English

Severely Constraining Dark Matter Interpretations of the 21-cm Anomaly

High Energy Physics - Phenomenology 2018-07-11 v1 Cosmology and Nongalactic Astrophysics Astrophysics of Galaxies High Energy Astrophysical Phenomena Instrumentation and Methods for Astrophysics

Abstract

The EDGES Collaboration has recently reported the detection of a stronger-than-expected absorption feature in the global 21-cm spectrum, centered at a frequency corresponding to a redshift of z ~ 17. This observation has been interpreted as evidence that the gas was cooled during this era as a result of scattering with dark matter. In this study, we explore this possibility, applying constraints from the cosmic microwave background, light element abundances, Supernova 1987A, and a variety of laboratory experiments. After taking these constraints into account, we find that the vast majority of the parameter space capable of generating the observed 21-cm signal is ruled out. The only range of models that remains viable is that in which a small fraction, ~ 0.3-2%, of the dark matter consists of particles with a mass of ~ 10-80 MeV and which couple to the photon through a small electric charge, epsilon ~ 10^{-6}-10^{-4}. Furthermore, in order to avoid being overproduced in the early universe, such models must be supplemented with an additional depletion mechanism, such as annihilations through a L_{\mu}-L_{\tau} gauge boson or annihilations to a pair of rapidly decaying hidden sector scalars.

Keywords

Cite

@article{arxiv.1803.02804,
  title  = {Severely Constraining Dark Matter Interpretations of the 21-cm Anomaly},
  author = {Asher Berlin and Dan Hooper and Gordan Krnjaic and Samuel D. McDermott},
  journal= {arXiv preprint arXiv:1803.02804},
  year   = {2018}
}

Comments

7 pgs, 3