English

Electron scattering of light new particles from evaporating primordial black holes

High Energy Physics - Phenomenology 2022-06-16 v3

Abstract

Primordial black holes are a possible component of dark matter, and a most promising way of investigating them is through the product of their Hawking evaporation. As a result of this process, any species lighter than the Hawking temperature is emitted, including possible new particles beyond the Standard Model. These can then be detected in lab-based experiments via their interaction with the Standard Model particles. In a previous work, we have first proposed and studied this scenario in the presence of an interaction between the light new species and nucleons. Here we extend this discussion to include the case of interaction with electrons. We show that the simultaneous presence of primordial black holes and species lighter than about 100100 MeV can be constrained by the measurements of direct detection experiments, such as XENON1T, and water Cherenkov neutrino detectors, such as Super-Kamiokande. Our results provide a complementary and alternative way of investigation with respect to cosmological and collider searches.

Keywords

Cite

@article{arxiv.2203.17093,
  title  = {Electron scattering of light new particles from evaporating primordial black holes},
  author = {Roberta Calabrese and Marco Chianese and Damiano F. G. Fiorillo and Ninetta Saviano},
  journal= {arXiv preprint arXiv:2203.17093},
  year   = {2022}
}

Comments

11 pages, 3 figures v2: version published in Physical Review D text typo corrects