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There is accumulating evidence for a difference between neutrino and antineutrino oscillations at the $\sim 1$ eV$^2$ scale. The MiniBooNE experiment observes an unexplained excess of electron-like events at low energies in neutrino mode,…

Long-standing anomalous experimental results from short-baseline neutrino experiments have persisted for decades. These results, when interpreted with one or more light sterile neutrinos, are inconsistent with numerous null results…

High Energy Physics - Phenomenology · Physics 2024-06-10 Matheus Hostert , Kevin J. Kelly , Tao Zhou

The MiniBooNE experiment has observed a significant excess of electron neutrinos in a muon neutrino beam at source-detector distances too short to be compatible with standard neutrino oscillations. The most straightforward explanation for…

High Energy Physics - Phenomenology · Physics 2020-07-01 Mona Dentler , Ivan Esteban , Joachim Kopp , Pedro Machado

We consider a model of neutrino oscillations with three additional sterile neutrinos and a gauged B-L interaction. We find allowed values of the model parameters which can reconcile the results of the evidence for antimuon neutrino to…

High Energy Physics - Phenomenology · Physics 2008-11-26 Ann E. Nelson , Jonathan Walsh

Neutrino oscillations have been established in solar and atmospheric neutrinos, but a third signal from the LSND experiment is incompatible with three Standard Model neutrinos. The MiniBooNE experiment can confirm or refute the LSND…

High Energy Physics - Experiment · Physics 2007-05-23 J. Monroe

The MiniBooNE experiment has recently reported an anomalous 4.5$\sigma$ excess of electron-like events consistent with $\nu_e$ appearance from a $\nu_\mu$ beam at short-baseline. Given the lack of corresponding $\nu_\mu$ disappearance…

High Energy Physics - Phenomenology · Physics 2019-08-08 Johnathon R. Jordan , Yonatan Kahn , Gordan Krnjaic , Matthew Moschella , Joshua Spitz

It has been recently shown that puzzling excess events observed by the LSND and MiniBooNE neutrino experiments could be interpreted as a signal from the radiative decay of a heavy sterile neutrino ($\nu_h$) of the mass from 40 to 80 MeV,…

High Energy Physics - Experiment · Physics 2011-05-25 S. N. Gninenko

MiniBooNE (Mini Booster Neutrino Experiment) searches for the $\nu_\mu\to\nu_e$ oscillations with $\Delta m^2 \sim 1 \eV^2/c^4$ indicated by the LSND experiment. The LSND evidence, when taken with the solar and atmospheric neutrino…

High Energy Physics - Experiment · Physics 2019-08-13 H. A. Tanaka

The MiniBooNE experiment at Fermilab reports results from an analysis of the combined $\nu_e$ and $\bar \nu_e$ appearance data from $6.46 \times 10^{20}$ protons on target in neutrino mode and $11.27 \times 10^{20}$ protons on target in…

The MiniBooNE experiment is a $\nu_\mu\to\nu_e$ and $\bar\nu_\mu\to\bar\nu_e$ appearance neutrino oscillation experiment at Fermilab. The neutrino mode oscillation analysis shows an excess of $\nu_e$ candidate events in the low-energy…

High Energy Physics - Phenomenology · Physics 2017-08-23 Teppei Katori

The possibility is considered that the verdict of the ongoing MiniBooNE neutrino experiment will favor neither of the contesting sides, stating in fact that the LSND effect with the original oscillation amplitude is not confirmed, but a new…

High Energy Physics - Phenomenology · Physics 2007-05-23 Wojciech Krolikowski

The MiniBooNE neutrino detector was designed and built to look for muon-neutrino to electron-neutrino oscillations in the mixing parameter space region where the LSND experiment reported a signal. The MiniBooNE experiment used a beam energy…

High Energy Physics - Experiment · Physics 2012-08-27 MiniBooNE Collaboration

Neutrino oscillations have been observed in solar and atmospheric neutrinos, and in the LSND accelerator experiment. The Standard Model cannot accommodate all three positive results. The solar and atmospheric results have been confirmed. An…

High Energy Physics - Experiment · Physics 2009-11-10 H. Ray

When neutrinos are produced from long lived particles the life-time of the source particle affects the flavour conversion probability formula. Due to this source dependence experiments (like LSND) which use muon decay neutrinos are two…

High Energy Physics - Phenomenology · Physics 2007-05-23 Subhendra Mohanty

The results of LSND and MiniBooNE, along with the recent papers on a possible reactor neutrino flux anomaly give tantalizing hints of new physics. Models beyond the neutrino-SM have been developed to explain these results and involve one or…

The long awaited experimental results from MiniBooNE have recently been announced. This experiment tests whether neutrino oscillations can occur at a higher mass squared difference $\sim1 {eV}^2$ compared to well established observations of…

Popular Physics · Physics 2008-11-26 Ranjan Laha , Sudhir K. Vempati

The MiniBooNE experiment at Fermilab was designed to be a definitive test of the LSND evidence for neutrino oscillations and has recently reported first results of a search for electron-neutrino appearance in a muon-neutrino Booster beam.…

High Energy Physics - Experiment · Physics 2009-07-22 Zelimir Djurcic

MiniBooNE, the Mini Booster Neutrino Experiment at Fermilab, will confirm or refute the existence of the neutrino oscillation signal seen by the Liquid Scintillator Neutrino Detector (LSND) Experiment at Los Alamos National Laboratory. The…

High Energy Physics - Experiment · Physics 2019-08-14 J. L. Raaf

We show by examples that multichannel mixing can affect both the parameters extracted from neutrino oscillation experiments, and that more general conclusions derived by fitting the experimental data under the assumption that only two…

Nuclear Theory · Physics 2012-08-27 T. Goldman , G. J. Stephenson, , B. H. J. McKellar

A search for neutron-antineutron ($n-\bar{n}$) oscillation was undertaken in Super-Kamiokande using the 1489 live-day or $2.45 \times 10^{34}$ neutron-year exposure data. This process violates both baryon and baryon minus lepton numbers by…

High Energy Physics - Experiment · Physics 2015-04-16 Kamiokande collaboration , K. Abe , Y. Hayato , T. Iida , K. Ishihara , J. Kameda , Y. Koshio , A. Minamino , C. Mitsuda , M. Miura , S. Moriyama , M. Nakahata , Y. Obayashi , H. Ogawa , H. Sekiya , M. Shiozawa , Y. Suzuki , A. Takeda , Y. Takeuchi , K. Ueshima , H. Watanabe , I. Higuchi , C. Ishihara , M. Ishitsuka , T. Kajita , K. Kaneyuki , G. Mitsuka , S. Nakayama , H. Nishino , K. Okumura , C. Saji , Y. Takenaga , S. Clark , S. Desai , F. Dufour , A. Herfurth , E. Kearns , S. Likhoded , M. Litos , J. L. Raaf , J. L. Stone , L. R. Sulak , W. Wang , M. Goldhaber , D. Casper , J. P. Cravens , J. Dunmore , J. Griskevich , W. R. Kropp , D. W. Liu , S. Mine , C. Regis , M. B. Smy , H. W. Sobel , M. R. Vagins , K. S. Ganezer , B. Hartfiel , J. Hill , W. E. Keig , J. S. Jang , I. S. Jeoung , J. Y. Kim , I. T. Lim , K. Scholberg , N. Tanimoto , C. W. Walter , R. Wendell , R. W. Ellsworth , S. Tasaka , G. Guillian , J. G. Learned , S. Matsuno , M. D. Messier , A. K. Ichikawa , T. Ishida , T. Ishii , T. Iwashita , T. Kobayashi , T. Nakadaira , K. Nakamura , K. Nishikawa , K. Nitta , Y. Oyama , A. T. Suzuki , M. Hasegawa , H. Maesaka , T. Nakaya , T. Sasaki , H. Sato , H. Tanaka , S. Yamamoto , M. Yokoyama , T. J. Haines , S. Dazeley , S. Hatakeyama , R. Svoboda , G. W. Sullivan , R. Gran , A. Habig , Y. Fukuda , Y. Itow , T. Koike , C. K. Jung , T. Kato , K. Kobayashi , C. McGrew , A. Sarrat , R. Terri , C. Yanagisawa , N. Tamura , M. Ikeda , M. Sakuda , Y. Kuno , M. Yoshida , S. B. Kim , B. S. Yang , T. Ishizuka , H. Okazawa , Y. Choi , H. K. Seo , Y. Gando , T. Hasegawa , K. Inoue , H. Ishii , K. Nishijima , H. Ishino , Y. Watanabe , M. Koshiba , Y. Totsuka , S. Chen , Z. Deng , Y. Liu , D. Kielczewska , H. G. Berns , K. K. Shiraishi , E. Thrane , K. Washburn , R. J. Wilkes
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