English

SIRIUS: Dark matter cusp evolution in dense dwarf galaxies

Astrophysics of Galaxies 2026-01-21 v1

Abstract

Dwarf galaxies have a wide variety of structures, such as dark matter (DM) distribution, stellar-to-halo mass ratio, and stellar density. Recent high-resolution simulations have shown a variety of stellar-to-halo mass ratios for dwarf galaxies with a DM halo mass of 109M\sim 10^9 M_{\odot} at z=0z=0. In this study, we performed cosmological NN-body/smoothed-particle hydrodynamic zoom-in simulations of dwarf galaxies with the highest gas and DM particle mass resolutions of 2.37 MM_{\odot} and 12.8 MM_{\odot}, respectively. The stellar-to-DM halo mass ratio of one of our simulated dwarf galaxies was 104\sim 10^{-4}, typical for satellites of the Milky Way. The stellar mass (105M10^5 M_{\odot}) and half-mass radius (68 pc) were also similar to those of the satellites of the Milky Way. The power-law slope of the DM halo was α=1.1\alpha = -1.1. On the other hand, the other simulated galaxy exhibited a stellar-to-halo mass ratio of 103\sim 10^{-3} and a steeper power-law slope (α=1.9\alpha=-1.9) than the other; the presence of baryonic matter deepened the cusp. The mass of >106M>10^6 M_{\odot} and a half-mass radius of 36\sim 36 pc of this galaxy were similar to those of ultra-compact dwarf galaxies rather than the satellites of the Milky Way. This DM halo grew in mass earlier than the former one, and the central DM density was higher than that of the other even in the DM-only simulations.

Keywords

Cite

@article{arxiv.2601.13765,
  title  = {SIRIUS: Dark matter cusp evolution in dense dwarf galaxies},
  author = {Katsuhiro Kaneko and Takayuki R. Saitoh and Yutaka Hirai and Michiko S. Fujii},
  journal= {arXiv preprint arXiv:2601.13765},
  year   = {2026}
}

Comments

15 pages, 16 figures, 6 tables, submitted to PASJ

R2 v1 2026-07-01T09:12:08.174Z