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Neutrino Non-Standard Interactions via Light Scalars in the Earth, Sun, Supernovae and the Early Universe

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arxiv 1912.13488 v3 pith:4WQELTPG submitted 2019-12-31 hep-ph astro-ph.COhep-ex

classification hep-phastro-ph.COhep-ex
keywords neutrinoscalarconstraintseffectssupernovaeapplicablecosmologicaldata
verification ladder T0 review T1 audit T2 compute T3 formal
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Non-standard interactions (NSI) of neutrinos with matter mediated by a scalar field would induce medium-dependent neutrino masses which can modify oscillation probabilities. Generating observable effects requires an ultra-light scalar mediator. We derive general expressions for the scalar NSI using techniques of quantum field theory at finite density and temperature, including the long-range force effects, and discuss various limiting cases applicable to the neutrino propagation in different media, such as the Earth, Sun, supernovae and early Universe. We also analyze various terrestrial and space-based experimental constraints, as well as astrophysical and cosmological constraints on these NSI parameters, applicable to either Dirac or Majorana neutrinos. By combining all these constraints, we show that observable scalar NSI effects, although precluded in terrestrial experiments, are still possible in future solar and supernovae neutrino data, and in cosmological observations such as cosmic microwave background and big bang nucleosynthesis data.

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