English

Applying unsupervised learning to resolve evolutionary histories and explore the galaxy-halo connection in IllustrisTNG

Astrophysics of Galaxies 2023-04-18 v3

Abstract

We examine the effectiveness of identifying distinct evolutionary histories in IllustrisTNG-100 galaxies using unsupervised machine learning with Gaussian Mixture Models. We focus on how clustering compressed metallicity histories and star formation histories produces subpopulations of galaxies with distinct evolutionary properties (for both halo mass assembly and merger histories). By contrast, clustering with photometric colours fail to resolve such histories. We identify several populations of interest that reflect a variety of evolutionary scenarios supported by the literature. Notably, we identify a population of galaxies inhabiting the upper-red sequence, M>1010MM_{*} > 10^{10} M_{\odot} that has a significantly higher ex-situ merger mass fraction present at fixed masses, and a star formation history that has yet to fully quench, in contrast to an overlapping, satellite-dominated population along the red sequence, which is distinctly quiescent. Extending the clustering to study four clusters instead of three further divides quiescent galaxies, while star forming ones are mostly contained in a single cluster, demonstrating a variety of supported pathways to quenching. In addition to these populations, we identify a handful of populations from our other clusters that are readily applicable to observational surveys, including a population related to post starburst (PSB) galaxies, allowing for possible extensions of this work in an observational context, and to corroborate results within the IllustrisTNG ecosystem.

Keywords

Cite

@article{arxiv.2112.12516,
  title  = {Applying unsupervised learning to resolve evolutionary histories and explore the galaxy-halo connection in IllustrisTNG},
  author = {Tristan Sohrab Fraser and Rita Tojeiro and Harry Chittenden},
  journal= {arXiv preprint arXiv:2112.12516},
  year   = {2023}
}

Comments

Version accepted to Monthly Notices of the Royal Astronomical Society (MNRAS) following referee comments and substantial changes. 11 figures, 4 tables, 19 pages