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Evidence for μe Oscillations from the LSND Experiment at LAMPF

C. Athanassopoulos, L. B. Auerbach, R. L. Burman, I. Cohen, D. O. Caldwell, B. D. Dieterle, J. B. Donahue, A. M. Eisner, A. Fazely, F. J. Federspiel, G. T. Garvey, M. Gray, R. M. Gunasingha, R. Imlay, K. Johnston, H. J. Kim, W. C. Louis, R. Majkic, J. Margulies, K. McIlhany, W. Metcalf, G. B. Mills, R. A. Reeder, V. Sandberg, D. Smith, I. Stancu, W. Strossman, R. Tayloe, G. J. VanDalen, W. Vernon, N. Wadia, J. Waltz, Y-X. Wang, D. H. White, D. Works, Y. Xiao, S. Yellin, LSND Collaboration

nucl-exarXiv:nucl-ex/9605003

Abstract

A search for μ e oscillations has been conducted at the Los Alamos Meson Physics Facility by using μ from μ+ decay at rest. The e are detected via the reaction e\,p → e+\,n, correlated with a γ from np→ dγ (2.2\, MeV). The use of tight cuts to identify e+ events with correlated γ rays yields 22 events with e+ energy between 36 and 60\, MeV and only 4.6 0.6 background events. A fit to the e+ events between 20 and 60\, MeV yields a total excess of 51.8+18.7-16.9 8.0 events. If attributed to μ → e oscillations, this corresponds to an oscillation probability of (0.31+0.11-0.10 0.05)\%.

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