Right Handed Neutrinos, TeV Scale BSM Neutral Higgs and FIMP Dark Matter in EFT Framework
arXiv:2104.04373 · doi:10.1103/PhysRevD.104.055047
Abstract
We consider an effective field theory framework with three standard model (SM) gauge singlet right handed neutrinos, and an additional SM gauge singlet scalar field. The framework successfully generates eV masses of the light neutrinos via seesaw mechanism, and accommodates a feebly interacting massive particle (FIMP) as dark matter candidate. Two of the gauge singlet neutrinos participate in neutrino mass generation, while the third gauge singlet neutrino is a FIMP dark matter. We explore the correlation between the of the gauge singlet scalar field which translates as mass of the BSM Higgs, and the mass of dark matter, which arises due to relic density constraint. We furthermore explore the constraints from the light neutrino masses in this set-up. We chose the gauge singlet BSM Higgs in this framework in the TeV scale. We perform a detailed collider analysis to analyse the discovery prospect of the TeV scale BSM Higgs through its di-fatjet signature, at a future collider which can operate with TeV c.m.energy.
39 pages, 15 figures
References in corpus (25)
- The automated computation of tree-level and next-to-leading order differential cross sections, and their matching to parton shower simulations
- An Introduction to PYTHIA 8.2
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- LHC Phenomenology of an Extended Standard Model with a Real Scalar Singlet
- HiggsBounds-5: Testing Higgs Sectors in the LHC 13 TeV Era
- New Physics in LHC Higgs boson pair production
- Singlet fermionic dark matter
- Standard Model Higgs boson pair production in the final state
- The minimal model of fermionic dark matter
- Search for heavy resonances decaying into a pair of bosons in the and final states using 139 fb of proton-proton collisions at TeV with the ATLAS detector
- FIMP realization of the scotogenic model
- Search for heavy diboson resonances in semileptonic final states in collisions at TeV with the ATLAS detector
- Freeze-in Production of Sterile Neutrino Dark Matter in U(1) Model
- Effective Theory of Freeze-in Dark Matter
- Neutrino dark matter and the Higgs portal: improved freeze-in analysis
- Non-resonant Higgs pair production in the final state at the LHC
- Displaced new physics at colliders and the early universe before its first second
- Boosting Ultraviolet Freeze-in in NO Models
- Measuring the Higgs self-coupling via Higgs-pair production at a 100 TeV p-p collider
- Dark Matter Abundance from Sequential Freeze-in Mechanism
- Invisible Decays in Higgs Pair Production
- Search for the process via vector-boson fusion production using proton-proton collisions at TeV with the ATLAS detector
- Effective Theories with Dark Matter Applications
- Measuring the trilinear Higgs boson self--coupling at the 100 TeV hadron collider via multivariate analysis
- Relativistic Freeze-in with Scalar Dark Matter in a Gauged Model and Electroweak Symmetry Breaking
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- Testing electroweak scale seesaw models at and colliders
- Revisiting sterile neutrino dark matter in gauged model
- Sterile neutrino dark matter with dipole interaction
- Sterile neutrino dark matter: relativistic freeze-out
- Dark Matter Freeze-In with a Heavy Mediator: Beyond the EFT Approach
- Direct production of SM-singlet scalars at the muon collider
- Generation of neutrino dark matter, baryon asymmetry, and radiation after quintessential inflation
- Illuminating Scalar Dark Matter Co-Scattering in EFT with Monophoton Signatures