Production of heavy sterile neutrinos from vector boson decay at electroweak temperatures
arXiv:1609.07647 · doi:10.1103/PhysRevD.95.043524
Abstract
In the standard model extended with a seesaw mass matrix, we study the production of sterile neutrinos from the decay of vector bosons at . We derive a general quantum kinetic equation for the production of sterile neutrinos and their effective mixing angles valid in a wide range of temperature, to all orders in interactions of the standard model, and to leading order mixing angle . Production rates and effective mixing angles depend sensitively on helicity. Positive helicity states interact more weakly with the medium and their effective mixing angle is not modified significantly whereas the mixing angle for negative helicity is strongly suppressed by the medium. If , there are fewer states with negative helicity produced than those with positive helicity. There is an MSW resonance in the absence of lepton asymmetry, but is screened by the damping rate, without production enhancement. Negative helicity states freeze-out at and positive helicity states freeze-out at , both distributions are far from thermal. Negative helicity states feature a broader momentum distribution than that for those with positive helicity. Sterile neutrinos produced via vector boson decay do not satisfy the abundance, lifetime and cosmological constraints to be the sole dark matter component in the universe but might solve the problem, albeit at the very edge of the possible parameter space. A heavy sterile neutrino with a mass of a few MeV could decay into light sterile neutrinos, of a few keV in mass, that contribute to warm dark matter. We argue that heavy sterile neutrinos with lifetime reach local thermodynamic equilibrium.
published version
References in corpus (41)
- Too big to fail? The puzzling darkness of massive Milky Way subhaloes
- Primordial Nucleosynthesis: from precision cosmology to fundamental physics
- How to find neutral leptons of the nuMSM?
- Dark-matter sterile neutrinos in models with a gauge singlet in the Higgs sector
- Left-Right Symmetry: from LHC to Neutrinoless Double Beta Decay
- Too Big to Fail in the Local Group
- Signatures for Majorana neutrinos at hadron colliders
- Is there a "too big to fail" problem in the field?
- Big Bang Nucleosynthesis as a Probe of New Physics
- Opening a new window for warm dark matter
- Sterile neutrino dark matter as a consequence of nuMSM-induced lepton asymmetry
- Discovery of a 3.5 keV line in the Galactic Center and a Critical Look at the Origin of the Line Across Astronomical Targets
- Direct Bounds on Electroweak Scale Pseudo-Dirac Neutrinos from TeV LHC Data
- Resonantly-Produced 7 keV Sterile Neutrino Dark Matter Models and the Properties of Milky Way Satellites
- On the hadronic contribution to sterile neutrino production
- Strongest model-independent bound on the lifetime of Dark Matter
- Heavy neutrinos and the CMS data
- Search for a Light Sterile Neutrino at Daya Bay
- The emptiness of voids: yet another over-abundance problem for the LCDM model
- keV Sterile Neutrino Dark Matter from Singlet Scalar Decays: Basic Concepts and Subtle Features
- Strong Upper Limits on Sterile Neutrino Warm Dark Matter
- The phase space density of fermionic dark matter haloes
- Non-universal BBN bounds on electromagnetically decaying particles
- Clustering properties of a sterile neutrino dark matter candidate
- Revisiting cosmological bounds on sterile neutrinos
- Small-scale structure formation properties of chilled sterile neutrinos as dark matter
- in low-scale seesaw models versus the lightest neutrino mass
- MeV sterile neutrinos in low reheating temperature cosmological scenarios
- A New Direction in Dark-Matter Complementarity: Dark-Matter Decay as a Complementary Probe of Multi-Component Dark Sectors
- Right-handed neutrino production rate at T > 160 GeV
- Effective Field Theory out of Equilibrium: Brownian quantum fields
- A loophole to the universal photon spectrum in electromagnetic cascades: application to the "cosmological lithium problem"
- New limits on radiative sterile neutrino decays from a search for single photons in neutrino interactions
- Nearly degenerate heavy sterile neutrinos in cascade decay: mixing and oscillations
- Cosmological Implications of Light Sterile Neutrinos produced after the QCD Phase Transition
- Effects of Long-lived 10 MeV Scale Sterile Neutrino on Primordial Elemental Abundances and Effective Neutrino Number
- Cosmology and Neutrino Properties
- Constraining Sterile Neutrinos Using Reactor Neutrino Experiments
- The LSND/MiniBooNe excess events and heavy neutrino from muon and kaon decays
- Space-time evolution of heavy sterile neutrinos in cascade decays
- Space-time propagation of neutrino wave packets at high temperature and density