English

Investigating the clumpy star formation in an interacting dwarf irregular galaxy

Astrophysics of Galaxies 2025-06-27 v1

Abstract

Clumpy morphologies are more frequent in distant and low-mass star-forming galaxies. Therefore the less numerous nearby galaxies presenting kpc-sized clumps represent unique laboratories from which to address the mechanisms driving clump formation and study why such structures become less common in the local Universe, and why they tend to exhibit smaller sizes and lower star formation rates compared to their high-zz counterparts. We use high spatial resolution Integral Field Unit observations from VLT/MUSE to investigate the properties of several kpc-sized clumps seen in SDSS J020536-081424, a z0.04z \approx 0.04 dwarf irregular galaxy interacting with its more massive companion Mrk 1172 (log(M/M)11\log (M/M_{\odot}) \sim 11). Hα\alpha channel maps reveal that the clumps are embedded within a rotating ionised gas component, possibly a disk. Self-consistent full-spectral fitting of the clump spectra with FADO\mathrm{FADO} indicates that their young (t10t \leq 10 Myr) populations have lower stellar metallicities compared to the older (t100t \gtrsim 100 Myr) ones, although these estimates are subject to significant degeneracies. The clumpy SF in SDSS J020536-081424 seems to occur in the disk, which dominates the stellar emission. Gas-phase metallicities derived through strong-line calibrations exhibit a flat distribution around Zgas0.3ZZ_{\mathrm{gas}} \approx 0.3\,Z_{\odot}, likely caused by efficient galactic-scale metal mixing processes. There is no evidence for a strong anti-correlation between ZgasZ_{\mathrm{gas}} and SFR\mathrm{SFR}, although clump sizes are likely overestimated due to seeing limitations. The lower ZZ_{\ast} of younger stellar populations compared to the disk suggests clump formation driven by accretion of metal-poor gas in SDSS J020536-081424.

Keywords

Cite

@article{arxiv.2506.21335,
  title  = {Investigating the clumpy star formation in an interacting dwarf irregular galaxy},
  author = {Augusto E. Lassen and Ana L. Chies-Santos and Rogerio Riffel and Evelyn J. Johnston and Eleazar R. Carrasco and Boris Häußler and Gabriel M. Azevedo and Jean M. Gomes and Rogemar A. Riffel and Ariel Werle and Rubens E. G. Machado and Daniel Ruschel-Dutra},
  journal= {arXiv preprint arXiv:2506.21335},
  year   = {2025}
}

Comments

20 pages, 10 figures. Accepted for publication in MNRAS

R2 v1 2026-07-01T03:34:38.753Z