arXiv · 2310.18401
Alleviating the present tension between T2K and NO$\nu$A with nonstandard neutrino interactions
Abstract
Since neutrino oscillation was observed, several experiments have been built to measure its parameters. NO$\nu$A and T2K are two long-baseline experiments dedicated to measuring mainly the mixing angle $\theta_{23}$, the charge-parity conjugation phase $\delta_{\rm CP}$, and the mass ordering. However, there is a tension in current data. The T2K allowed region is in conflict with the region allowed by NO$\nu$A. We propose a nonstandard charged current interaction (CC-NSI) in neutrino production to relieve this tension. The CC-NSI is computed through quantum field theory (QFT) formalism, where we derive perturbative analytical formulae considering CC-NSI in the pion decay. Within this new approach, we can alleviate NO$\nu$A and T2K tension for a CC-NSI complex parameters of order $10^{-3}$. We show the new phase has a degeneracy to the Dirac CP phase of the form $\delta_{\rm CP} \pm \phi= 1.5\pi$ being a possible source of violation of charge-parity symmetry.
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Adriano Cherchiglia, Pedro Pasquini, O. L. G. Peres, F. F. Rodrigues, R. R. Rossi, E. S. Souza. 2023-10-27. Alleviating the present tension between T2K and NO$\nu$A with nonstandard neutrino interactions. https://doi.org/10.1103/55qm-zbhv
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