Death at watersheds: galaxy quenching in low-density environments
Maret Einasto, Rain Kipper, Peeter Tenjes, Jaan Einasto, Elmo Tempel,, Lauri Juhan Liivam\"agi

TL;DR
This study investigates how the large-scale environment influences galaxy quenching, focusing on galaxies with old stellar populations in low-density watersheds, revealing that internal processes predominantly shape galaxy evolution regardless of environment.
Contribution
It provides new insights into galaxy evolution by analyzing the properties of VO galaxies in watersheds, highlighting the limited role of global density compared to internal processes.
Findings
Global density correlates with galaxy group richness.
Watersheds are mainly populated by single galaxies and low-luminosity groups.
VO galaxies in watersheds are younger and less massive.
Abstract
Our aim is to understand the effect of environment to galaxy quenching in various local and global environments. We focus on galaxies with very old stellar populations (VO galaxies), typically found in the centers of clusters and groups, and search for such galaxies in the lowest global density environments, watersheds between superclusters. We use the Sloan Digital Sky Survey MAIN galaxy sample to calculate the luminosity-density field and get global density field, to determine groups and filaments, and to obtain data on galaxy properties. We divide groups into low- and high-luminosity groups based on the highest luminosity of groups in the watershed region, . Our study shows that the global density is most strongly related to the richness of galaxy groups. Its influence on the overall star formation quenching in galaxies is less strong.…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research
