English

Constraints on nature of ultra light dark matter particles with 21cm forest

Cosmology and Nongalactic Astrophysics 2020-02-18 v2

Abstract

The ultra-light scalar fields can arise ubiquitously, for instance, as a result of the spontaneous breaking of an approximate symmetry such as the axion and more generally the axion-like particles. In addition to the particle physics motivations, these particles can also play a major role in cosmology by contributing to dark matter abundance and affecting the structure formation at sub-Mpc scales. In this paper, we propose to use the 21cm forest observations to probe the nature of ultra-light dark matter. The 21cm forest can probe much smaller scales than the Lyman-α\alpha forest, that is, k10Mpc1k\gtrsim 10\mathrm{Mpc}^{-1}. We explore the range of the ultra-light dark matter mass mum_{u} and fuf_u, the fraction of ultra-light dark matter with respect to the total matter, which can be probed by the 21cm forest. We find that 21cm forest can potentially put the dark matter mass lower bound mu1018m_u \gtrsim 10^{-18} eV for fu=1f_u=1, which is 3 orders of magnitude bigger mass scale than those probed by the current Lyman-α\alpha forest observations.While the effects of the ultra-light particles on the structure formation become smaller when the dominant component of dark matter is composed of the conventional cold dark matter, we find that the 21cm forest is still powerful enough to probe the sub-component ultra-light dark matter mass up to the order of 101910^{-19} eV. The Fisher matrix analysis shows that (mu,fu)(1020eV,0.3)(m_u,f_u)\sim (10^{-20}\mathrm{eV}, 0.3) is the most optimal parameter set which the 21cm forest can probe with the minimal errors for a sub-component ultra-light dark matter scenario.

Keywords

Cite

@article{arxiv.1910.06011,
  title  = {Constraints on nature of ultra light dark matter particles with 21cm forest},
  author = {Hayato Shimabukuro and Kiyotomo Ichiki and Kenji Kadota},
  journal= {arXiv preprint arXiv:1910.06011},
  year   = {2020}
}

Comments

13 pages, 9 figures. Published in PRD