Nature versus nurture: what regulates star formation in satellite galaxies?
arXiv:1806.00484 · doi:10.1093/mnras/sty3059
Abstract
We use our state-of-the-art Galaxy Evolution and Assembly (GAEA) semi-analytic model to study how and on which time-scales star formation is suppressed in satellite galaxies. Our fiducial stellar feedback model, implementing strong stellar driven outflows, reproduces relatively well the variations of passive fractions as a function of galaxy stellar mass and halo mass measured in the local Universe, as well as the `quenching' time-scales inferred from the data. We show that the same level of agreement can be obtained by using an alternative stellar feedback scheme featuring lower ejection rates at high redshift, and modifying the treatment for hot gas stripping. This scheme over-predicts the number densities of low to intermediate mass galaxies. In addition, a good agreement with the observed passive fractions can be obtained only by assuming that cooling can continue on satellites, at the rate predicted considering halo properties at infall, even after their parent dark matter substructure is stripped below the resolution of the simulation. For our fiducial model, the better agreement with the observed passive fractions can be ascribed to: (i) a larger cold gas fraction of satellites at the time of accretion, and (ii) a lower rate of gas reheating by supernovae explosions and stellar winds with respect to previous versions of our model. Our results suggest that the abundance of passive galaxies with stellar mass larger than ~10^10 Msun is primarily determined by the self-regulation between star formation and stellar feedback, with environmental processes playing a more marginal role.
11 pages, 6 figures, 1 appendix. Accepted for publication in MNRAS
References in corpus (23)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- Simulating Galaxy Formation with the IllustrisTNG Model
- UV Star Formation Rates in the Local Universe
- The hierarchical formation of the brightest cluster galaxies
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- Structure and star formation in galaxies out to z=3: evidence for surface density dependent evolution and upsizing
- Ram pressure stripping the hot gaseous halos of galaxies in groups and clusters
- The Hydrangea simulations: galaxy formation in and around massive clusters
- Properties of Galaxy Groups in the SDSS: II.- AGN Feedback and Star Formation Truncation
- The Correlation of Star Formation Quenching with Internal Galaxy Properties and Environment
- Effect of local environment and stellar mass on galaxy quenching and morphology at
- The influence of the environmental history on quenching star formation in a CDM universe
- The Dependence of Galaxy Formation on Cosmological Parameters: Can we distinguish the WMAP1 and WMAP3 Parameter Sets?
- Galaxy environment in the 3D-HST fields. Witnessing the onset of satellite quenching at z ~ 1-2
- Assessing Colour-dependent Occupation Statistics Inferred from Galaxy Group Catalogues
- Elemental Abundances in Milky Way-like Galaxies from a Hierarchical Galaxy Formation Model
- Modelling and interpreting the dependence of clustering on the spectral energy distributions of galaxies
- The colors of satellite galaxies in the Illustris Simulation
- HI-selected Galaxies in Hierarchical Models of Galaxy Formation and Evolution
- Structural and Dynamical Properties of Galaxies in a Hierarchical Universe: Sizes and Specific Angular Momenta
- CANDELS Sheds Light on the Environmental Quenching of Low-mass Galaxies
- Strong stellar-driven outflows shape the evolution of galaxies at cosmic dawn
- What Regulates Galaxy Evolution? Open Questions in Our Understanding of Galaxy Formation and Evolution
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- The Dawes Review 9: The role of cold gas stripping on the star formation quenching of satellite galaxies
- Quenched fractions in the IllustrisTNG simulations: the roles of AGN feedback, environment, and pre-processing
- Joint constraints on thermal relic dark matter from strong gravitational lensing, the Lyman- forest, and Milky Way satellites
- Physical properties of SDSS satellite galaxies in projected phase-space
- The GOGREEN Survey: A deep stellar mass function of cluster galaxies at 1.0<z<1.4 and the complex nature of satellite quenching
- Galaxy evolution across environments as probed by the ages, stellar metallicities and [alpha/Fe] of central and satellite galaxies
- The influence of environment on satellite galaxies in the GAEA semi-analytic model
- The Rise of Active Galactic Nuclei in the GAlaxy Evolution and Assembly semi-analytic model
- WALLABY Pilot Survey: the diversity of ram pressure stripping of the galactic HI gas in the Hydra Cluster
- Tracing the Quenching Journey across Cosmic Time
- The Roles of Mass and Environment in the Quenching of Galaxies. II
- The evolution of the mass-metallicity relations from the VANDELS survey and the GAEA Semi-Analytic model
- Massive quiescent galaxies at : a comparison of selection, stellar population and structural properties with simulation predictions
- A New Method to Constrain the Appearance and Disappearance of Observed Jellyfish Galaxy Tails
- From rest-frame luminosity functions to observer-frame colour distributions: tackling the next challenge in cosmological simulations
- Redshift Evolution of Green Valley Galaxies in Different Environments from the Hyper Suprime-Cam Survey
- The GOGREEN Survey: Constraining the Satellite Quenching Timescale in Massive Clusters at
- The Evolution of Sizes and Specific Angular Momenta in Hierarchical Models of Galaxy Formation and Evolution
- Multi-Epoch Machine Learning 1: Unravelling Nature vs Nurture for Galaxy Formation
- When the Well Runs Dry: Modeling Environmental Quenching of High-mass Satellites in Massive Clusters at \boldmath
- Dynamical analysis of clusters of galaxies from cosmological simulations
- The Roles of Mass and Environment in the Quenching of Galaxies
- Implications of Increased Central Mass Surface Densities for the Quenching of Low-mass Galaxies
- Galaxy populations in groups and clusters: evidence for a characteristic stellar mass scale at
- Environmental cluster effects and galaxy evolution: The HI properties of the Abell clusters A85/A496/A2670
- Critical Stellar Central Densities Drive Galaxy Quenching in the Nearby Universe
- The Evolution of Brightest Cluster Galaxies in the Nearby Universe II: The star-formation activity and the Stellar Mass from Spectral Energy Distribution
- Estimation of the Galaxy Quenching Rate in the Illustris Simulation
- Euclid preparation. Optical emission-line predictions of intermediate-z galaxy populations in GAEA for the Euclid Deep and Wide Surveys
- Satellites and central galaxies in SDSS: the influence of interactions on their properties
- Stellar Profile Independent Determination of the Dark Matter Distribution of the Fornax Local Group Dwarf Spheroidal Galaxy
- The clustering of C IV and Si IV at the end of reionisation: A perspective from the E-XQR-30 survey