Litcius/Paper detail

Ultra diffuse galaxies in the Hydra I cluster from the LEWISProject: Phase-Space distribution and globular cluster richness

Duncan A. Forbes, Jonah S. Gannon, E. Iodice, M. Hilker, Goran Doll, Chiara Buttitta, Antonio La Marca, M. Arnaboldi, Michele Cantiello, G. D’Ago, J. Falcón‐Barroso, L. Greggio, Marco Gullieuszik, Johanna Hartke, Steffen Mieske, Marco Mirabile, R. Rampazzo, M. Rejkuba, Marilena Spavone, Chiara Spiniello, Giulio Capasso

2023Monthly Notices of the Royal Astronomical Society Letters17 citationsDOIOpen Access PDF

Abstract

ABSTRACT Although ultra diffuse galaxies (UDGs) are found in large numbers in clusters of galaxies, the role of the cluster environment in shaping their low surface brightness and large sizes is still uncertain. Here, we examine a sample of UDGs in the Hydra I cluster (D = 51 Mpc) with new radial velocities obtained as part of the LEWIS (Looking into the faintest with MUSE) project using VLT/MUSE data. Using a phase-space, or infall diagnostic, diagram we compare the UDGs to other known galaxies in the Hydra I cluster and to UDGs in other clusters. The UDGs, along with the bulk of regular Hydra I galaxies, have low relative velocities and are located near the cluster core, and thus consistent with very early infall into the cluster. Combining with literature data, we do not find the expected trend of GC-rich UDGs associated with earlier infall times. This result suggests that quenching mechanisms other than cluster infall should be further considered, e.g. quenching by strong feedback or in cosmic sheets and filaments. Tidal stripping of GCs in the cluster environment also warrants further modelling.

Topics & Concepts

PhysicsLernaean HydraAstrophysicsCluster (spacecraft)Galaxy clusterGlobular clusterGalaxyBrightest cluster galaxySurface brightnessAstronomyGeographyProgramming languageComputer scienceArchaeologyGalaxies: Formation, Evolution, PhenomenaStellar, planetary, and galactic studiesAstronomy and Astrophysical Research