Revisiting cosmological bounds on sterile neutrinos
arXiv:1408.1956 · doi:10.1088/1475-7516/2015/04/006
Abstract
We employ state-of-the art cosmological observables including supernova surveys and BAO information to provide constraints on the mass and mixing angle of a non-resonantly produced sterile neutrino species, showing that cosmology can effectively rule out sterile neutrinos which decay between BBN and the present day. The decoupling of an additional heavy neutrino species can modify the time dependence of the Universe's expansion between BBN and recombination and, in extreme cases, lead to an additional matter-dominated period; while this could naively lead to a younger Universe with a larger Hubble parameter, it could later be compensated by the extra radiation expected in the form of neutrinos from sterile decay. However, recombination-era observables including the Cosmic Microwave Background (CMB), the shift parameter and the sound horizon from Baryon Acoustic Oscillations (BAO) severely constrain this scenario. We self-consistently include the full time-evolution of the coupled sterile neutrino and standard model sectors in an MCMC, showing that if decay occurs after BBN, the sterile neutrino is essentially bounded by the constraint .
16 pages. v2: substantial additions, including effect of decays to heavier species and complementary bounds
References in corpus (13)
- Supernova Constraints and Systematic Uncertainties from the First 3 Years of the Supernova Legacy Survey
- Global fit to three neutrino mixing: critical look at present precision
- CMB Constraints on WIMP Annihilation: Energy Absorption During the Recombination Epoch
- Unitarity of the Leptonic Mixing Matrix
- How to find neutral leptons of the nuMSM?
- Resonantly-Produced 7 keV Sterile Neutrino Dark Matter Models and the Properties of Milky Way Satellites
- Contraints on radiative dark-matter decay from the cosmic microwave background
- Constraints on Sterile Neutrino Dark Matter
- Strongest model-independent bound on the lifetime of Dark Matter
- How well do we understand cosmological recombination?
- The impacts of dark matter particle annihilation on recombination and the anisotropies of the cosmic microwave background
- in low-scale seesaw models versus the lightest neutrino mass
- Cosmological Constraints on Invisible Decay of Dark Matter
Cited by in corpus (21)
- The Present and Future Status of Heavy Neutral Leptons
- Mapping the viable parameter space for testable leptogenesis
- Effective portals to heavy neutral leptons
- Cosmological beam dump: constraints on dark scalars mixed with the Higgs boson
- Heavy neutral leptons in effective field theory and the high-luminosity LHC
- A Dark Matter Interpretation of the ANITA Anomalous Events
- Gauged Inverse Seesaw from Dark Matter
- Neutrino Constraints and the ATOMKI X17 Anomaly
- Search for Light Exotic Fermions in Double-Beta Decays
- Production of heavy sterile neutrinos from vector boson decay at electroweak temperatures
- Sterile neutrinos with non-standard interactions in - and -decay experiments
- Sterile neutrino dark matter in a U(1) extension of the standard model
- Sterile neutrino dark matter with dipole interaction
- Low-scale leptogenesis with flavour and CP symmetries
- Neutrino portals to MeV WIMPs with s-channel mediators
- Sensitivity of Future Tritium Decay Experiments to New Physics
- Confronting the low-scale seesaw and leptogenesis with neutrinoless double beta decay
- On the collider-testability of the type-I seesaw model with 3 right-handed neutrinos
- Prospects for Heavy Neutral Lepton Searches at Short and Medium Baseline Reactor Experiments
- Probing Solar Heavy Neutrinos with Heliospheric Electrons
- Right handed neutrino production from interactions in forward search experiments