The role of stochastic and smooth processes in regulating galaxy quenching
arXiv:2101.08549 · doi:10.1051/0004-6361/202039648
Abstract
Galaxies can be classified as passive ellipticals or star-forming discs. Ellipticals dominate at the high end of the mass range, and therefore there must be a mechanism responsible for the quenching of star-forming galaxies. This could either be due to the secular processes linked to the mass and star formation of galaxies or to external processes linked to the surrounding environment. In this paper, we analytically model the processes that govern galaxy evolution and quantify their contribution. We have specifically studied the effects of mass quenching, gas stripping, and mergers on galaxy quenching. To achieve this, we first assumed a set of differential equations that describe the processes that shape galaxy evolution. We then modelled the parameters of these equations by maximising likelihood. These equations describe the evolution of galaxies individually, but the parameters of the equations are constrained by matching the extrapolated intermediate-redshift galaxies with the low-redshift galaxy population. In this study, we modelled the processes that change star formation and stellar mass in massive galaxies from the GAMA survey between z~0.4 and the present. We identified and quantified the contributions from mass quenching, gas stripping, and mergers to galaxy quenching. The quenching timescale is on average 1.2 Gyr and a closer look reveals support for the slow-then-rapid quenching scenario. The major merging rate of galaxies is about once per 10~Gyr, while the rate of ram pressure stripping is significantly higher. In galaxies with decreasing star formation, we show that star formation is lost to fast quenching mechanisms such as ram pressure stripping and is countered by mergers, at a rate of about 41% Gyr and to mass quenching 49% Gyr. (abridged)
12 pages, 10 figures, accepted to A&A
References in corpus (22)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- A simple model to interpret the ultraviolet, optical and infrared emission from galaxies
- The UV-Optical Color Magnitude Diagram II: Physical Properties and Morphological Evolution On and Off of a Star-Forming Sequence
- Galaxy And Mass Assembly (GAMA): the G02 field, Herschel-ATLAS target selection and Data Release 3
- LoCuSS: The slow quenching of star formation in cluster galaxies and the need for pre-processing
- The Redshift Evolution of Wet, Dry, and Mixed Galaxy Mergers from Close Galaxy Pairs in the DEEP2 Galaxy Redshift Survey
- The Structures of Distant Galaxies - III: The Merger History of over 20,000 Massive Galaxies at z < 1.2
- The Luminosity Dependence of the Galaxy Merger Rate
- Catalogues of isolated galaxies, isolated pairs, and isolated triplets in the local Universe
- Stochastic modelling of star-formation histories II: star-formation variability from molecular clouds and gas inflow
- The contribution of star formation and merging to stellar mass buildup in galaxies
- Overconsumption, outflows and the quenching of satellite galaxies
- Galaxy Cluster Mass Reconstruction Project: I. Methods and first results on galaxy-based techniques
- The Keck Baryonic Structure Survey: Using foreground/background galaxy pairs to trace the structure and kinematics of circumgalactic neutral hydrogen at
- Galaxies grow their bulges and black holes in diverse ways
- Gas accretion from minor mergers in local spiral galaxies
- GASP XXX. The spatially resolved SFR-Mass relation in stripping galaxies in the local universe
- Color gradients along the quiescent galaxy sequence: clues to quenching and structural growth
- GASP XXVI. HI Gas in Jellyfish Galaxies: The case of JO201 and JO206
- The continuous rise of bulges out of galactic disks
- Gas fractions and depletion times in galaxies with different degrees of interaction
- Quantifying torque from the Milky Way bar using Gaia DR2
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- Stochastic Modelling of Star Formation Histories III. Constraints from Physically-Motivated Gaussian Processes
- Death at watersheds: galaxy quenching in low-density environments
- The fate of the interstellar medium in early-type galaxies. III. The mechanism of ISM removal and quenching of star formation
- The miniJPAS survey: The galaxy populations in the most massive cluster in miniJPAS, mJPC2470-1771
- Relating galaxies across different redshift to study galaxy evolution
- Finding proto-clusters to trace galaxy evolution: I. The finder and its performance
- The relationship between cluster environment and molecular gas content of star-forming galaxies in the EAGLE simulation
- Non-equilibrium in the Solar Neighbourhood using dynamical modelling with Gaia DR2
- Ageing and Quenching: Influence of Galaxy Environment and Nuclear Activity in Transition Stage
- Superbubbles as the source of dynamical friction: gas migration, stellar and dark matter contributions