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The ANTARES telescope is being built in the Mediterranean Sea. The detector consists of a 3D array of photomultipliers (PMTs) that detects the Cherenkov light induced by the muons produced in neutrino interactions. Other signatures can also…

Astrophysics · Physics 2019-08-13 J. A. Aguilar

The IceCube Neutrino Observatory is a cubic kilometer neutrino telescope located at the geographic South Pole. Cherenkov radiation emitted by charged secondary particles from neutrino interactions is observed by IceCube using an array of…

High Energy Astrophysical Phenomena · Physics 2026-04-01 Kevin J. Meagher

The ANTARES project aims to build a deep underwater Cherenkov neutrino telescope in the Mediterranean Sea. Currently the experiment is in the construction phase and has recently achieved two important milestones. The electro-optical cable…

Astrophysics · Physics 2019-08-14 I. Sokalski

In this talk I compare the physics potential of possible future neutrino oscillation experiments from CERN to a Mt scale water Cerenkov detector at Frejus (MEMPHYS) and of the T2HK proposal in Japan, where for the CERN experiments an SPL…

High Energy Physics - Phenomenology · Physics 2008-11-26 Thomas Schwetz

Hyper-Kamiokande (HK) is the next generation underground water Cherenkov detector that builds on the highly successful Super-Kamiokande (SK) experiment. The 260,000-ton detector has an 8.4 times larger fiducial volume than its predecessor.…

Antineutrinos are an unavoidable byproduct of the fission process. The kiloton-scale KamLAND experiment has demonstrated the capability to detect reactor antineutrinos at few-hundred-km range. But to detect or rule out the existence of a…

Instrumentation and Detectors · Physics 2022-08-18 Viacheslav A. Li , Steven A. Dazeley , Marc Bergevin , Adam Bernstein

The Taishan Antineutrino Observatory (TAO, also known as JUNO-TAO) is a satellite experiment of the Jiangmen Underground Neutrino Observatory (JUNO). A ton-level liquid scintillator detector will be placed at about 30 m from a core of the…

Instrumentation and Detectors · Physics 2025-03-18 Ziming Li , Zhimin Wang , Jie Yang

A first study of neutron tagging is conducted in Super--Kamiokande, a 50,000-ton water Cherenkov detector. The tagging efficiencies of thermal neutrons are evaluated in a 0.2 % GdCl$_{3}$-water solution and pure water. They are determined…

High Energy Physics - Experiment · Physics 2015-05-13 Kamiokande Collaboration , H. Watanabe , H. Zhang

The Cryogenic Apparatus for Precision Tests of Argon Interactions with Neutrinos (CAPTAIN) program is designed to make measurements of scientific importance to long-baseline neutrino physics and physics topics that will be explored by large…

Instrumentation and Detectors · Physics 2015-09-28 Jianming Bian

Astrophysical neutrinos in the EeV range (particularly those generated by the interaction of cosmic rays with the cosmic microwave background) promise to be a valuable tool to study astrophysics and particle physics at the highest energies.…

The detection of astrophysical neutrinos by IceCube and the potential to constrain source models of ultra-high energy cosmic rays provide the motivation to develop instruments for the observation of neutrinos above $10^7$ GeV. Among the…

Instrumentation and Methods for Astrophysics · Physics 2019-07-23 A. Nepomuk Otte , Eliza Gazda , Eleanor Judd , John F. Krizmanic , Evgeny Kutzenzov , Oscar Romero Matamala , Patrick J. Reardon , Lawrence Wiencke

Large liquid-scintillator-based detectors have proven to be exceptionally effective for low energy neutrino measurements due to their good energy resolution and scalability to large volumes. The addition of directional information using…

Instrumentation and Detectors · Physics 2015-06-16 C. Aberle , A. Elagin , H. J. Frisch , M. Wetstein , L. Winslow

The KM3NeT research infrastructure being built at the bottom of the Mediterranean Sea will host water-Cherenkov telescopes for the detection of cosmic neutrinos. The neutrino telescopes will consist of large volume three-dimensional grids…

Instrumentation and Methods for Astrophysics · Physics 2019-08-13 The KM3NeT Collaboration , S. Aiello , F. Ameli , M. Andre , G. Androulakis , M. Anghinolfi , G. Anton , M. Ardid , J. Aublin , C. Bagatelas , G. Barbarino , B. Baret , S. Basegmez du Pree , A. Belias , E. Berbee , A. M. van den Berg , V. Bertin , V. van Beveren , S. Biagi , A. Biagioni , S. Bianucci , M. Billault , M. Bissinger , P. Bos , J. Boumaaza , S. Bourret , M. Bouta , G. Bouvet , M. Bouwhuis , C. Bozza , H. Brânzaş , M. Briel , M. Bruchner , R. Bruijn , J. Brunner , E. Buis , R. Buompane , J. Busto , D. Calvo , A. Capone , S. Celli , M. Chabab , N. Chau , S. Cherubini , V. Chiarella , T. Chiarusi , M. Circella , R. Cocimano , J. , A. , B. Coelho , A. Coleiro , M. Colomer Molla , S. Colonges , R. Coniglione , P. Coyle , A. Creusot , G. Cuttone , C. D'Amato , A. D'Amico , A. D'Onofrio , R. Dallier , M. De Palma , I. Di Palma , A. F. Díaz , D. Diego-Tortosa , C. Distefano , A. Domi , R. Donà , C. Donzaud , D. Dornic , M. Dörr , M. Durocher , T. Eberl , T. van Eeden , I. El Bojaddaini , H. Eljarrari , D. Elsaesser , A. Enzenhöfer , P. Fermani , G. Ferrara , M. D. Filipović , L. A. Fusco , D. Gajanana , T. Gal , A. Garcia Soto , F. Garufi , L. Gialanella , E. Giorgio , A. Giuliante , S. R. Gozzini , R. Gracia , K. Graf , D. Grasso , T. Grégoire , G. Grella , D. Guderian , C. Guidi , S. Hallmann , H. Hamdaoui , H. van Haren , A. Heijboer , A. Hekalo , J. J. Hernández-Rey , J. Hofestädt , F. Huang , E. Huesca Santiago , G. Illuminati , C. W. James , P. Jansweijer , M. Jongen , M. de Jong , P. de Jong , M. Kadler , P. Kalaczyński , O. Kalekin , U. F. Katz , N. R. Khan Chowdhury , F. van der Knaap , E. N. Koffeman , P. Kooijman , A. Kouchner , M. Kreter , V. Kulikovskiy , Meghna K. K. , R. Lahmann , G. Larosa , R. Le Breton , F. Leone , E. Leonora , G. Levi , M. Lincetto , A. Lonardo , F. Longhitano , D. Lopez-Coto , G. Maggi , J. Mańczak , K. Mannheim , A. Margiotta , A. Marinelli , C. Markou , G. Martignac , L. Martin , J. A. Martínez-Mora , A. Martini , F. Marzaioli , S. Mazzou , R. Mele , K. W. Melis , P. Migliozzi , E. Migneco , P. Mijakowski , L. S. Miranda , C. M. Mollo , M. Morganti , M. Moser , A. Moussa , R. Muller , P. Musico , M. Musumeci , L. Nauta , S. Navas , C. A. Nicolau , C. Nielsen , B. Ó Fearraigh , M. Organokov , A. Orlando , V. Panagopoulos , G. Papalashvili , R. Papaleo , C. Pastore , G. E. Păvălaş , G. Pellegrini , C. Pellegrino , M. Perrin-Terrin , P. Piattelli , K. Pikounis , O. Pisanti , C. Poirè , G. Polydefki , V. Popa , M. Post , T. Pradier , G. Pühlhofer , S. Pulvirenti , L. Quinn , F. Raffaelli , N. Randazzo , A. Rapicavoli , S. Razzaque , D. Real , S. Reck , J. Reubelt , G. Riccobene , M. Richer , L. Rigalleau , A. Rovelli , I. Salvadori , D. F. E. Samtleben , A. Sánchez Losa , M. Sanguineti , A. Santangelo , D. Santonocito , P. Sapienza , J. Schmelling , J. Schnabel , V. Sciacca , J. Seneca , I. Sgura , R. Shanidze , A. Sharma , F. Simeone , A. Sinopoulou , B. Spisso , M. Spurio , D. Stavropoulos , J. Steijger , S. M. Stellacci , B. Strandberg , D. Stransky , M. Taiuti , Y. Tayalati , E. Tenllado , T. Thakore , P. Timmer , S. Tingay , E. Tzamariudaki , D. Tzanetatos , V. Van Elewyck , F. Versari , S. Viola , D. Vivolo , G. de Wasseige , J. Wilms , R. Wojaczyński , E. de Wolf , D. Zaborov , A. Zegarelli , J. D. Zornoza , J. Zúñiga

Jiangmen Underground neutrino Observatory (JUNO) is a next generation liquid scintillator neutrino experiment under construction phase in South China. Thanks to the anti-neutrinos produced by the nearby nuclear power plants, JUNO will…

The ANTARES neutrino telescope is currently the largest operating water Cherenkov detector and the largest neutrino detector in the Northern Hemisphere. Its main scientific target is the detection of high-energy (TeV and beyond) neutrinos…

High Energy Astrophysical Phenomena · Physics 2019-08-13 V. Van Elewyck

The DARWIN project aims to build and operate a next-generation observatory for dark matter and neutrino physics, featuring a time projection chamber with a proposed active target of 40 t of liquid xenon. As an R&D facility to test…

Instrumentation and Detectors · Physics 2023-03-28 R. Peres

IceCube is a 1 km^3 neutrino detector now being built at the Amundsen-Scott South Pole Station. It consists of 4800 Digital Optical Modules (DOMs) which detect Cherenkov radiation from the charged particles produced in neutrino…

Instrumentation and Detectors · Physics 2019-08-13 Spencer R. Klein

Several different experimental results are indicating the existence of anomalies in the neutrino sector. Models beyond the standard model have been developed to explain these results and involve one or more additional neutrinos that do not…

Instrumentation and Detectors · Physics 2013-04-29 Umut Kose

We review the present status of the Baikal Deep Underwater Neutrino Experiment. The construction and performance of the large deep underwater Cherenkov detector for muons and neutrinos, NT-200 (Neutrino Telescope with 200 phototubes), which…

Astrophysics · Physics 2012-08-27 The Baikal Collaboration

The detection of an electron bunch exiting a strong magnetic field can prove challenging due to the small mass of the electron. If placed too far from a solenoid's entrance, a detector outside the magnetic field will be too small to…