Neutrino-oscillation experiments at the Gösgen nuclear power reactor

G. Zacek, F. V. Feilitzsch, R. L. Mössbauer, L. Oberauer, V. Zacek, F. Boehm, P. H. Fisher, J. L. Gimlett, A. A. Hahn, H. E. Henrikson, H. Kwon, J. L. Vuilleumier, K. Gabathuler

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256 Scopus citations

Abstract

A search for neutrino oscillations has been conducted at the 2800-MW (thermal) nuclear power reactor in Gösgen (Switzerland), providing 5×1020 electron antineutrinos per second. The energy spectrum of the antineutrinos was measured at three distances, 37.9, 45.9, and 64.7 m, from the reactor core. The detection of the neutrinos is based on the reaction »e+pe++n. Roughly 104 antineutrinos were registered at each of the three measuring positions. The measured spectra are analyzed in terms of a two-neutrino oscillation model and the results are represented as exclusion plots for the oscillation parameters m2 and sin22theta. Two analyses are performed: Analysis A relies exclusively on the data measured at the three different distances; analysis B combines the measured data with additional information, in particular with the reactor antineutrino spectrum as derived from independent -spectroscopic measurements. Both analyses show that the data are consistent with the absence of neutrino oscillations, and rule out large regions of parameters (m2,theta). The resulting limits on the oscillation parameters are m2<0.019 eV2 (90% C.L.) for maximum mixing and sin22theta<0.21 (90% C.L.) for m2>5 eV2.

Original languageEnglish
Pages (from-to)2621-2636
Number of pages16
JournalPhysical Review D
Volume34
Issue number9
DOIs
StatePublished - 1986

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