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The abundance of satellites around Milky Way- and M31-like galaxies with the TNG50 simulation: a matter of diversity

2021/01/31 by Christoph Engler, Annalisa Pillepich, A. Pasquali +12
Physics and Astronomy · #Abundance (ecology) #Astronomy #Astronomy and Astrophysical Research #Astrophysics #Astrophysics and Star Formation Studies #Biology #Dark matter halo #Dwarf galaxy problem #Ecology #Galaxies: Formation, Evolution, Phenomena #Galaxy #Halo #Local Group #Luminosity #Milky Way #Physics #Satellite #Satellite galaxy #Star formation #Stellar mass #astro-ph.GA

paper · pdf · doi:10.1093/mnras/stab2437

Accepted by MNRAS. TNG50 is publicly available at https://www.tng-project.org/

openalex publication_date 2021/08/28 · arxiv created 2021/09/23 · arxiv updated 2021/09/24 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/06

Abstract

ABSTRACT We study the abundance of satellite galaxies around 198 Milky Way- (MW) and M31-like hosts in TNG50, the final installment in the IllustrisTNG suite of cosmological magnetohydrodynamical simulations. MW/M31-like analogues are defined as discy galaxies with stellar masses of M_* = 1010.5 - 11.2~\rm M_\odot in relative isolation at z = 0. By defining satellites as galaxies with M_* ≥ 5× 106~\rm M_\odot within 300~\rm kpc (3D) of their host, we find a remarkable level of diversity and host-to-host scatter across individual host galaxies. The median TNG50 MW/M31-like galaxy hosts a total of 5+6-3 satellites with M_* ≥ 8 × 106~\rm M_\odot, reaching up to M_* ∼ 10^8.5+0.9-1.1~\rm M_\odot. Even at a fixed host halo mass of 1012~\rm M_\odot, the total number of satellites ranges between 0 and 11. The abundance of subhaloes with M_\rm dyn ≥ 5 × 107~\rm M_\odot is larger by a factor of more than 10. The number of all satellites (subhaloes) ever accreted is larger by a factor of 4–5 (3–5) than those surviving to z = 0. Hosts with larger galaxy stellar mass, brighter K-band luminosity, more recent halo assembly, and – most significantly – larger total halo mass typically have a larger number of surviving satellites. The satellite abundances around TNG50 MW/M31-like galaxies are consistent with those of mass-matched hosts from observational surveys (e.g. SAGA) and previous simulations (e.g. Latte). While the observed MW satellite system falls within the TNG50 scatter across all stellar masses considered, M31 is slightly more satellite-rich than our 1σ scatter but well consistent with the high-mass end of the TNG50 sample. We find a handful of systems with both a Large and a Small Magellanic Cloud-like satellite. There is no missing satellites problem according to TNG50.

Citations