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Hyper-Kamiokande is a next-generation multi-purpose neutrino experiment with a primary focus on constraining CP-violation in the lepton sector. It features a diverse science programme that includes neutrino oscillation studies,…

Instrumentation and Detectors · Physics 2023-09-22 Sophie King

Hyper-Kamiokande is a proposed next-generation water Cherenkov detector. If a galactic supernova happens, it will deliver a high event rate ($\mathcal{O}(10^5)$ neutrino events in total) as well as event-by-event energy information. Recent…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 Jost Migenda

Hyper-Kamiokande (Hyper-K) succeeds the very successful Super-K experiment and will consist of a large detector filled with 260~kton purified water and equipped with 40\% photo-coverage. Physics program of Hyper-K is broad, covering from…

High Energy Physics - Experiment · Physics 2018-11-19 Seon-Hee Seo

We investigate the capabilities of upcoming kiloton-scale neutrino detectors, such as Hyper-Kamiokande, in determining the primary cosmic ray spectrum. These detectors provide full-sky coverage and long-term monitoring, unlike traditional…

High Energy Physics - Phenomenology · Physics 2025-05-16 Stephan A. Meighen-Berger , Jayden L. Newstead , Louis E. Strigari

A long-baseline neutrino-oscillation experiment using a well-defined neutrino beam is in preparation at KEK. Neutrinos generated at KEK will be detected by the Super-kamiokande detector 250 km away. The design of the neutrino beam line,…

High Energy Physics - Experiment · Physics 2009-09-25 Yuichi Oyama

The JHF-Kamioka neutrino project is a second generation long base line neutrino oscillation experiment that probes physics beyond the Standard Model by high precision measurements of the neutrino masses and mixing. A high intensity narrow…

Hyper-Kamiokande consists of two identical water-Cherenkov detectors of total 520~kt with the first one in Japan at 295~km from the J-PARC neutrino beam with 2.5$^{\textrm{o}}$ Off-Axis Angles (OAAs), and the second one possibly in Korea in…

High Energy Physics - Experiment · Physics 2019-12-06 Hyper-Kamiokande proto-collaboration , : , K. Abe , Ke. Abe , S. H. Ahn , H. Aihara , A. Aimi , R. Akutsu , C. Andreopoulos , I. Anghel , L. H. V. Anthony , M. Antonova , Y. Ashida , V. Aushev , M. Barbi , G. J. Barker , G. Barr , P. Beltrame , V. Berardi , M. Bergevin , S. Berkman , L. Berns , T. Berry , S. Bhadra , D. Bravo-Bergu no , F. d. M. Blaszczyk , A. Blondel , S. Bolognesi , S. B. Boyd , A. Bravar , C. Bronner , M. Buizza Avanzini , F. S. Cafagna , B. G. Cheon , M. K. Cheoun , K. Cho , K. Y. Choi , E. J. Chun , A. Cole , R. Calland , S. Cao , S. L. Cartwright , M. G. Catanesi , C. Checchia , Z. Chen-Wishart , J. H. Choi , K. Choi , J. Coleman , G. Collazuol , G. Cowan , L. Cremonesi , T. Dealtry , G. De Rosa , C. Densham , D. Dewhurst , E. L. Drakopoulou , F. Di Lodovico , O. Drapier , J. Dumarchez , P. Dunne , M. Dziewiecki , S. Emery , A. Esmaili , A. Evangelisti , E. Fernandez-Martinez , T. Feusels , A. Finch , G. A. Fiorentini , G. Fiorillo , M. Fitton , K. Frankiewicz , M. Friend , Y. Fujii , Y. Fukuda , D. Fukuda , K. Ganezer , M. Ghosh , C. Giganti , M. Gonin , N. Grant , P. Gumplinger , D. R. Hadley , B. Hartfiel , M. Hartz , Y. Hayato , K. Hayrapetyan , J. Hill , S. Hirota , S. Horiuchi , A. K. Ichikawa , T. Iijima , M. Ikeda , J. Imber , K. Inoue , J. Insler , R. A. Intonti , A. Ioannisian , T. Ishida , H. Ishino , M. Ishitsuka , Y. Itow , K. Iwamoto , A. Izmaylov , B. Jamieson , H. I. Jang , J. S. Jang , S. H. Jeon , K. S. Jeong , M. Jiang , P. Jonsson , K. K. Joo , A. Kaboth , C. Kachulis , T. Kajita , S. K. Kang , J. Kameda , Y. Kataoka , T. Katori , K. Kayrapetyan , E. Kearns , M. Khabibullin , A. Khotjantsev , C. S. Kim , H. B. Kim , H. J. Kim , J. H. Kim , J. -S. Kim , J. Y. Kim , S. B. Kim , S. C. Kim , S. -W. Kim , S. Y. Kim , S. King , T. J. Kim , W. Kim , Y. Kishimoto , P. Ko , T. Kobayashi , M. Koga , A. Konaka , L. L. Kormos , Y. Koshio , A. Korzenev , K. L. Kowalik , W. R. Kropp , Y. Kudenko , R. Kurjata , T. Kutter , M. Kuze , K. Kwak , E. H. Kwon , L. Labarga , J. Lagoda , P. J. J. Lasorak , M. Laveder , M. Lawe , J. G. Learned , C. H. Lee , S. J. Lee , W. J. Lee , I. T. Lim , T. Lindner , R. P. Litchfield , A. Longhin , P. Loverre , T. Lou , L. Ludovici , W. Ma , L. Magaletti , K. Mahn , M. Malek , L. Maret , C. Mariani , K. Martens , Ll. Marti , J. F. Martin , J. Marzec , S. Matsuno , E. Mazzucato , M. McCarthy , N. McCauley , K. S. McFarland , C. McGrew , A. Mefodiev , P. Mermod , C. Metelko , M. Mezzetto , J. Migenda , P. Mijakowski , H. Minakata , A. Minamino , S. Mine , O. Mineev , A. Mitra , M. Miura , T. Mochizuki , J. Monroe , C. S. Moon , D. H. Moon , S. Moriyama , T. Mueller , F. Muheim , K. Murase , F. Muto , M. Nakahata , Y. Nakajima , K. Nakamura , T. Nakaya , S. Nakayama , C. Nantais , M. Needham , T. Nicholls , Y. Nishimura , E. Noah , F. Nova , J. Nowak , H. Nunokawa , Y. Obayashi , Y. D. Oh , Y. Oh , H. M. O'Keeffe , Y. Okajima , K. Okumura , Yu. Onishchuk , E. O'Sullivan , L. O'Sullivan , T. Ovsiannikova , R. A. Owen , Y. Oyama , M. Y. Pac , V. Palladino , J. L. Palomino , V. Paolone , H. S. Park , J. C. Park , M. G. Park , S. C. Park , W. Parker , S. Parsa , D. Payne , J. D. Perkin , C. Pidcott , E. Pinzon Guerra , S. Playfer , B. Popov , M. Posiadala-Zezula , J. -M. Poutissou , A. Pritchard , N. W. Prouse , G. Pronost , P. Przewlocki , B. Quilain , M. Quinto , E. Radicioni , P. N. Ratoff , F. Retiere , C. Riccio , B. Richards , E. Rondio , H. J. Rose , C. Rott , S. D. Rountree , A. C. Ruggeri , A. Rychter , D. Ryu , R. Sacco , M. Sakuda , M. C. Sanchez , E. Scantamburlo , M. Scott , S. Molina Sedgwick , Y. Seiya , T. Sekiguchi , H. Sekiya , H. Seo , S. H. Seo , D. Sgalaberna , R. Shah , A. Shaikhiev , I. Shimizu , M. Shiozawa , Y. Shitov , S. Short , C. Simpson , G. Sinnis , M. B. Smy , S. Snow , J. Sobczyk , H. W. Sobel , D. C. Son , Y. Sonoda , R. Spina , T. Stewart , J. L. Stone , Y. Suda , Y. Suwa , Y. Suzuki , A. T. Suzuki , R. Svoboda , M. Taani , R. Tacik , A. Takeda , A. Takenaka , A. Taketa , Y. Takeuchi , V. Takhistov , H. A. Tanaka , H. K. M. Tanaka , H. Tanaka , R. Terri , M. Thiesse , L. F. Thompson , M. Thorpe , S. Tobayama , C. Touramanis , T. Towstego , T. Tsukamoto , K. M. Tsui , M. Tzanov , Y. Uchida , M. R. Vagins , G. Vasseur , C. Vilela , R. B. Vogelaar , J. Walding , J. Walker , M. Ward , D. Wark , M. O. Wascko , A. Weber , R. Wendell , R. J. Wilkes , M. J. Wilking , J. R. Wilson , E. Won , T. Xin , K. Yamamoto , C. Yanagisawa , T. Yano , O. Yasuda , S. Yen , N. Yershov , D. N. Yeum , M. Yokoyama , H. D. Yoo , J. Yoo , S. C. Yoon , T. S. Yoon , T. Yoshida , I. Yu , M. Yu , J. Zalipska , K. Zaremba , M. Ziembicki , M. Zito , S. Zsoldos

As long-baseline neutrino experiments enter the precision era, the difficulties associated with understanding neutrino interaction cross sections on atomic nuclei are expected to limit experimental sensitivities to oscillation parameters.…

Proposed as part of the next generation of water Cherenkov detectors, Hyper-Kamiokande will have a vastly improved potential in determining leptonic CP violation in neutrino oscillations. Well understood optical diffusers are needed as part…

Instrumentation and Detectors · Physics 2019-04-15 S. Valder

If a galactic supernova explosion occurs in the future, it will be critical to rapidly alert the community to the direction of the supernova by utilizing neutrino signals in order to enable the initiation of follow-up optical observations.…

Instrumentation and Methods for Astrophysics · Physics 2024-02-02 Fumi Nakanishi , Shota Izumiyama , Masayuki Harada , Yusuke Koshio

The Hyper-Kamiokande neutrino detector is set to begin construction in 2020, succeeding Super-Kamiokande as the world's largest water Cerenkov detector. Research and development are well underway for an integrated light injection system for…

Instrumentation and Detectors · Physics 2019-04-04 William G. S. Vinning

Super-Kamiokande is the world's largest water Cherenkov experiment with its 50-kton tank of ultrapure water, recently doped with gadolinium to enhance neutron capture identification. It is a highly versatile, multi-purpose experiment in the…

High Energy Physics - Experiment · Physics 2024-05-14 Andrew D. Santos

Water Cherenkov detectors like Super-Kamiokande, and the next generation Hyper-Kamiokande are adding gadolinium to their water to improve the detection of neutrons. By detecting neutrons in addition to the leptons in neutrino interactions,…

Instrumentation and Detectors · Physics 2023-01-16 Blair Jamieson , Matt Stubbs , Sheela Ramanna , John Walker , Nick Prouse , Ryosuke Akutsu , Patrick de Perio , Wojciech Fedorko

Several current projects aim at building a large water-Cherenkov detector, with a fiducial volume about 20 times larger than in the current Super-Kamiokande experiment. These projects include the Underground nucleon decay and Neutrino…

High Energy Physics - Phenomenology · Physics 2009-10-07 G. L. Fogli , E. Lisi , A. Mirizzi , D. Montanino

Proton and neutron decays into light new particles $X$ can drastically change the experimental signatures and benefit from the complementarity of large water-Cherenkov neutrino detectors such as Super/Hyper-Kamiokande and tracking detectors…

High Energy Physics - Phenomenology · Physics 2025-09-15 Julian Heeck , Ian M. Shoemaker

There is a growing interest in very long baseline neutrino oscillation experimentation using accelerator produced neutrino beam as a machinery to probe the last three unmeasured neutrino oscillation parameters: the mixing angle theta_13,…

High Energy Physics - Experiment · Physics 2013-05-29 Chiaki Yanagisawa , Chang Kee Jung , Trung Le , Brett Viren

Super-Kamiokande is a paramount detector for studying atmospheric, astrophysical and accelerator neutrino physics. This work extracts and characterizes the neutrino reconstruction performance of Super-Kamiokande using the public data…

High Energy Physics - Experiment · Physics 2025-05-28 C. Jesús-Valls

Hyper-Kamiokande is a large infrastructure for particle and astroparticle physics being built in Japan and aiming to start operations by the end of 2027 whose objective is to address the most important questions in science today, for…

High Energy Physics - Experiment · Physics 2025-06-23 Kamiokande Collaboration

The next Galactic core-collapse supernova (SN) should yield a large number of observed neutrinos. Using Bayesian techniques, we show that with an SN at a known distance up to 25 kpc, the neutrino events in a water Cherenkov detector similar…

High Energy Astrophysical Phenomena · Physics 2022-05-11 Jackson Olsen , Yong-Zhong Qian

In this paper, we consider the physics performance of a single far detector composed of a 100 kton next generation Liquid Argon Time Projection Chamber (LAr TPC) possibly located at shallow depth, coupled to the J-PARC neutrino beam…

High Energy Physics - Phenomenology · Physics 2008-04-15 A. Badertscher , T. Hasegawa , T. Kobayashi , A. Marchionni , A. Meregaglia , T. Maruyama , K. Nishikawa , A. Rubbia