Using Galaxy Pairs to Probe Star Formation During Major Halo Mergers
arXiv:1502.01342 · doi:10.1093/mnras/stv728
Abstract
Currently-proposed galaxy quenching mechanisms predict very different behaviours during major halo mergers, ranging from significant quenching enhancement (e.g., clump-induced gravitational heating models) to significant star formation enhancement (e.g., gas starvation models). To test real galaxies' behaviour, we present an observational galaxy pair method for selecting galaxies whose host haloes are preferentially undergoing major mergers. Applying the method to central L* (10^10 Msun < M_* < 10^10.5 Msun) galaxies in the Sloan Digital Sky Survey (SDSS) at z<0.06, we find that major halo mergers can at most modestly reduce the star-forming fraction, from 59% to 47%. Consistent with past research, however, mergers accompany enhanced specific star formation rates for star-forming L* centrals: ~10% when a paired galaxy is within 200 kpc (approximately the host halo's virial radius), climbing to ~70% when a paired galaxy is within 30 kpc. No evidence is seen for even extremely close pairs (<30 kpc separation) rejuvenating star formation in quenched galaxies. For galaxy formation models, our results suggest: (1) quenching in L* galaxies likely begins due to decoupling of the galaxy from existing hot and cold gas reservoirs, rather than a lack of available gas or gravitational heating from infalling clumps, (2) state-of-the-art semi-analytic models currently over-predict the effect of major halo mergers on quenching, and (3) major halo mergers can trigger enhanced star formation in non-quenched central galaxies.
Minor updates to match published version
References in corpus (24)
- Overview of the SDSS-IV MaNGA Survey: Mapping Nearby Galaxies at Apache Point Observatory
- UV Star Formation Rates in the Local Universe
- A Semi-Analytic Model for the Co-evolution of Galaxies, Black Holes, and Active Galactic Nuclei
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- PRIMUS: Constraints on Star Formation Quenching and Galaxy Merging, and the Evolution of the Stellar Mass Function From z=0-1
- Galaxy Pairs in the Sloan Digital Sky Survey I: Star Formation, AGN Fraction, and the Luminosity/Mass-Metallicity Relation
- Population Synthesis in the Blue IV: Accurate Model Predictions for Lick Indices and UBV Colors in Single Stellar Populations
- On the Lack of Evolution in Galaxy Star Formation Efficiency
- Dependence of Galaxy Quenching on Halo Mass and Distance from its Centre
- Gravitational Quenching in Massive Galaxies and Clusters by Clumpy Accretion
- The pseudo-evolution of halo mass
- SubHaloes going Notts: The SubHalo-Finder Comparison Project
- Star Formation in Close Pairs Selected from the Sloan Digital Sky Survey
- Interaction-induced star formation in a complete sample of 10^5 nearby star-forming galaxies
- A Simple Technique for Predicting High-Redshift Galaxy Evolution
- Dissipation and Extra Light in Galactic Nuclei: I. Gas-Rich Merger Remnants
- The Argo Simulation: I. Quenching of Massive Galaxies at High Redshift as a Result of Cosmological Starvation
- Tidally Triggered Star Formation in Close Pairs of Galaxies: Major and Minor Interactions
- Adding Environmental Gas Physics to the Semi-Analytic Method for Galaxy Formation: Gravitational Heating
- AEGIS: Enhancement of Dust-enshrouded Star Formation in Close Galaxy Pairs and Merging Galaxies up to z ~ 1
- Evolution of the atomic and molecular gas content of galaxies in dark matter haloes
- Milky Way mass constraints from the Galactic satellite gap
- Predicting Galaxy Star Formation Rates via the Co-evolution of Galaxies and Halos
- The neutral gas content of post-merger galaxies
Cited by in corpus (11)
- Star cluster formation in cosmological simulations. I. Properties of young clusters
- Trinity I: Self-Consistently Modeling the Dark Matter Halo-Galaxy-Supermassive Black Hole Connection from
- Galaxy Morphologies Revealed with Subaru HSC and Super-Resolution Techniques I: Major Merger Fractions of L_UV~3-15 L_UV* Dropout Galaxies at z~4-7
- The SAGA Survey. V. Modeling Satellite Systems around Milky Way-mass Galaxies with Updated UniverseMachine
- The Origin of Lopsided Satellite Galaxy Distribution in Galaxy Pairs
- On the nature of Small Galaxy Systems
- Carbon envelopes around merging galaxies at z ~ 4.5
- Cosmic evolution of the incidence of Active Galactic Nuclei in massive clusters: Simulations versus observations
- Low-redshift quasars in the SDSS Stripe 82 II: associated companion galaxies and signature of star formation
- Observing Correlations Between Dark Matter Accretion and Galaxy Growth: II. Testing the Impact of Galaxy Mass, Star Formation Indicator, and Neighbour Colours
- Insights into the dependence of galaxy properties on the environment with explainable machine learning models