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Measurement of reactor antineutrino oscillation amplitude and frequency at RENO

Cited 115 time in Web of Science Cited 137 time in Scopus
Authors

Bak, G.; Choi, J. H.; Jang, H. I.; Jang, J. S.; Jeon, S. H.; Joo, K. K.; Ju, K.; Jung, D. E.; Kim, J. G.; Kim, J. H.; Kim, J. Y.; Kim, S. B.; Kim, S. Y.; Kim, W.; Kwon, E.; Lee, D. H.; Lee, H. G.; Lee, Y. C.; Lim, I. T.; Moon, D. H.; Pac, M. Y.; Park, Y. S.; Rott, C.; Seo, H.; Seo, J. W.; Seo, S. H.; Shin, C. D.; Yang, J. Y.; Yoo, J.; Yu, I.

Issue Date
2018-11
Publisher
American Physical Society
Citation
Physical Review Letters, Vol.121 No.20, p. 201801
Abstract
The RENO experiment reports more precisely measured values of theta(13) and vertical bar Delta m(ee)(2)vertical bar using similar to 2200 live days of data. The amplitude and frequency of reactor electron antineutrino ((nu) over bar (e)) oscillation are measured by comparing the prompt signal spectra obtained from two identical near and far detectors. In the period between August 2011 and February 2018, the far (near) detector observed 103 212 (850 666) (nu) over bar (e) candidate events with a background fraction of 4.8% (2.0%). A clear energy and baseline dependent disappearance of reactor (nu) over bar (e) is observed in the deficit of the measured number of (nu) over bar (e). Based on the measured far-to-near ratio of prompt spectra, we obtain sin(2)2 theta(13) = 0.0896 +/- 0.0048(stat) +/- 0.0047(syst) and vertical bar Delta m(ee)(2)vertical bar = [2.68 +/- 0.12(stat) +/- 0.07(syst)] x 10(-3) eV(2).
ISSN
0031-9007
Language
English
URI
https://hdl.handle.net/10371/149825
DOI
https://doi.org/10.1103/PhysRevLett.121.201801
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