Void Galaxies Follow a Distinct Evolutionary Path in the Environmental COntext Catalog
arXiv:2011.08276 · doi:10.3847/1538-4357/abca9f
Abstract
We measure the environmental dependence, where environment is defined by the distance to the third nearest neighbor, of multiple galaxy properties inside the Environmental COntext (ECO) catalog. We focus primarily on void galaxies, which we define as the of galaxies having the lowest local density. We compare the properties of void and non-void galaxies: baryonic mass, color, fractional stellar mass growth rate (FSMGR), morphology, and gas-to-stellar-mass ratio (estimated from a combination of HI data and photometric gas fractions calibrated with the RESOLVE survey). Our void galaxies typically have lower baryonic masses than galaxies in denser environments, and they display the properties expected of a lower mass population: they have more late-types, are bluer, have higher FSMGR, and are more gas rich. We control for baryonic mass and investigate the extent to which void galaxies are different at fixed mass. Void galaxies are bluer, more gas-rich, and more star forming at fixed mass than non-void galaxies, which is a possible signature of galaxy assembly bias. Furthermore, we show that these trends persist even at fixed mass and morphology, and we find that voids host a distinct population of early-types that are bluer and more star-forming than the typical red and quenched early-types. In addition to these empirical observational results, we also present theoretical results from mock catalogs with built-in galaxy assembly bias. We show that a simple matching of galaxy properties to (sub)halo properties, such as mass and age, can recover the observed environmental trends in ECO galaxies.
18 pages, 11 figures. Accepted for publication in ApJ
References in corpus (17)
- Galaxy Zoo: the dependence of morphology and colour on environment
- The spin and shape of dark matter haloes in the Millennium simulation of a LambdaCDM universe
- Assembly bias in the clustering of dark matter haloes
- ZOBOV: a parameter-free void-finding algorithm
- Halo assembly bias and its effects on galaxy clustering
- The Fundamental Properties of Galaxies and a New Galaxy Classification System
- The dependence of dark halo clustering on the formation epoch and the concentration parameter
- Environmental Dependence of Dark Matter Halo Growth I: Halo Merger Rates
- Formation of blue compact dwarf galaxies from merging and interacting gas-rich dwarfs
- The Properties of Galaxies in Voids
- The Void Phenomenon Explained
- The star formation activity in cosmic voids
- The Weak Clustering of Gas-Rich Galaxies
- Predicting Galaxy Star Formation Rates via the Co-evolution of Galaxies and Halos
- The RESOLVE Survey Atomic Gas Census and Environmental Influences on Galaxy Gas Reservoirs
- Gaseous infall triggering starbursts in simulated dwarf galaxies
- Tracing the gravitational potential using cosmic voids