Neutrino mass and asymmetric dark matter: study with inert Higgs doublet and high scale validity
arXiv:2011.04371 · doi:10.1088/1475-7516/2021/03/037
Abstract
We consider an inert Higgs doublet (IHD) extension of the Standard Model accompanied with three right handed neutrinos and a dark sector, consisting of a singlet fermion and a scalar, in order to provide a common framework for dark matter, leptognesis and neutrino mass. While the Yukawa coupling of the right handed neutrinos with IHD (having mass in the intermediate regime: 80-500 GeV) is responsible for explaining the observed baryon asymmetry through leptogenesis, its coupling with the dark sector explains the dark matter relic density. The presence of IHD also explains the neutrino mass through radiative correction. We find that study of the high scale validity of the model in this context becomes crucial as it restricts the parameter space significantly. It turns out that there exists a small, but non-zero contribution to the relic density of DM from IHD too. Considering all the constraints from dark matter, leptogenesis, neutrino mass and high scale validity of the model, we perform a study to find out the viable parameter space.
37 pages, 10 figures, 4 tables, Accepted in JCAP
References in corpus (21)
- Results from a search for dark matter in the complete LUX exposure
- Leptogenesis
- Dark Matter Results From 54-Ton-Day Exposure of PandaX-II Experiment
- Improved Naturalness with a Heavy Higgs: An Alternative Road to LHC Physics
- Asymmetric Dark Matter
- Dark Matter Results from First 98.7-day Data of PandaX-II Experiment
- The oblique parameters in multi-Higgs-doublet models
- Flavour Matters in Leptogenesis
- Observing the Dark Scalar Doublet and its Impact on the Standard-Model Higgs Boson at Colliders
- Asymmetric Dark Matter from Leptogenesis
- Inert Doublet Model and LEP II Limits
- The Probable Fate of the Standard Model
- The Inert Dark Matter
- A new viable region of the inert doublet model
- A Simple Motivated Completion of the Standard Model below the Planck Scale: Axions and Right-Handed Neutrinos
- Dark Matter candidate in a Heavy Higgs Model - Direct Detection Rates
- A New Viable Region of Inert Higgs Doublet Dark Matter Model with Scotogenic Extension
- Viability of Dirac phase leptogenesis
- Asymmetric Dark Matter Models in SO(10)
- Lepton-Flavored Asymmetric Dark Matter and Interference in Direct Detection
- Secretly Asymmetric Dark Matter
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- Asymmetric self-interacting dark matter with a canonical seesaw model
- Freeze-in Dark Matter Through Forbidden Channel in
- Symmetry origin of Baryon Asymmetry, Dark Matter and Neutrino Mass
- Scalar Triplet Flavor Leptogenesis with Dark Matter
- Leptogenesis, Dark Matter and Gravitational Waves from Discrete Symmetry Breaking
- Gravitational Wave Spectral Shapes as a probe of Long Lived Right-handed Neutrinos, Leptogenesis and Dark Matter: Global versus Local B-L Cosmic Strings
- Leptogenesis assisted by scalar decays