Satellite galaxies in groups in the CIELO Project I. Gas removal from galaxies and its re-distribution in the intragroup medium
arXiv:2205.06886 · doi:10.1093/mnras/stac1377
Abstract
We study the impact of the environment on galaxies as they fall in and orbit in the potential well of a Local Group (LG) analogue, following them with high cadence. The analysis is performed on eight disc satellite galaxies from the CIELO suite of hydrodynamical simulations. All galaxies have stellar masses within the range $[10^{8.1} - 10^{9.56}] M_{\sun} $h. We measure tidal torques, ram pressure and specific star formation rates (sSFR) as a function of time, and correlate them with the amount of gas lost by satellites along their orbits. Stronger removal episodes occur when the disc plane is oriented perpendicular to the direction of motion. More than one peripassage is required to significantly modify the orientations of the discs with respect to the orbital plane. The gas removed during the interaction with the central galaxies may be also found opposite to the direction of motion, depending on the orbital configuration. Satellites are not totally quenched when the galaxies reach their first peripassage, and continue forming about of the final stellar mass after this event. The fraction of removed gas is found to be the product of the joint action of tidal torque and ram pressure, which can also trigger new star formation activity and subsequent supernova feedback.
17 pages, 13 figures, accepted for publication in MNRAS
References in corpus (17)
- Ubiquitous outflows in DEEP2 spectra of star-forming galaxies at z=1.4
- The M31 Velocity Vector. II. Radial Orbit Towards the Milky Way and Implied Local Group Mass
- Feedback and metal enrichment in cosmological SPH simulations - II. A multiphase model with supernova energy feedback
- The Assembly of Galaxy Clusters
- Star formation quenching in simulated group and cluster galaxies: When, how, and why?
- The formation and evolution of low-surface-brightness galaxies
- Environmentally-Driven Evolution of Simulated Cluster Galaxies
- Gas stripping in galaxy groups - the case of the starburst spiral NGC 2276
- Strange filamentary structures ("fireballs") around a merger galaxy in the Coma cluster of galaxies
- The pre-processing of subhaloes in SDSS groups and clusters
- The origin of low-surface-brightness galaxies in the dwarf regime
- The better half -- Asymmetric star-formation due to ram pressure in the EAGLE simulations
- Galaxy evolution in Abell 85: I. Cluster substructure and environmental effects on the blue galaxy population
- The evolution of the metallicity gradient and the star formation efficiency in disc galaxies
- Ionized gas disks in elliptical and S0 galaxies at
- Explaining the enhanced star formation rate of Jellyfish galaxies in galaxy clusters
- Following the crumbs: Statistical effects of Ram Pressure in Galaxies
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