English

A Break In the Size-Stellar Mass Relation: Evidence for Quenching and Feedback in Dwarf Galaxies

Astrophysics of Galaxies 2024-08-27 v1

Abstract

Mapping stars and gas in nearby galaxies is fundamental for understanding their growth and the impact of their environment. This issue is addressed by comparing the stellar "edges" of galaxies DstellarD_{\rm stellar}, defined as the outermost diameter where in situ star formation significantly drops, with the gaseous distribution parameterized by the neutral atomic hydrogen diameter measured at 1 MsunM_{sun}/pc2^2, DHID_{HI}. By sampling a broad HI mass range 105Msun<MHI<1011Msun10^5 M_{sun} < M_{HI} < 10^{11} M_{sun}, we find several dwarf galaxies with MHI<109MsunM_{HI} < 10^9 M_{sun} from the field and Fornax Cluster which are distinguished by Dstellar>>DHID_{\rm stellar} >> D_{HI}. For the cluster dwarfs, the average HI surface density near DstellarD_{\rm stellar} is \sim0.3 MsunM_{sun}/pc2^2, reflecting the impact of quenching and outside-in gas removal from ram pressure and tidal interactions. In comparison, Dstellar/DHID_{\rm stellar}/D_{HI} ranges between 0.5-2 in dwarf field galaxies, consistent with the expectations from stellar feedback. Only more massive disk galaxies in the field can thus be characterized by the common assumption that DstellarDHID_{\rm stellar} \lesssim D_{HI}. We discover a break in the DstellarMstellarD_{\rm stellar}-M_{\rm stellar} relation at mbreak4×108Msunm_{break} \sim 4\times10^8 M_{sun} that potentially differentiates the low mass regime where the influence of stellar feedback and environmental processes more prominently regulates the sizes of nearby galaxies. Our results highlight the importance of combining deep optical and HI imaging for understanding galaxy evolution.

Keywords

Cite

@article{arxiv.2408.13311,
  title  = {A Break In the Size-Stellar Mass Relation: Evidence for Quenching and Feedback in Dwarf Galaxies},
  author = {Nushkia Chamba and Pamela M. Marcum and Amélie Saintonge and Alejandro S. Borlaff and Matthew J. Hayes and Valentin J. M. Le Gouellec and S. Drew Chojnowski and Michael N. Fanelli},
  journal= {arXiv preprint arXiv:2408.13311},
  year   = {2024}
}

Comments

19 pages, 10 figures, 2 tables. Key results in Figs. 4, 6, 7 and 8. Accepted for publication in The Astrophysical Journal