English

Primordial black hole probes of heavy neutral leptons

High Energy Physics - Phenomenology 2025-03-11 v2 High Energy Astrophysical Phenomena

Abstract

Primordial black holes (PBH), while still constituting a viable dark matter component, are expected to evaporate through Hawking radiation. Assuming the semi-classical approximation holds up to near the Planck scale, PBHs are expected to evaporate by the present time, emitting a significant flux of particles in their final moments, if produced in the early Universe with an initial mass of 1015\sim 10^{15} g. These ``exploding'' black holes will release a burst of Standard Model particles alongside any additional degrees of freedom, should they exist. We explore the possibility that heavy neutral leptons (HNL), mixing with active neutrinos, are emitted in the final evaporation stages. We perform a multimessenger analysis. We calculate the expected number of active neutrinos from such an event, including contributions due to the HNL decay for different assumptions on the mixings, that could be visible in IceCube. We also estimate the number of gamma-ray events expected at HAWC. By combining the two signals, we infer sensitivities on the active-sterile neutrino mixing and on the sterile neutrino mass. We find that, for instance, for the scenario where Uτ40U_{\tau 4}\neq 0, IceCube and HAWC could improve current constraints by a few orders of magnitude, for HNLs masses between 0.1 - 1 GeV, and a PBH explosion occurring at a distance of 104\sim 10^{-4} pc from Earth.

Keywords

Cite

@article{arxiv.2405.00124,
  title  = {Primordial black hole probes of heavy neutral leptons},
  author = {Valentina De Romeri and Yuber F. Perez-Gonzalez and Agnese Tolino},
  journal= {arXiv preprint arXiv:2405.00124},
  year   = {2025}
}

Comments

27 pages, 5 figures. v2: includes multimessenger analysis and correction of the time-integrated spectrum of neutrinos. Main conclusions qualitatively unchanged, refined sensitivities in the heavy-mass regime. Matches version published in JCAP