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C. Pistillo

Researcher at University of Bern

Publications -  184
Citations -  8428

C. Pistillo is an academic researcher from University of Bern. The author has contributed to research in topics: Neutrino & Neutrino oscillation. The author has an hindex of 48, co-authored 173 publications receiving 7784 citations. Previous affiliations of C. Pistillo include Research Council of Norway & University of Naples Federico II.

Papers
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Observation of Electron Neutrino Appearance in a Muon Neutrino Beam

K. Abe, +338 more
TL;DR: The T2K experiment has observed electron neutrino appearance in a muon neutrinos beam produced 295 km from the Super-Kamiokande detector with a peak energy of 0.6 GeV, corresponding to a significance of 7.3σ.
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New results on $\nu_\mu \to \nu_\tau$ appearance with the OPERA experiment in the CNGS beam

N. Agafonova, +166 more
TL;DR: The OPERA neutrino experiment is designed to perform the first observation of neutrinos oscillations in direct appearance mode in the $ u_\mu \to u_ \tau$ channel, via the detection of the leptons created in charged current interactions.
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Physics potential of a long-baseline neutrino oscillation experiment using a J-PARC neutrino beam and Hyper-Kamiokande

K. Abe, +281 more
TL;DR: In this article, the physics potential of a long baseline neutrino experiment using the Hyper-Kamiokande detector and neutrinos from the J-PARC proton synchrotron is presented.
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Measurements of neutrino oscillation in appearance and disappearance channels by the T2K experiment with 6.6E20 protons on target

K. Abe, +370 more
- 29 Apr 2015 - 
TL;DR: In this article, the authors report on measurements of neutrino oscillation using data from the T2K long-baseline neutrinos experiment collected between 2010 and 2013 and find the following estimates and 68% confidence intervals for the two possible mass hierarchies: Normal Hierarchy:
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The OPERA experiment in the CERN to Gran Sasso neutrino beam

R. Acquafredda, +261 more
TL;DR: The OPERA neutrino oscillation experiment has been designed to prove the appearance of ντ in a nearly pure νμ beam (CNGS) produced at CERN and detected in the underground Hall C of the Gran Sasso Laboratory, 730 km away from the source as discussed by the authors.