English

SMILES: Potentially Higher Ionizing Photon Production Efficiency in Overdense Regions

Astrophysics of Galaxies 2025-05-06 v3 Cosmology and Nongalactic Astrophysics

Abstract

The topology of reionization and the environments where galaxies efficiently produce ionizing photons are key open questions. For the first time, we investigate the trend between ionizing photon production efficiency, ξion\xi_{\rm ion}, and galaxy overdensity, log(1+δ)\log(1+\delta). We analyze the ionizing properties of 79 galaxies between 1.0<z<5.21.0 < z < 5.2 using JWST NIRSpec medium-resolution spectra from the Systematic Mid-infrared Instrument (MIRI) Legacy Extragalactic Survey (SMILES) program. Among these, 67 galaxies have Hα\alpha coverage, spanning 1.0<z<3.11.0 < z < 3.1. The galaxy overdensity, log(1+δ)\log(1+\delta), is measured using the JADES photometric catalog, which covers the SMILES footprint. For the subset with Hα\alpha coverage, we find that logξion\log\xi_{\rm ion} is positively correlated with log(1+δ)\log(1+\delta), with a slope of 0.940.46+0.460.94_{-0.46}^{+0.46}. Additionally, the mean ξion\xi_{\rm ion} for galaxies in overdense regions (log(1+δ)>0.1\log(1+\delta) > 0.1) is 2.43 times that of galaxies in lower density regions (log(1+δ)<0.1\log(1+\delta) < 0.1). This strong trend is found to be independent of redshift evolution. Furthermore, our results confirm the robust correlations between ξion\xi_{\rm ion} and the rest-frame equivalent widths of the [O III] or Hα\alpha emission lines. Our results suggest that galaxies in high-density regions are efficient producers of ionizing photons.

Keywords

Cite

@article{arxiv.2410.14804,
  title  = {SMILES: Potentially Higher Ionizing Photon Production Efficiency in Overdense Regions},
  author = {Yongda Zhu and Stacey Alberts and Jianwei Lyu and Jane Morrison and George H. Rieke and Yang Sun and Jakob M. Helton and Zhiyuan Ji and Rachana Bhatawdekar and Nina Bonaventura and Andrew J. Bunker and Xiaojing Lin and Marcia J. Rieke and Pierluigi Rinaldi and Irene Shivaei and Christopher N. A. Willmer and Junyu Zhang},
  journal= {arXiv preprint arXiv:2410.14804},
  year   = {2025}
}

Comments

17 pages. Accepted for publication in ApJ