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Neutrino observatory in Japan
Hyper-Kamiokande (Japanese: ハイパーカミオカンデ, Hepburn: Haipā Kamiokande; also called Hyper-K or HK) is a neutrino observatory and experiment under construction
Hyper-Kamiokande
Underground physics laboratory in Japan
planned site for the very large Hyper-KamiokaNDE caverns. The first of the Kamioka experiments was named KamiokaNDE for Kamioka Nucleon Decay Experiment
Kamioka_Observatory
Long-baseline neutrino experiment in Japan
in 2023 and last until commencement of the successor of T2K – the Hyper-Kamiokande experiment in 2027. T2K was the first experiment which observed the
T2K_experiment
Japanese neutrino observatory
425722°N 137.310306°E / 36.425722; 137.310306 Super-Kamiokande (Japanese: スーパーカミオカンデ, Hepburn: Sūpā Kamiokande; abbreviation of Super-Kamioka Neutrino Detection
Super-Kamiokande
Astronomical neutrinos produced during core-collapse supernova explosion
core-collapse supernova would be observed. Large-scale detectors such as Hyper-Kamiokande or IceCube can detect up to 10 5 {\displaystyle 10^{5}} events. Unfortunately
Supernova_neutrinos
known as Hyper-Kamiokande (HK). This new detector will feature a drastically larger amount of water as its predecessor, Super-Kamiokande, with 266 kilotons
Diffuse supernova neutrino background
Diffuse_supernova_neutrino_background
Particle detector for Cherenkov radiation
CERN. Retrieved 6 June 2025. Proto-Collaboration, Hyper-Kamiokande; et al. (2018). "Hyper-Kamiokande Design Report". arXiv:1805.04163 [physics.ins-det]
Cherenkov_detector
Hypothetical particle decay process of a proton
third‑generation Kamiokande detector, Hyper‑Kamiokande, is currently under construction and it will be about 5.2 times more massive than Super-Kamiokande (approximately
Proton_decay
Under-construction physics experiment facility in the United States
proposals for competing projects in other countries, particularly the Hyper-Kamiokande experiment in Japan, scheduled to begin data-taking in 2027. The DUNE
Deep Underground Neutrino Experiment
Deep_Underground_Neutrino_Experiment
Quantum number relating the quantity of quarks and antiquarks in a system
the following ways: Kamiokande in 1985 ILL experiment in 1994 Super-Kamiokande in 1999 Two planned experiments are: Hyper-Kamiokande HIBEAM/NNBAR Lepton
Baryon_number
supernova neutrino detectors such as IceCube, Super-Kamiokande or its successor Hyper-Kamiokande. Here, wavelength shifters offer two advantages: As these
Wavelength_shifter
Elementary particle with extremely low mass
ISBN 978-0-521-65149-3. "Neutrino mass hierarchy" (Press release). Hyper-Kamiokande. Archived from the original on 2 January 2017. Retrieved 14 December
Neutrino
European particle physics research centre
Under-construction physics experiment facility in the United States Hyper-Kamiokande – Neutrino observatory in Japan Science and Technology Facilities Council –
CERN
Data analysis software
at Darmstadt (PANDA)) Deep Underground Neutrino Experiment (DUNE) Hyper-Kamiokande (HK (Japan)) Astrophysics (X-ray and gamma-ray astronomy, astroparticle
ROOT
Physics apparatus designed to study neutrinos
CDMS Kamioka Observatory, Japan, home of Super-Kamiokande (Super-K) and its successor Hyper-Kamiokande, currently under construction. Underground Neutrino
Neutrino_detector
Proposed Neutrino observatory under the Pacific Ocean
Baikal Deep Underwater Neutrino Telescope Hyper-Kamiokande IceCube Neutrino Observatory KM3NeT MINOS Super-Kamiokande Supernova Early Warning System "The Pacific
Pacific Ocean Neutrino Experiment
Pacific_Ocean_Neutrino_Experiment
Violation of charge-parity symmetry in particle physics and cosmology
violating Dirac phase while the proposed next-generation experiments, Hyper-Kamiokande and DUNE, will be sensitive enough to definitively observe CP violation
CP_violation
Research facility in Japan
accelerator-driven nuclear waste transmutation. T2K experiment Super-Kamiokande Hyper-Kamiokande Biological small-angle scattering China Spallation Neutron Source
J-PARC
Hypothetical conversion between particles
data taking in its full configuration. The successor of Super-Kamiokande, Hyper-Kamiokande, has not yet released a prediction for its sensitivity on τ n
Neutron–antineutron oscillations
Neutron–antineutron_oscillations
Hypothetical elementary particles
University Press. ISBN 0-19-851961-3. "Proton Decay Searches: Hyper-Kamiokande". www.hyper-k.org. Archived from the original on 27 March 2022. Retrieved
X_and_Y_bosons
Scientific advisory panel for particle physics in the US
the 2014 and 2023 P5 reports and is now lagging behind the competing HyperKamiokande project that will turn on in 2027. P5 offered compromises on beam power
Particle Physics Project Prioritization Panel
Particle_Physics_Project_Prioritization_Panel
Academic award of Japan
Photonics Development of Box & Line type 20 inch photomultiplier tube for Hyper-Kamiokande 2020 - - - 2021 Mitsuhiro Nakamura Toshiyuki Nakano Institute of Materials
Koshiba_Prize
Radiochemical 789 keV Homestake Mine, South Dakota future [28] Hyper-Kamiokande Hyper-Kamiokande S, ATM, SN, AC ν e, ν μ ν e, ν μ ν e + e− → ν e + e− ν e +
List_of_neutrino_experiments
after the start of the construction of the DUNE and Hyper-Kamiokande detectors. DUNE and Hyper-Kamiokande are aimed at discovering CP violation in neutrinos
ENUBET
13 December – The Japanese government approves construction of the Hyper-Kamiokande, the largest neutrino detector in history. 16 December – Scientists
2019_in_science
New Zealand physicist
physics of Long baseline Neutrino Oscillation experiments, T2K, NOvA, Hyper-Kamiokande and DUNE as well as the reactor experiments RENO, Daya Bay and JUNO
Stephen_Parke
fluid Hydrothermal synthesis Hydroxyl ion absorption Hygrometer Hyper-Kamiokande HyperPhysics Hyperbolic coordinates Hyperbolic equilibrium point Hyperbolic
Index_of_physics_articles_(H)
Tokyo Akeno Observatory Kamioka Observatory Norikura Observatory Super-Kamiokande - Detection of neutrinos and search for proton decays in a large water
Institute for Cosmic Ray Research
Institute_for_Cosmic_Ray_Research
Proposed type of particle accelerator complex
example could be a complex in the UK sending beams to Japan (see Super-Kamiokande) and Italy (LNGS). The properties of the neutrinos would be examined at
Neutrino_factory
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