English

Results from the Palo Verde Neutrino Oscillation Experiment

High Energy Physics - Experiment 2019-08-17 v1

Abstract

The \nuebar\nuebar flux and spectrum have been measured at a distance of about 800 m from the reactors of the Palo Verde Nuclear Generating Station using a segmented Gd-loaded liquid scintillator detector. Correlated positron-neutron events from the reaction \nuebar\nuebarp\toe^+n were recorded for a period of 200 d including 55 d with one of the three reactors off for refueling. Backgrounds were accounted for by making use of the reactor-on and reactor-off cycles, and also with a novel technique based on the difference between signal and background under reversal of the e^+ and n portions of the events. A detailed description of the detector calibration, background subtraction, and data analysis is presented here. Results from the experiment show no evidence for neutrino oscillations. \nuebarνˉx\nuebar\to\bar\nu_x oscillations were excluded at 90% CL for \dm>1.12×103\dm>1.12\times10^{-3} eV^2 for full mixing, and \sinq>0.21\sinq>0.21 for large \dm\dm. These results support the conclusion that the observed atmospheric neutrino oscillations does not involve νe\nu_{\rm e}.

Keywords

Cite

@article{arxiv.hep-ex/0003022,
  title  = {Results from the Palo Verde Neutrino Oscillation Experiment},
  author = {F. Boehm and J. Busenitz and B. Cook and G. Gratta and H. Henrikson and J. Kornis and D. Lawrence and K. B. Lee and K. McKinny and L. Miller and V. Novikov and A. Piepke and B. Ritchie and D. Tracy and P. Vogel and Y-F. Wang and J. Wolf},
  journal= {arXiv preprint arXiv:hep-ex/0003022},
  year   = {2019}
}

Comments

19 pages, 24 figures, 7 tables