Right sneutrino with masses as non-thermal dark matter
arXiv:1807.04964 · doi:10.1103/PhysRevD.99.035018
Abstract
We consider MSSM with right-chiral neutrino superfields with Majorana masses, where the lightest right-handed sneutrino dominated scalars constitutes non-thermal dark matter (DM). The masses are subject to severe constraints coming from freeze-in relic density of such DM candidates as well as from sterile neutrino . In addition, big-bang Nucleosynthesis and of the next-to-lightest superparticle shrink the viable parameter space of such a scenario. We examine various mass terms for families other than that masses are difficult to reconcile with a right-sneutrino DM, unless there is either (a) a hierarchy of about 3 orders of magnitudes among various supersymmetry-breaking mass parameters, or, (b) strong cancellation between the higgsino mass and the trilinear supersymmetry breaking mass parameter for sneutrinos.
15 pages, 12 figure, 1 Table, Version matches the version published in Physical Review D
References in corpus (34)
- Combined Measurement of the Higgs Boson Mass in Collisions at and 8 TeV with the ATLAS and CMS Experiments
- Precise determination of the mass of the Higgs boson and tests of compatibility of its couplings with the standard model predictions using proton collisions at 7 and 8 TeV
- Updated fit to three neutrino mixing: exploring the accelerator-reactor complementarity
- The Dawn of FIMP Dark Matter: A Review of Models and Constraints
- Primordial Nucleosynthesis: from precision cosmology to fundamental physics
- Big Bang Nucleosynthesis Constraints on Hadronically and Electromagnetically Decaying Relic Neutral Particles
- Flavour Matters in Leptogenesis
- Non-unitarity of the leptonic mixing matrix: Present bounds and future sensitivities
- A lower bound on the mass of Dark Matter particles
- Constraints from Ly- forests on non-thermal dark matter including resonantly-produced sterile neutrinos
- Baryon Asymmetry of the Universe in the NuMSM
- Measurement of the Higgs boson mass in the and channels with TeV collisions using the ATLAS detector
- Dark Matter Freeze-in Production in Fast-Expanding Universes
- Right-Handed Sneutrino as Cold Dark Matter of the Universe
- Right-handed Sneutrinos as Nonthermal Dark Matter
- FIMP realization of the scotogenic model
- Probing the scotogenic FIMP at the LHC
- Non-universal BBN bounds on electromagnetically decaying particles
- Gravitino Dark Matter and general neutralino NLSP
- (Non-)thermal production of WIMPs during kination
- A New Viable Region of Inert Higgs Doublet Dark Matter Model with Scotogenic Extension
- Kinetic decoupling of WIMPs: analytic expressions
- Common Origin of Dirac Neutrino Mass and Freeze-in Massive Particle Dark Matter
- Right-chiral sneutrinos and long-lived staus: event characteristics at the Large Hadron Collider
- Resonant production of the sterile neutrino dark matter and fine-tunings in the [nu]MSM
- Long-lived stau, sneutrino dark matter and right-slepton spectrum
- Heavy stable charged tracks as signatures of non-thermal dark matter at the LHC : a study in some non-supersymmetric scenarios
- When Freeze-out Precedes Freeze-in: Sub-TeV Fermion Triplet Dark Matter with Radiative Neutrino Mass
- Right sneutrinos and the signals of a stable stop at the Large Hadron Collider
- Natural SUSY at LHC with Right-Sneutrino LSP
- Long-Lived BLSSM Particles at the LHC
- Comment on "Kinetic decoupling of WIMPs: Analytic expressions"
- Reconstruction of the left-chiral tau-sneutrino in supersymmetry with a right-sneutrino as the lightest supersymmetric particle
- Sneutrino Dark Matter, Constraints and Perspectives
Cited by in corpus (7)
- Suppressing the Scattering of WIMP DM with Nucleons in Supersymmetric Theories
- Scalar neutrino dark matter in SSM
- Revisiting (s)neutrino dark matter in natural SUSY
- Dark matter candidates in the NMSSM with RH neutrino superfields
- Light neutralino dark matter in SSM
- Gamma-ray signals from multicomponent scalar dark matter decays
- Right-handed sneutrino and gravitino multicomponent dark matter in light of neutrino detectors