English

Constraining Sterile Neutrinos Using Reactor Neutrino Experiments

High Energy Physics - Phenomenology 2014-08-25 v2

Abstract

Models of neutrino mixing involving one or more sterile neutrinos have resurrected their importance in the light of recent cosmological data. In this case, reactor antineutrino experiments offer an ideal place to look for signatures of sterile neutrinos due to their impact on neutrino flavor transitions. In this work, we show that the high-precision data of the Daya Bay experi\-ment constrain the 3+1 neutrino scenario imposing upper bounds on the relevant active-sterile mixing angle sin22θ140.06\sin^2 2 \theta_{14} \lesssim 0.06 at 3σ\sigma confidence level for the mass-squared difference Δm412\Delta m^2_{41} in the range (103,101)eV2(10^{-3},10^{-1}) \, {\rm eV^2}. The latter bound can be improved by six years of running of the JUNO experiment, sin22θ140.016\sin^22\theta_{14} \lesssim 0.016, although in the smaller mass range Δm412(104,103)eV2 \Delta m^2_{41} \in (10^{-4} ,10^{-3}) \, {\rm eV}^2. We have also investigated the impact of sterile neutrinos on precision measurements of the standard neutrino oscillation parameters θ13\theta_{13} and Δm312\Delta m^2_{31} (at Daya Bay and JUNO), θ12\theta_{12} and Δm212\Delta m^2_{21} (at JUNO), and most importantly, the neutrino mass hierarchy (at JUNO). We find that, except for the obvious situation where Δm412Δm312\Delta m^2_{41}\sim \Delta m^2_{31}, sterile states do not affect these measurements substantially.

Keywords

Cite

@article{arxiv.1405.6540,
  title  = {Constraining Sterile Neutrinos Using Reactor Neutrino Experiments},
  author = {Ivan Girardi and Davide Meloni and Tommy Ohlsson and He Zhang and Shun Zhou},
  journal= {arXiv preprint arXiv:1405.6540},
  year   = {2014}
}

Comments

23 pages, 9 figures, more discussions added, matches the published version

R2 v1 2026-06-22T04:23:15.649Z