English

Discovery of a galaxy associated with the HI cloud FAST J0139+4328

Astrophysics of Galaxies 2026-01-01 v1

Abstract

The search for ``dark galaxies,'' a key prediction of the lambda cold dark matter, has yielded few viable candidates. Recently, FAST J0139+4328 was reported as the first isolated dark galaxy in the nearby universe, based on a neutral hydrogen (HI) detection and a non-detection in the Pan-STARRS1 survey. To verify the nature of this candidate, we obtained deep optical imaging, using the 1.4m1.4\,\mathrm{m} \textit{Milankovi\'c} and 0.6m0.6\,\mathrm{m} \textit{Nedeljkovi\'c} telescopes, and spectroscopic follow-up of the field. We report the unambiguous discovery of a low-surface-brightness (LSB) optical counterpart at the location of the HI cloud. Furthermore, the detection of Hα\alpha emission via the 6m6\,\mathrm{m} Big Telescope Alt-Azimuthal (BTA) confirms that the stellar system lies at a redshift consistent with the HI source, establishing their physical association. Through detailed photometry and employing color-dependent mass-to-light scaling relations, we derive a total stellar mass of M=(7.2±3.7)×106MM_\star = (7.2 \pm 3.7) \times 10^6\, M_{\odot}, about an order of magnitude higher than the previously estimated upper limit. Using the literature HI mass, this implies a gas-to-stellar mass ratio of MHI/M=11.5±6.4M_{\mathrm{HI}} / M_{\star} = 11.5 \pm 6.4. Our findings demonstrate that FAST J0139+4328 is not a dark galaxy but an extremely gas-rich LSB dwarf galaxy, whose stellar component was simply below the detection limit of the Pan-STARRS1 survey. This reclassification resolves the status of this prominent dark galaxy candidate and underscores the necessity of deep optical follow-up to classify faint HI-selected systems.

Keywords

Cite

@article{arxiv.2512.24924,
  title  = {Discovery of a galaxy associated with the HI cloud FAST J0139+4328},
  author = {Ana Mitrašinović and Marko Grozdanović and Ana Lalović and Milena Jovanović and Michal Bilek and Nataša Pavlov and Alexei V. Moiseev and Dmitry V. Oparin},
  journal= {arXiv preprint arXiv:2512.24924},
  year   = {2026}
}

Comments

accepted for publication in Astronomy & Astrophysics