English

Is nonstandard interaction a solution to the three neutrino tensions?

High Energy Physics - Phenomenology 2016-09-15 v1

Abstract

In this work we present a scenario in which a nonstandard interaction in neutrino propagation can explain the three major tensions in the neutrino oscillation data at present. These tensions are: (i) a non-zero best-fit value of the non-standard oscillation parameters in the the global analysis of the solar and KamLAND data which rules out the standard oscillation scenario at 90%90\% C.L, (ii) the measurement of the non-maximal value of θ23\theta_{23} by NOν\nuA which excludes the maximal mixing at 2.5σ2.5 \sigma C.L. and (iii) a discrepancy in the θ13\theta_{13} measurement by T2K which has a tension with the reactor best-fit value of sin2θ13=0.021\sin^2\theta_{13}=0.021 at 90%90\% C.L. Our results show that all these three above mentioned anomalies can be explained if one assumes the existence of the non-standard interactions in neutrino propagation with θ23=45\theta_{23}=45^\circ and sin2θ13=0.021\sin^2\theta_{13}=0.021 in the case of normal hierarchy. In our scenario the phase of ϵeτ\epsilon_{e\tau} is zero and the most favorable value of the Dirac CP phase is approximately 255255^\circ.

Keywords

Cite

@article{arxiv.1609.04204,
  title  = {Is nonstandard interaction a solution to the three neutrino tensions?},
  author = {Shinya Fukasawa and Monojit Ghosh and Osamu Yasuda},
  journal= {arXiv preprint arXiv:1609.04204},
  year   = {2016}
}

Comments

4 pages, 2 figures, 2 tables