Recent Atmospheric Neutrino Results from Super-Kamiokande
arXiv:1310.6677 · doi:10.1063/1.4883450
Abstract
The Super-Kamiokande experiment has collected more than 11 live-years of atmospheric neutrino data. Atmospheric neutrinos cover a wide phase space in both energy and distance travelled, the parameters relevant for studying neutrino oscillations. We present here recent measurements of the three-flavor neutrino oscillation parameters using this atmospheric neutrino data, as well as new limits on mixing with a fourth sterile neutrino state.
8 pages, 6 figures, presented at VII International Conference on Interconnections between Particle Physics and Cosmology (PPC2013) as part of CETUP2013
Cited by in corpus (19)
- Letter of Intent for KM3NeT 2.0
- Neutrino oscillations refitted
- Measurements of neutrino oscillation in appearance and disappearance channels by the T2K experiment with 6.6E20 protons on target
- (In)direct Detection of Boosted Dark Matter
- Physics Potential of the ICAL detector at the India-based Neutrino Observatory (INO)
- Determining neutrino oscillation parameters from atmospheric muon neutrino disappearance with three years of IceCube DeepCore data
- Physics Potentials with the Second Hyper-Kamiokande Detector in Korea
- PINGU: A Vision for Neutrino and Particle Physics at the South Pole
- Renormalization group running of neutrino parameters
- Enhancing sensitivity to neutrino parameters at INO combining muon and hadron information
- Deviation from Bimaximal Mixing and Leptonic CP Phases in Family Symmetry and Generalized CP
- Probing Neutrino Oscillation Parameters using High Power Superbeam from ESS
- Probing Majorana Neutrino Textures at DUNE
- Lepton flavor violation in the supersymmetric seesaw model after the LHC 8 TeV run
- Neutrino Oscillations with the MINOS, MINOS+, T2K, and NOvA Experiments
- (In)Direct Detection of Boosted Dark Matter
- Revisiting Discrete Dark Matter Model:θ_{13}\neq0 and ν_{R} Dark Matter
- Oscillation results from T2K
- Using MiniBooNE neutral current elastic cross section results to constrain 3+1 sterile neutrino models