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Cosmology-friendly time-varying neutrino masses via the sterile neutrino portal

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arxiv 2205.08431 v2 pith:BSA4KRV2 submitted 2022-05-17 hep-ph astro-ph.COhep-ex

classification hep-phastro-ph.COhep-ex
keywords neutrinotime-varyingmassessterileexperimentsbestgalliumimpact
verification ladder T0 review T1 audit T2 compute T3 formal
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We investigate a consistent scenario of time-varying neutrino masses, and discuss its impact on cosmology, beta decay, and neutrino oscillation experiments. Such time-varying masses are assumed to be generated by the coupling between a sterile neutrino and an ultralight scalar field, which in turn affects the light neutrinos by mixing. Besides, the scalar could act as an ultralight dark matter candidate. We demonstrate how various cosmological bounds, such as those coming from Big Bang nucleosynthesis, the cosmic microwave background, as well as large scale structures, can be evaded in this model. This scenario can be further constrained using multiple terrestrial experiments. In particular, for beta-decay experiments like KATRIN, non-trivial distortions to the electron spectrum can be induced, even when time-variation is fast and gets averaged out. Furthermore, the presence of time-varying masses of sterile neutrinos will alter the interpretation of light sterile neutrino parameter space in the context of the reactor and gallium anomalies. In addition, we also study the impact of such time-varying neutrino masses on results from the BEST collaboration, which have recently strengthened the gallium anomaly. If confirmed, we find that the time-varying neutrino mass hypothesis could give a better fit to the recent BEST data.

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Cited by 2 Pith papers

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  1. Ultralight dark matter search in a large liquid scintillator detector

    hep-ph 2025-12 conditional novelty 5.0 of 10

    A JUNO-like detector could constrain the neutrino–ultralight-dark-matter oscillation-modulation parameters to ηΔ21 < 2.5×10^-2 and ηΔ31 < 5×10^-3 at 90% CL.

  2. Dynamic Neutrino Mass Ordering and Its Imprint on the Diffuse Supernova Neutrino Background

    hep-ph 2025-01 conditional novelty 4.0 of 10

    A toy model where neutrino mass ordering flips with redshift reshapes the electron-neutrino part of the diffuse supernova neutrino background in an energy-dependent way, but the effect is below near-future experimental reach.

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