Quenching in Cosmic Sheets: Tracing the Impact of Large Scale Structure Collapse on the Evolution of Dwarf Galaxies
arXiv:2204.04097 · doi:10.1093/mnras/stac3776
Abstract
Dwarf galaxies are thought to quench primarily due to environmental processes most typically occurring in galaxy groups and clusters or around single, massive galaxies. However, at earlier epochs, (), the collapse of large scale structure (forming Zel'dovich sheets and subsequently filaments of the cosmic web) can produce volume-filling accretion shocks which elevate large swaths of the intergalactic medium (IGM) in these structures to a hot ( K) phase. We study the impact of such an event on the evolution of central dwarf galaxies () in the field using a spatially large, high resolution cosmological zoom simulation which covers the cosmic web environment between two protoclusters. We find that the shock-heated sheet acts as an environmental quencher much like clusters and filaments at lower redshift, creating a population of quenched, central dwarf galaxies. Even massive dwarfs which do not quench are affected by the shock, with reductions to their sSFR and gas accretion. This process can potentially explain the presence of isolated quenched dwarf galaxies, and represents an avenue of pre-processing, via which quenched satellites of bound systems quench before infall.
15 pages, 10 figures. Submitted to MNRAS
References in corpus (22)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- Simulating galaxy formation with black hole driven thermal and kinetic feedback
- Galaxy Groups in the SDSS DR4: I. The Catalogue and Basic Properties
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- A New Calculation of the Ionizing Background Spectrum and the Effects of HeII Reionization
- The Importance of Satellite Quenching for the Build-Up of the Red Sequence of Present Day Galaxies
- The Main Sequence of star-forming galaxies across cosmic times
- Dependence of Galaxy Quenching on Halo Mass and Distance from its Centre
- Gravitational Quenching in Massive Galaxies and Clusters by Clumpy Accretion
- Breathing in Low Mass Galaxies: A Study of Episodic Star Formation
- ELUCID IV: Galaxy Quenching and its Relation to Halo Mass, Environment, and Assembly Bias
- GASP. XVI. Does cosmic web enhancement turn on star formation in galaxies?
- The Imprint of Cosmic Web Quenching on Central Galaxies
- A new isolated dSph galaxy near the Local Group
- Satellite quenching was not important for z1 clusters: most quenching occurred during infall
- Rivers of Gas I.: Unveiling The Properties of High Redshift Filaments
- A recently quenched isolated dwarf galaxy outside of the Local Group environment
- Evidence of ram pressure stripping of WLM, a dwarf galaxy far away from any large host galaxy
- The hydrodynamic stability of gaseous cosmic filaments
- The present-day gas content of simulated field dwarf galaxies
- Galactic tides and the Crater II dwarf spheroidal: a challenge to LCDM?
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- Hydrodynamical simulations of the galaxy population: enduring successes and outstanding challenges
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- JWST/NIRSpec spectroscopy of intermediate-mass quiescent galaxies at
- Galaxy and halo properties around cosmic filaments from Sloan Digital Sky Survey Data Release 7 and the ELUCID simulation
- Searching for Conformity Across Cosmic Time with Local Group and Local Volume Star Formation Histories
- Environmental Quenching of Low Surface Brightness Galaxies near Milky Way mass Hosts
- Statistical Properties of Cold Streams In Massive Star-Forming Halos in TNG50