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Neutrino transition magnetic moments within the non-standard neutrino-nucleus interactions
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abstract
Tensorial non-standard neutrino interactions are studied through a combined analysis of nuclear structure calculations and a sensitivity $\chi^2$-type of neutrino events expected to be measured at the COHERENT experiment, recently planned to operate at the Spallation Neutron Source (Oak Ridge). Potential sizeable predictions on transition neutrino magnetic moments and other electromagnetic parameters, such as neutrino milli-charges, are also addressed. The non-standard neutrino-nucleus processes, explored from nuclear physics perspectives within the context of quasi-particle random phase approximation, are exploited in order to estimate the expected number of events originating from vector and tensor exotic interactions for the case of reactor neutrinos, studied with TEXONO and GEMMA neutrino detectors.
Forward citations
Cited by 2 Pith papers
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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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Neutrino nucleus Quasi-Elastic and resonant Neutral Current scatterings with Non-Standard Interactions
Axial non-standard neutrino interactions can mimic or be disentangled from nucleon form-factor effects in neutral-current quasi-elastic and resonance scattering, and tau-flavor couplings may already be bounded by KamL...
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