Study of electron-neutrino-electron elastic scattering at LAMPF

Neutrino-electron elastic scattering was observed with a 15-ton fine-grained tracking calorimeter exposed to electron neutrinos from muon decay at rest. The measured [nu][sub [ital e]e][sup [minus]][r arrow][nu][sub [ital e]e][sup [minus]] elastic scattering rate of 236[plus minus]35 events yields t...

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Veröffentlicht in:Physical review. D, Particles and fields Particles and fields, 1993, Vol.47 (1), p.11-28
Hauptverfasser: ALLEN, R. C, CHEN, H. H, BURMAN, R. L, CARLINI, R. D, COCHRAN, D. R. F, FRANK, J. S, PIASETZKY, E, SANDBERG, V. D, KRAKAUER, D. A, TALAGA, R. L, DOE, P. J, HAUSAMMANN, R, LEE, W. P, LU, X. Q, MHALER, H. J, POTTER, M. E, WANG, K. C, BOWLES, T. J
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Sprache:eng
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Zusammenfassung:Neutrino-electron elastic scattering was observed with a 15-ton fine-grained tracking calorimeter exposed to electron neutrinos from muon decay at rest. The measured [nu][sub [ital e]e][sup [minus]][r arrow][nu][sub [ital e]e][sup [minus]] elastic scattering rate of 236[plus minus]35 events yields the total elastic scattering cross section 10.0[plus minus]1.5(stat)[plus minus]0.9(syst)[times]10[sup [minus]45] cm[sup 2][times][[ital E][sub [nu]] (MeV)], and a model-independent measurement of the strength of the destructive interference between the charged and neutral currents, [ital I]=[minus]1.07[plus minus]0.21, that agrees well with the standard model (SM) prediction [ital I]=[minus]1.08. The agreement between the measured electroweak parameters and SM expectations is used to place limits on neutrino properties, such as neutrino flavor-changing neutral currents and neutrino electromagnetic moments. Limits are placed on the masses of new bosons that interact with leptons: for a neutral tensor boson, [ital M][sub [ital T]][gt]105 GeV; for a neutral (pseudo)scalar boson, [ital M][sub [ital P],][ital S][gt]47 GeV; for a charged Higgs boson, [ital M][sub [chi]][sup +][gt]87 GeV; and for a purely left-handed charged (neutral) vector boson, [ital M][sub [ital x]][gt]239 (119) GeV.
ISSN:0556-2821
1089-4918
DOI:10.1103/PhysRevD.47.11