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Simple estimate of BBN sensitivity to light freeze-in dark matter

High Energy Physics - Phenomenology 2021-12-22 v2

Abstract

We provide a simple analysis of the big-bang nucleosynthesis (BBN) sensitivity to the light dark matter (DM) generated by the thermal freeze-in mechanism. It is shown that the ratio of the effective neutrino number shift ΔNν\Delta N_{\nu} over the DM relic density ωΩh2\omega\equiv \Omega h^2, denoted by RχΔNν/ωR_\chi\equiv\Delta N_\nu/\omega, cancels the decaying particle mass and the feeble coupling, rendering therefore a simple visualization of ΔNν\Delta N_{\nu} at the BBN epoch in terms of the DM mass. This property drives one to conclude that the shift with a sensitivity of ΔNνO(0.1)\Delta N_{\nu}\simeq \mathcal{O}(0.1) cannot originate from a single warm DM under the Lyman-α\alpha forest constraints. For the cold-plus-warm DM scenarios where the Lyman-α\alpha constraints are diluted, the ratio RχR_\chi can be potentially used to test the thermal freeze-in mechanism in generating a small warm component of DM and a possible excess at the level of ΔNνO(0.01)\Delta N_{\nu}\simeq \mathcal{O}(0.01).

Keywords

Cite

@article{arxiv.2106.07122,
  title  = {Simple estimate of BBN sensitivity to light freeze-in dark matter},
  author = {Shao-Ping Li and Xin-Qiang Li and Xin-Shuai Yan and Ya-Dong Yang},
  journal= {arXiv preprint arXiv:2106.07122},
  year   = {2021}
}

Comments

7 pages, 1 figure; more discussions and references added, final version published in the journal