paper

Search for Majorana neutrinos with the first two years of EXO-200 data

arXiv:1402.6956 · doi:10.1038/nature13432

Abstract

Many extensions of the Standard Model of particle physics suggest that neutrinos should be Majorana-type fermions, but this assumption is difficult to confirm. Observation of neutrinoless double-beta decay (), a spontaneous transition that may occur in several candidate nuclei, would verify the Majorana nature of the neutrino and constrain the absolute scale of the neutrino mass spectrum. Recent searches carried out with Ge (GERDA experiment) and Xe (KamLAND-Zen and EXO-200 experiments) have established the lifetime of this decay to be longer than yr, corresponding to a limit on the neutrino mass of 0.2-0.4 eV. Here we report new results from EXO-200 based on 100 kgyr of Xe exposure, representing an almost fourfold increase from our earlier published datasets. We have improved the detector resolution at the Xe double-beta-decay Q-value to /E = 1.53% and revised the data analysis. The obtained half-life sensitivity is yr, an improvement by a factor of 2.7 compared to previous EXO-200 results. We find no statistically significant evidence for decay and set a half-life limit of yr at 90% CL. The high sensitivity holds promise for further running of the EXO-200 detector and future decay searches with nEXO.

9 pages, 6 figures