Search for neutrino oscillations at a fission reactor
The energy spectrum of neutrinos from a fission reactor was studied with the aim of gaining information on neutrino oscillations. The well-shielded detector was set up at a fixed position of 8.76 m from the pointlike core of the Laue-Langevin reactor in an antineutrino flux of 9.8 x 10/sup 11/ cm/su...
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Veröffentlicht in: | Phys. Rev. D; (United States) 1981-01, Vol.24 (5), p.1097-1111 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The energy spectrum of neutrinos from a fission reactor was studied with the aim of gaining information on neutrino oscillations. The well-shielded detector was set up at a fixed position of 8.76 m from the pointlike core of the Laue-Langevin reactor in an antineutrino flux of 9.8 x 10/sup 11/ cm/sup -2/ s/sup -1/. The target protons in the reaction nu-bar/sub e/p..-->..e/sup +/n were provided by liquid-scintillator counters (total volume of 377 l) which also served as positron detectors. The product neutrons moderated in the scintillator were detected by /sup 3/He wire chambers. A coincidence signature was required between the prompt positron and the delayed neutron events. The positron energy resolution was 18% full width at half maximum at 0.91 MeV. The signal-to-background ratio was better than 1:1 between 2 and 6 MeV positron energy. At a counting rate of 1.58 counts per hour, 4890 +- 180 neutrino-induced events were detected. The shape of the measured positron spectrum was analyzed in terms of the parameters ..delta../sup 2/ and sin/sup 2/ 2theta for two-neutrino oscillations. The experimental data are consistent with no oscillations. An upper limit of 0.15 eV/sup 2/ (90% C.L.) for the mass-squared differences ..delta../sup 2/ of the neutrinos was obtained, assuming maximum mixing of the two-neutrino states. The ratio of the measured to the expected integral yield of positrons assuming no oscillations was determined to be ..integral..Y/sub exp//..integral..Y/sub th/ = 0.955 +- 0.035 (statistical) +- 0.110 (systematic). |
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ISSN: | 0556-2821 2470-0010 2470-0029 |
DOI: | 10.1103/PhysRevD.24.1097 |