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Further evidence for a population of dark-matter-deficient dwarf galaxies

Astrophysics of Galaxies 2019-12-05 v2 Cosmology and Nongalactic Astrophysics

Abstract

In the standard cosmological model, dark matter drives the structure formation and constructs potential wells within which galaxies may form. The baryon fraction in dark halos can reach the universal value (15.7%) in massive clusters and decreases rapidly as the mass of the system decreases. The formation of dwarf galaxies is sensitive both to baryonic processes and the properties of dark matter owing to the shallow potential wells in which they form. In dwarf galaxies in the Local Group, dark matter dominates the mass content even within their optical-light half-radii (r_e ~ 1 kpc). However, recently it has been argued that not all dwarf galaxies are dominated by dark matter. Here we report 19 dwarf galaxies that could consist mainly of baryons up to radii well beyond r_e, at which point they are expected to be dominated by dark matter. Of these, 14 are isolated dwarf galaxies, free from the influence of nearby bright galaxies and high dense environments. This result provides observational evidence that could challenge the formation theory of low-mass galaxies within the framework of standard cosmology. Further observations, in particular deep imaging and spatially-resolved kinematics, are needed to constrain the baryon fraction better in such galaxies.

Keywords

Cite

@article{arxiv.1908.00046,
  title  = {Further evidence for a population of dark-matter-deficient dwarf galaxies},
  author = {Qi Guo and Huijie Hu and Zheng Zheng and Shihong Liao and Wei Du and Shude Mao and Linhua Jiang and Jing Wang and Yingjie Peng and Liang Gao and Jie Wang and Hong Wu},
  journal= {arXiv preprint arXiv:1908.00046},
  year   = {2019}
}

Comments

Published in Nature Astronomy on 25 November 2019, 27 pages including appendix, 7 figures