English

Evolution of the galaxy merger fraction in the CLAUDS+HSC-SSP deep fields

Astrophysics of Galaxies 2021-06-09 v1

Abstract

We estimate the evolution of the galaxy-galaxy merger fraction for M>1010.5MM_\star>10^{10.5}M_\odot galaxies over 0.25<z<10.25<z<1 in the \sim18.6 deg2^2 deep CLAUDS+HSC-SSP surveys. We do this by training a Random Forest Classifier to identify merger candidates from a host of parametric morphological features, and then visually follow-up likely merger candidates to reach a high-purity, high-completeness merger sample. Correcting for redshift-dependent detection bias, we find that the merger fraction at z=0z=0 is 1.0±\pm0.2%, that the merger fraction evolves as (1+z)2.3±0.4(1+z)^{2.3 \pm 0.4}, and that a typical massive galaxy has undergone \sim0.3 major mergers since z=1z=1. This pilot study illustrates the power of very deep ground-based imaging surveys combined with machine learning to detect and study mergers through the presence of faint, low surface brightness merger features out to at least z1z\sim1.

Keywords

Cite

@article{arxiv.2106.04266,
  title  = {Evolution of the galaxy merger fraction in the CLAUDS+HSC-SSP deep fields},
  author = {Nathalie Thibert and Marcin Sawicki and Andy Goulding and Stephane Arnouts and Jean Coupon and Stephen Gwyn},
  journal= {arXiv preprint arXiv:2106.04266},
  year   = {2021}
}

Comments

To appear in RNAAS