English

The Reactor Antineutrino Anomaly

High Energy Physics - Experiment 2011-05-12 v4 High Energy Physics - Phenomenology

Abstract

Recently new reactor antineutrino spectra have been provided for 235U, 239Pu, 241Pu and 238U, increasing the mean flux by about 3 percent. To good approximation, this reevaluation applies to all reactor neutrino experiments. The synthesis of published experiments at reactor-detector distances <100 m leads to a ratio of observed event rate to predicted rate of 0.976(0.024). With our new flux evaluation, this ratio shifts to 0.943(0.023), leading to a deviation from unity at 98.6% C.L. which we call the reactor antineutrino anomaly. The compatibility of our results with the existence of a fourth non-standard neutrino state driving neutrino oscillations at short distances is discussed. The combined analysis of reactor data, gallium solar neutrino calibration experiments, and MiniBooNE-neutrino data disfavors the no-oscillation hypothesis at 99.8% C.L. The oscillation parameters are such that |Delta m_{new}^2|>1.5 eV^2 (95%) and sin^2(2\theta_{new})=0.14(0.08) (95%). Constraints on the theta13 neutrino mixing angle are revised.

Keywords

Cite

@article{arxiv.1101.2755,
  title  = {The Reactor Antineutrino Anomaly},
  author = {G. Mention and M. Fechner and Th. Lasserre and Th. A. Mueller and D. Lhuillier and M. Cribier and A. Letourneau},
  journal= {arXiv preprint arXiv:1101.2755},
  year   = {2011}
}

Comments

19 pages, 15 figures ; v2/3 include typos corrected ; v4 final version: add 5 Rovno & 2 Savannah River results + add additional constistency checks + add a discussion on the inverse beta decay cross section normlization

R2 v1 2026-06-21T17:12:01.837Z