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Ultra-light scalar saving the 3+1 neutrino scheme from the cosmological bounds

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arxiv 1907.04271 v3 pith:RLJ3ZRPV submitted 2019-07-09 hep-ph

classification hep-ph
keywords neutrinoearlyneutrinosscalarsterileuniversecontributioncosmological
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abstract

The LSND and MiniBooNE results as well as the reactor and Gallium anomalies seem to indicate the presence of a sterile neutrino with a mass of $\sim 1$ eV mixed with active neutrinos. Such sterile neutrino can be produced in the early universe before the neutrino decoupling, leading to a contribution to the effective number of neutrinos ($N_{eff}$) as well as to a contribution to the sum of neutrino masses which are in tension with cosmological observations. We propose a scenario to relax this tension by a Yukawa coupling of the sterile neutrinos to ultra-light scalar particles which contribute to the dark matter in the background. The coupling induces an effective mass for $\nu_s$ which prevents its production in the early universe. We discuss the implications for the upcoming KATRIN experiment and future relic neutrino search experiments such as PTOLEMY. We also briefly comment on certain non-renormalizable forms of interaction between $\nu_s$ and the scalar and their consequences for the $\nu_s$ production in the early universe.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Sterile Neutrino Dark Matter as a Probe of Inflationary Reheating

    hep-ph 2026-01 conditional novelty 5.0 of 10

    Inflaton decays during reheating can produce all of the observed sterile-neutrino dark matter with a branching ratio below 10^-4, evading X-ray bounds and making a future X-ray line a probe of the inflaton mass and re...

  2. Viable secret neutrino interactions with ultralight dark matter

    hep-ph 2019-08 accept novelty 4.0 of 10

    Cosmological limits still allow an eV-scale sterile neutrino if ultralight dark matter gives it a large early-universe mass, with an early mass above about 160 eV.

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