English

Identifying Ly{\alpha} emitter candidates with Random Forest: learning from galaxies in CANDELS survey

Astrophysics of Galaxies 2023-09-20 v1

Abstract

The physical processes which make a galaxy a Lyman Alpha Emitter have been extensively studied for the past 25 years. However, the correlations between physical and morphological properties of galaxies and the strength of the Lyα\alpha emission line are still highly debated. Therefore, we investigate the correlations between the rest-frame Lyα\alpha equivalent width and stellar mass, star formation rate, dust reddening, metallicity, age, half-light semi-major axis, S\'ersic index and projected axis ratio in a sample of 1578 galaxies in the redshift range 2z7.92 \leq z \leq 7.9 from the GOODS-S, UDS and COSMOS fields. From the large sample of Lyα\alpha emitters (LAEs) in the dataset we find that LAEs are typically common main sequence star forming galaxies which show stellar mass 109M \leq 10^9 \text{M}_{\odot}, star formation rate 100.5M/yr \leq 10^{0.5} \text{M}_{\odot}/\text{yr}, E(BV)0.2E(B-V) \leq 0.2 and half-light semi-major axis 1kpc\leq 1 \text{kpc}. Building on these findings we develop a new method based on Random Forest (i.e. a Machine Learning classifier) in order to select galaxies which have the highest probability of being Lyα\alpha emitters. When applied to a population in the redshift range z[2.5,4.5]z \in [2.5, 4.5], our classifier holds a (80±2)%(80 \pm 2)\% accuracy and (73±4)%(73 \pm 4)\% precision. At higher redshifts (z[4.5,6]z \in [4.5, 6]), we obtain a 73%73\% accuracy and a 80%80\% precision. These results highlight it is possible to overcome the current limitations in assembling large samples of LAEs by making informed predictions that can be used for planning future large scale spectroscopic surveys.

Keywords

Cite

@article{arxiv.2307.11818,
  title  = {Identifying Ly{\alpha} emitter candidates with Random Forest: learning from galaxies in CANDELS survey},
  author = {L. Napolitano and L. Pentericci and A. Calabrò and P. Santini and M. Castellano and P. Cassata and J. P. U. Fynbo and I. Jung and D. Kashino and S. Mascia and M. Mignoli},
  journal= {arXiv preprint arXiv:2307.11818},
  year   = {2023}
}

Comments

Accepted for publication in the 4. Extragalactic astronomy section of Astronomy & Astrophysics, 13 pages, 13 figures