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Non-standard neutrino interactions and low energy experiments
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We formulate an Effective Field Theory (EFT) for Non Standard neutrino Interactions (NSI) in elastic scattering with light quarks, leptons, gluons and photons, including all possible operators of dimension 5, 6 and 7. We provide the expressions for the cross sections in coherent neutrino-nucleus scattering and in deep inelastic scattering. Assuming single operator dominance we constrain the respective Wilson coefficient using the measurements by the COHERENT and CHARM collaborations. We also point out the constraining power of future elastic neutrino-nucleus scattering experiments. Finally, we explore the implications of the bounds for SMEFT operators above the electroweak breaking scale.
Forward citations
Cited by 6 Pith papers
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Chiral Effective Field Theories for Strong and Weak Dynamics
The paper constructs complete and minimal relativistic operator bases for nucleon-nucleon, pion-nucleon-nucleon, and three-nucleon sectors up to p6, and a spurion-based leptonic sector up to p4, using Hilbert series a...
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EFT analysis of New Physics at COHERENT with Dirac neutrinos
COHERENT data can constrain flavor-general new physics in both neutrino production and detection once right-handed Dirac neutrinos are included, and the full rate reduces to a compact set of effective nuclear charges.
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Systematic Spurion Matching between Low Energy EFT and Chiral Lagrangian
A single SU(3)_V spurion can organize both LEFT and chiral Lagrangian operators up to dimension 9, enabling systematic operator-level matching between quark and hadron levels.
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From DUNE Sensitivities to UV Models: Implications of Flavour Constraints
Simple weakly-coupled BSM models cannot produce a DUNE-visible e-tau semileptonic NSI: flavour constraints cap C_lq,1311 at about 1e-2 TeV^-2, nearly an order below DUNE's reach.
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Searching for neutrino polarizability at DUNE
DUNE's near detector could probe new parameter space for enhanced neutrino polarizability in light-scalar models, mainly through single-forward-shower events from coherent argon scattering.
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Prospects for Exploring Non-Standard Neutrino Properties with Argon-Based CEvNS Experiments
Argon CEvNS detectors at stopped-pion sources project sin²θW precision near 1%, neutrino magnetic-moment limits near 10⁻⁹ μB, charge-radius limits near 10⁻³² cm², and vector NSI sensitivity at the 10⁻² level.
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