Dual baseline search for muon antineutrino disappearance at 0.1 eV² < Δm² < 100 eV²
MiniBooNE Collaboration · SciBooNE Collaboration · Cheng, G. · Huelsnitz, W. · Aguilar-Arevalo, A. A. · Alcaraz-Aunion, J. L. · Brice, S. J. · Brown, B. C. · Bugel, L. · Catala-Perez, J. · Church, E. D. · Conrad, J. M. · Dharmapalan, R. · Djurcic, Z. · Dore, U. · Finley, D. A. · Ford, R. · Franke, A. J. · Garcia, F. G. · Garvey, G. T. · Giganti, C. · Gomez-Cadenas, J. J. · Grange, J. · Guzowski, P. · Hanson, A. · Hayato, Y. · Hiraide, K. · Ignarra, C. · Imlay, R. · Johnson, R. A. · Jones, B. J. P. · Jover-Manas, G. · Karagiorgi, G. · Katori, T. · Kobayashi, Y. K. · Kobilarcik, T. · Kubo, H. · Kurimoto, Y. · Louis, W. C. · Loverre, P. F. · Ludovici, L. · Mahn, K. B. M. · Mariani, C. · Marsh, W. · Masuike, S. · Matsuoka, K. · McGary, V. T. · Metcalf, W. · Mills, G. B. · Mirabal, J. · Mitsuka, G. · Miyachi, Y. · Mizugashira, S. · Moore, C. D. · Mousseau, J. · Nakajima, Y. · Nakaya, T. · Napora, R. · Nienaber, P. · Orme, D. · Osmanov, B. · Otani, M. · Pavlovic, Z. · Perevalov, D. · Polly, C. C. · Ray, H. · Roe, B. P. · Russell, A. D. · Sanchez, F. · Shaevitz, M. H. · Shibata, T. -A. · Sorel, M. · Spitz, J. · Stancu, I. · Stefanski, R. J. · Takei, H. · Tanaka, H. -K. · Tanaka, M. · Tayloe, R. · Taylor, I. J. · Tesarek, R. J. · Uchida, Y. · Van de Water, R. G. · Walding, J. J. · Wascko, M. O. · White, D. H. · White, H. B. · Wickremasinghe, D. A. · Yokoyama, M. · Zeller, G. P. · Zimmerman, E. D.
Original · EN
The MiniBooNE and SciBooNE collaborations report the results of a joint search for short baseline disappearance of νμ at Fermilab's Booster Neutrino Beamline. The MiniBooNE Cherenkov detector and the SciBooNE tracking detector observe antineutrinos from the same beam, therefore the combined analysis of their datasets serves to partially constrain some of the flux and cross section uncertainties. Uncertainties in the νμ background were constrained by neutrino flux and cross section measurements performed in both detectors. A likelihood ratio method was used to set a 90% confidence level upper limit on νμ disappearance that dramatically improves upon prior limits in the Δm²=0.1-100 eV² region.
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