We explore the differences in gas-rich field Ultra-Diffuse Galaxies (UDGs) and classical dwarf galaxies using an extensive atomic gas (HI) follow-up survey of optically-selected UDG candidates from the Systematically Measuring Ultra-Diffuse Galaxies (SMUDGes) catalogue. We also compare the SMUDGes-HI observations with two state-of-the-art cosmological hydrodynamical simulations: Numerical Investigation of a Hundred Astrophysical Objects (NIHAO), where UDGs form through a series of bursty star formation episodes and Romulus25, in which UDGs occupy dark matter halos with high spins as a result of major mergers. Although the suggested formation scenarios for UDGs within these simulations are different, the present-day HI masses MHI, stellar masses M∗, and star formation rates SFR of simulated galaxies are qualitatively and quantitatively consistent with each other and with the observed SMUDGes-HI sample. We find that when controlling for M∗, there is a positive correlation between the gas richness MHI/M∗ and the effective optical radius Reff , and that this trend is not different between the UDG and dwarf populations, within the measured scatter. Taken together, our results suggest that gas-rich, star-forming UDGs and dwarfs are not distinct galaxy populations, either observationally or in simulations.
@article{arxiv.2502.14971,
title = {Are Gas-rich Ultra-diffuse Galaxies and Field Dwarfs Distinct?},
author = {Khadeejah Motiwala and Ananthan Karunakaran and Kristine Spekkens and Nikhil Arora and Arianna Di Cintio and Anna C. Wright and Dennis Zaritsky and Andrea V. Macciò},
journal= {arXiv preprint arXiv:2502.14971},
year = {2025}
}