Galaxy mergers drive enhancements in ionization states
A. Le Reste, K. B. Mantha
astro-ph.GA, astro-ph.CO
Submitted: 2026-07-13
Comments: 9 pages, 4 figures. Submitted to ApJ
Code: https://github.com/tikk3r/legacystamps
License: http://creativecommons.org/licenses/by/4.0/
The gist: Recent studies have suggested that galaxy mergers may help drive the escape of ionizing photons from galaxies.
Terminology
Abstract
Recent studies have suggested that galaxy mergers may help drive the escape of ionizing photons from galaxies. However, the ionization properties of merging galaxies have not yet been systematically studied across the full merger sequence in a large, well-defined sample. Here, we investigate the impact of mergers on the line ratio 32 tracing the ionization state and study its evolution as a function of merger progression. We identify 7641 galaxy mergers with robust (>3) emission line fluxes from the Sloan Digital Sky Survey Data Release 17, using spectroscopic pair analysis and visual classifications from the participatory science experiment "Cosmic Disco: Characterizing Galaxy Collisions". We find a continuous increase in 32 as a function of merger progression traced by pair separation and visual merger stages, with median and 90th percentile peaking post-coalescence. 32 is significantly enhanced in mergers past the first pericenter passage as compared to a control sample of isolated galaxies. We investigate the properties of galaxy mergers with 32>3 and find that these are mainly low-mass (=6 times 10 8,) mergers close to coalescence. In this population, large 32 values are due to mergers driving a simultaneous increase in specific star formation rate and decrease in metallicity. Thus, galaxy mergers enhance the ionization state of galaxies and likely facilitate the escape of ionizing radiation from galaxies, even at low stellar masses. Finally, we infer that Green Pea galaxies, a population characterized by high 32, are low-mass galaxy mergers at coalescence, a scenario that reconciles findings from environmental and interferometric 21cm studies.
Sources
- Not So Isolated: Green Pea Galaxies in Overdense Environments revealed by VLT/MUSE
- Identifying the contributors to cosmic reionization with the Habitable World Observatory: LyC escape calibration in faint galaxies
- Euclid Quick Data Release (Q1). First Euclid statistical study of galaxy mergers and their connection to active galactic nuclei
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