The Nun Path: The Evolution and Quenching of Satellite Galaxies
arXiv:2103.10258
Abstract
The galaxy quenching process, in which a galaxy stops forming stars is a crucial stage in galaxy life. Two mechanisms for quenching are possible: halo mass quenching of central galaxies and environmental quenching of satellite galaxies. This thesis describes the satellite galaxies (SG) quenching process and its primary causes. The analysis contains a study of a large sample of 118 SGs within the Vela cosmological simulation, identified by a specific SG merger tree algorithm. We find that the quenching evolves through a typical path in the diagram of specific star formation (sSFR) vs. inner stellar surface density (), with the inner surface density defined as the density within 0.5kpc from the center of mass of the SG. Three discrete phases characterize this path: 1. Halt in gas accretion with SG compaction at high sSFR as the SG keeps forming stars 2. Gas removal and rapid drop in the sSFR at the peri-center of its orbit within the host halo 3. Stellar heating and stripping may lead to coalescing with the halo center, an ultra-diffuse galaxy (UDG), a compact elliptical galaxy (eCg), or a globular cluster (GC). We find that the main drivers of SG evolution are ram pressure stripping at the initial stages and tidal forces at the final stages, aided by starvation, suppression of gas accretion. We show that other processes, such as gas depletion by star formation or stellar feedback are secondary. Moreover, we present an innovative method for constructing merger trees in simulations that solve systemic errors. Two new significant results presented here: a. Decoupling of dark-matter from the stellar component in SGs. b. Compact elliptical SG formation. An assembly of these results and others are presented in a fast and robust catalog.
In Memory of Kalman Nussbaum
References in corpus (11)
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- Introducing the Illustris Project: the evolution of galaxy populations across cosmic time
- The Kinematics of the Ultra-Faint Milky Way Satellites: Solving the Missing Satellite Problem
- Disruption of Dark Matter Substructure: Fact or Fiction?
- The role of stellar feedback in the formation of galaxies
- Dependence of Galaxy Quenching on Halo Mass and Distance from its Centre
- Hot gas in massive halos drives both mass quenching and environment quenching
- Early formation of massive, compact, spheroidal galaxies with classical profiles by violent disc instability or mergers
- The environmental dependence of gas accretion onto galaxies: quenching satellites through starvation
- Satellite Quenching, Galaxy Inner Density and the Halo Environment
- On the evolution of the central density of quiescent galaxies