galaxy formation

The Extended Globular Cluster System of the archetypal "failed galaxy" Dragonfly-44 from deep white-light Hubble Space Telescope imaging

arXiv:2607.26152

summary

Deep Hubble imaging reveals that the ultra-diffuse galaxy Dragonfly-44 hosts about 78 globular clusters, confirming its extremely high dark‑matter content and supporting its classification as a 'failed galaxy'.

Abstract

For nearly a decade, Dragonfly-44 (DF44, ) has been considered an archetypal ''failed galaxy'', a system so rich in globular clusters (GCs) and dark matter that it challenges standard dwarf galaxy formation scenarios. Yet a key measurement underpinning this classification has remained controversial, with published GC counts differing by a factor of four. Here we present new ultra-deep Hubble Space Telescope WFC3/UVIS imaging of DF44 in the F350LP filter, reaching more than one magnitude below the turnover of the GC luminosity function. We find that DF44 hosts GCs in a spatially extended system with a half-number radius of , at the high end of previously published values. The GC system comprises of the total stellar mass and implies a halo mass of , in agreement with the cored halo mass inferred from stellar kinematics by van Dokkum et al. 2019. This places DF44 among the most dark matter-dominated galaxies known, with a dark matter fraction exceeding 99.9%. The combination of extreme GC richness and extreme dark matter content establishes DF44 as one of the clearest examples of a failed galaxy: a system that assembled a massive halo and rich GC population early, but never formed the field stellar mass expected for its halo. Although clustered star formation in high-pressure, early-collapsing halos offers a promising starting point, no current model or simulation reproduces failed galaxies as a class, making DF44 a critical benchmark for future models of galaxy formation.

Submitted to ApJL. 10 pages, 4 figures

Topics & keywords

#globular clusters#dark matter#ultra-diffuse galaxies#dwarf galaxy evolution#halo massDragonfly-44GC luminosity functionWFC3/UVISvirial massstellar kinematicshalo mass fraction
The Extended Globular Cluster System of the archetypal "failed galaxy" Dragonfly-44 from deep white-light Hubble Space Telescope imaging · wovepaper