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CP-Violation and Non-Standard Interactions at the MOMENT
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abstract
To measure the last unknown $3\nu$ oscillation parameter ($\delta$), several long baseline neutrino experiments have been designed or proposed. Recently it has been shown that turning on neutral current Non-Standard Interactions (NSI) of neutrinos with matter can induce degeneracies that may even hinder the proposed state-of-the-art DUNE long baseline experiment from measuring the value of $\delta$. We study how the result of the proposed MOMENT experiment with a baseline of 150 km and $200~{\rm MeV}<E_\nu<600~{\rm MeV}$ can help to solve the degeneracy induced by NSI and determine the true value of $\delta$.
Forward citations
Cited by 3 Pith papers
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Flavorful Interactions of AGN Neutrinos with Dark Matter Spike
IceCube-Gen2 flavor ratios can discriminate a U(1) neutrino–dark-matter model in AGN spikes from the standard (1/3:1/3:1/3) and muon-damped predictions, and, combined with mass-ordering and tau-decay data, constrain t...
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Neutrino mass ordering obscured by non-standard interactions
Allowing electron-tau non-standard neutrino interactions in the T2K and NOvA data removes the preference for normal mass ordering and even creates a mild preference for inverted ordering.
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Precision measurements on $\delta_\text{CP}$ in MOMENT
A simulation of the proposed MOMENT experiment estimates a 1 sigma precision of roughly 10 to 15 degrees on delta_CP, improving to about 12 degrees or better when MOMENT data are combined with DUNE and T2HK.
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