Fuel-composition dependent reactor antineutrino yield at RENO
Abstract
We report a fuel-dependent reactor electron antineutrino () yield using six 2.8 GW reactors in the Hanbit nuclear power plant complex, Yonggwang, Korea. The analysis uses candidate events with a background fraction of 2.0 % acquired through inverse beta decay (IBD) interactions in the near detector for 1807.9 live days from August 2011 to February 2018. Based on multiple fuel cycles, we observe a fuel U dependent variation of measured IBD yields with a slope of cm/fission and measure a total average IBD yield of cm/fission. The hypothesis of no fuel-dependent IBD yield is ruled out at 6.6 . The observed IBD yield variation over U isotope fraction does not show significant deviation from the Huber-Mueller (HM) prediction at 1.3 . The measured fuel-dependent variation determines IBD yields of cm/fission and cm/fission for two dominant fuel isotopes U and Pu, respectively. The measured IBD yield per U fission shows the largest deficit relative to the HM prediction. Reevaluation of the U IBD yield per fission may mostly solve the Reactor Antineutrino Anomaly (RAA) while Pu is not completely ruled out as a possible contributor of the anomaly. We also report a 2.9 correlation between the fractional change of the 5 MeV excess and the reactor fuel isotope fraction of U.
Cite
@article{arxiv.1806.00574,
title = {Fuel-composition dependent reactor antineutrino yield at RENO},
author = {The RENO Collaboration},
journal= {arXiv preprint arXiv:1806.00574},
year = {2019}
}
Comments
6 pages and 5 figures, v4 note: (1) data files for figure 1, figure 2, figure 5 are included for arXiv users (2) minor modifications in abstract and main text for clarification