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Using DUNE to shed light on the electromagnetic properties of neutrinos

V. S. Mathur, Ian M. Shoemaker, Zahra Tabrizi

2022Journal of High Energy Physics16 citationsDOIOpen Access PDF

Abstract

A bstract We study future DUNE sensitivity to various electromagnetic couplings of neutrinos, including magnetic moments, milli-charges, and charge radii. The DUNE PRISM capabilities play a crucial role in constraining the electron flavored couplings. We find that DUNE will be able to place the strongest beam based constraint on the muon-neutrino magnetic moment by improving on LSND’s bounds by roughly a factor of two, although Borexino’s constraint from solar neutrinos will be stronger. For the muon neutrino millicharge DUNE can place the leading beam based bound, with two orders of magnitude improvement compared to the existing COHERENT constraint, suggesting that DUNE can be useful for light mediators more generally. Despite this strength, the millicharge bounds are not competitive with strong bounds from stellar cooling, beta-decay, and matter stability. Finally, DUNE may be able to test the SM prediction for the muon neutrino charge radius, by placing a constraint two times better than CHARM-II and CCFR experiments.

Topics & Concepts

MuonPhysicsNeutrinoParticle physicsNuclear physicsMagnetic momentBorexinoRADIUSCharge (physics)Charm (quantum number)Constraint (computer-aided design)Solar neutrinoNeutrino oscillationCondensed matter physicsGeometryComputer scienceComputer securityMathematicsNeutrino Physics ResearchAstrophysics and Cosmic PhenomenaDark Matter and Cosmic Phenomena
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