AGN incidence of merging galaxies at separations of 3-15 kpc
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