Imprint of the seesaw mechanism on feebly interacting dark matter and the baryon asymmetry
arXiv:2104.02030 · doi:10.1103/PhysRevLett.127.231801
Abstract
We show that the type-I seesaw, responsible for generating the light neutrino mass, itself is capable of accommodating one of the three right handed neutrinos as a freeze-in type of dark matter (DM) where the required smallness of the associated coupling is connected to the lightness of the (smallest) active neutrino mass. It turns out that (a) the non-thermal production of DM having mass MeV (via decays of bosons and SM Higgs) consistent with relic density as well as (b) its stability determine this smallest active neutrino mass uniquely eV. On the other hand, the study of flavor leptogenesis in this scenario (taking into account the latest neutrino data and Higgs vacuum stability issue) fixes the scale of two other right handed neutrinos.
6 pages, 3 figures (Accepted for publication in Physical Review Letters )
References in corpus (9)
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- The Dawn of FIMP Dark Matter: A Review of Models and Constraints
- Sterile Neutrinos as the Origin of Dark and Baryonic Matter
- Determining the neutrino mass with Cyclotron Radiation Emission Spectroscopy - Project 8
- Direct X-ray Constraints on Sterile Neutrino Warm Dark Matter
- The Design, Construction, and Commissioning of the KATRIN Experiment
- Freeze-in Production of Sterile Neutrino Dark Matter in U(1) Model
- Cosmic Inflation in Minimal Model: Implications for (Non) Thermal Dark Matter and Leptogenesis
- Seesaw determination of the dark matter relic density
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