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Related papers: The IceCube-Gen2 Neutrino Observatory

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Since the detection of high-energy cosmic neutrinos at the IceCube Neutrino Observatory in 2013, there has been an on-going search to find the origins of this flux. Despite recent evidence identifying a flaring blazar as a possible neutrino…

High Energy Astrophysical Phenomena · Physics 2021-10-05 Robert Stein

Neutrinos are unique cosmic messengers. Present attempts are directed to extend the window of cosmic neutrino observation from low energies (Sun, supernovae) to much higher energies. The aim is to study the most violent processes in the…

High Energy Astrophysical Phenomena · Physics 2015-06-03 Ulrich F. Katz , Christian Spiering

The detection of an astrophysical flux of neutrinos in the TeV-PeV energy range by the IceCube observatory has opened new possibilities for the study of extreme cosmic accelerators. The apparent isotropy of the neutrino arrival directions…

High Energy Astrophysical Phenomena · Physics 2022-09-29 Naoko Kurahashi , Kohta Murase , Marcos Santander

IceCube-Gen2 is a planned next-generation neutrino observatory at the South Pole that builds upon the successful design of IceCube. Integrating two complementary detection technologies for neutrinos, optical and radio Cherenkov emission, in…

High Energy Astrophysical Phenomena · Physics 2023-07-26 IceCube-Gen2 , : , R. Abbasi , M. Ackermann , J. Adams , S. K. Agarwalla , J. A. Aguilar , M. Ahlers , J. M. Alameddine , N. M. Amin , K. Andeen , G. Anton , C. Argüelles , Y. Ashida , S. Athanasiadou , J. Audehm , S. N. Axani , X. Bai , A. Balagopal V. , M. Baricevic , S. W. Barwick , V. Basu , R. Bay , J. Becker Tjus , J. Beise , C. Bellenghi , C. Benning , S. BenZvi , D. Berley , E. Bernardini , D. Z. Besson , A. Bishop , E. Blaufuss , S. Blot , M. Bohmer , F. Bontempo , J. Y. Book , J. Borowka , C. Boscolo Meneguolo , S. Böser , O. Botner , J. Böttcher , S. Bouma , E. Bourbeau , J. Braun , B. Brinson , J. Brostean-Kaiser , R. T. Burley , R. S. Busse , D. Butterfield , M. A. Campana , K. Carloni , E. G. Carnie-Bronca , M. Cataldo , S. Chattopadhyay , N. Chau , C. Chen , Z. Chen , D. Chirkin , S. Choi , B. A. Clark , R. Clark , L. Classen , A. Coleman , G. H. Collin , J. M. Conrad , D. F. Cowen , B. Dasgupta , P. Dave , C. Deaconu , C. De Clercq , S. De Kockere , J. J. DeLaunay , D. Delgado , S. Deng , K. Deoskar , A. Desai , P. Desiati , K. D. de Vries , G. de Wasseige , T. DeYoung , A. Diaz , J. C. Díaz-Vélez , M. Dittmer , A. Domi , H. Dujmovic , M. A. DuVernois , T. Ehrhardt , P. Eller , E. Ellinger , S. El Mentawi , D. Elsässer , R. Engel , H. Erpenbeck , J. Evans , J. J. Evans , P. A. Evenson , K. L. Fan , K. Fang , K. Farrag , K. Farrag , A. R. Fazely , A. Fedynitch , N. Feigl , S. Fiedlschuster , C. Finley , L. Fischer , B. Flaggs , D. Fox , A. Franckowiak , A. Fritz , T. Fujii , P. Fürst , J. Gallagher , E. Ganster , A. Garcia , L. Gerhardt , R. Gernhaeuser , A. Ghadimi , P. Giri , C. Glaser , T. Glauch , T. Glüsenkamp , N. Goehlke , S. Goswami , D. Grant , S. J. Gray , O. Gries , S. Griffin , S. Griswold , D. Guevel , C. Günther , P. Gutjahr , C. Haack , T. Haji Azim , A. Hallgren , R. Halliday , S. Hallmann , L. Halve , F. Halzen , H. Hamdaoui , M. Ha Minh , K. Hanson , J. Hardin , A. A. Harnisch , P. Hatch , J. Haugen , A. Haungs , D. Heinen , K. Helbing , J. Hellrung , B. Hendricks , F. Henningsen , J. Henrichs , L. Heuermann , N. Heyer , S. Hickford , A. Hidvegi , J. Hignight , C. Hill , G. C. Hill , K. D. Hoffman , B. Hoffmann , K. Holzapfel , S. Hori , K. Hoshina , W. Hou , T. Huber , T. Huege , K. Hughes , K. Hultqvist , M. Hünnefeld , R. Hussain , K. Hymon , S. In , A. Ishihara , M. Jacquart , O. Janik , M. Jansson , G. S. Japaridze , M. Jeong , M. Jin , B. J. P. Jones , O. Kalekin , D. Kang , W. Kang , X. Kang , A. Kappes , D. Kappesser , L. Kardum , T. Karg , M. Karl , A. Karle , T. Katori , U. Katz , M. Kauer , J. L. Kelley , A. Khatee Zathul , A. Kheirandish , J. Kiryluk , S. R. Klein , T. Kobayashi , A. Kochocki , H. Kolanoski , T. Kontrimas , L. Köpke , C. Kopper , D. J. Koskinen , P. Koundal , M. Kovacevich , M. Kowalski , T. Kozynets , C. B. Krauss , I. Kravchenko , J. Krishnamoorthi , E. Krupczak , A. Kumar , E. Kun , N. Kurahashi , N. Lad , C. Lagunas Gualda , M. J. Larson , S. Latseva , F. Lauber , J. P. Lazar , J. W. Lee , K. Leonard DeHolton , A. Leszczyńska , M. Lincetto , Q. R. Liu , M. Liubarska , M. Lohan , E. Lohfink , J. LoSecco , C. Love , C. J. Lozano Mariscal , L. Lu , F. Lucarelli , Y. Lyu , J. Madsen , K. B. M. Mahn , Y. Makino , S. Mancina , S. Mandalia , W. Marie Sainte , I. C. Mariş , S. Marka , Z. Marka , M. Marsee , I. Martinez-Soler , R. Maruyama , F. Mayhew , T. McElroy , F. McNally , J. V. Mead , K. Meagher , S. Mechbal , A. Medina , M. Meier , Y. Merckx , L. Merten , Z. Meyers , J. Micallef , M. Mikhailova , J. Mitchell , T. Montaruli , R. W. Moore , Y. Morii , R. Morse , M. Moulai , T. Mukherjee , R. Naab , R. Nagai , M. Nakos , A. Narayan , U. Naumann , J. Necker , A. Negi , A. Nelles , M. Neumann , H. Niederhausen , M. U. Nisa , A. Noell , A. Novikov , S. C. Nowicki , A. Nozdrina , E. Oberla , A. Obertacke Pollmann , V. O'Dell , M. Oehler , B. Oeyen , A. Olivas , R. Ørsøe , J. Osborn , E. O'Sullivan , L. Papp , N. Park , G. K. Parker , E. N. Paudel , L. Paul , C. Pérez de los Heros , T. C. Petersen , J. Peterson , S. Philippen , S. Pieper , J. L. Pinfold , A. Pizzuto , I. Plaisier , M. Plum , A. Pontén , Y. Popovych , M. Prado Rodriguez , B. Pries , R. Procter-Murphy , G. T. Przybylski , L. Pyras , J. Rack-Helleis , M. Rameez , K. Rawlins , Z. Rechav , A. Rehman , P. Reichherzer , G. Renzi , E. Resconi , S. Reusch , W. Rhode , B. Riedel , M. Riegel , A. Rifaie , E. J. Roberts , S. Robertson , S. Rodan , G. Roellinghoff , M. Rongen , C. Rott , T. Ruhe , D. Ryckbosch , I. Safa , J. Saffer , D. Salazar-Gallegos , P. Sampathkumar , S. E. Sanchez Herrera , A. Sandrock , P. Sandstrom , M. Santander , S. Sarkar , S. Sarkar , J. Savelberg , P. Savina , M. Schaufel , H. Schieler , S. Schindler , L. Schlickmann , B. Schlüter , F. Schlüter , N. Schmeisser , T. Schmidt , J. Schneider , F. G. Schröder , L. Schumacher , G. Schwefer , S. Sclafani , D. Seckel , M. Seikh , S. Seunarine , M. H. Shaevitz , R. Shah , A. Sharma , S. Shefali , N. Shimizu , M. Silva , B. Skrzypek , D. Smith , B. Smithers , R. Snihur , J. Soedingrekso , A. Søgaard , D. Soldin , P. Soldin , G. Sommani , D. Southall , C. Spannfellner , G. M. Spiczak , C. Spiering , M. Stamatikos , T. Stanev , T. Stezelberger , J. Stoffels , T. Stürwald , T. Stuttard , G. W. Sullivan , I. Taboada , A. Taketa , H. K. M. Tanaka , S. Ter-Antonyan , M. Thiesmeyer , W. G. Thompson , J. Thwaites , S. Tilav , K. Tollefson , C. Tönnis , J. Torres , S. Toscano , D. Tosi , A. Trettin , Y. Tsunesada , C. F. Tung , R. Turcotte , J. P. Twagirayezu , B. Ty , M. A. Unland Elorrieta , A. K. Upadhyay , K. Upshaw , N. Valtonen-Mattila , J. Vandenbroucke , N. van Eijndhoven , D. Vannerom , J. van Santen , J. Vara , D. Veberic , J. Veitch-Michaelis , M. Venugopal , S. Verpoest , A. Vieregg , A. Vijai , C. Walck , C. Weaver , P. Weigel , A. Weindl , J. Weldert , C. Welling , C. Wendt , J. Werthebach , M. Weyrauch , N. Whitehorn , C. H. Wiebusch , N. Willey , D. R. Williams , S. Wissel , L. Witthaus , A. Wolf , M. Wolf , G. Wörner , G. Wrede , S. Wren , X. W. Xu , J. P. Yanez , E. Yildizci , S. Yoshida , R. Young , F. Yu , S. Yu , T. Yuan , Z. Zhang , P. Zhelnin , S. Zierke , M. Zimmerman

IceCube is a cubic kilometer neutrino telescope under construction at the South Pole. The primary goal is to discover astrophysical sources of high energy neutrinos. We describe the detector and present results on atmospheric muon neutrinos…

Astrophysics · Physics 2019-08-13 J. Kiryluk

IceCube is a 1 km$^3$ neutrino observatory being built to study neutrino production in active galactic nuclei, gamma-ray bursts, supernova remnants, and a host of other astrophysical sources. High-energy neutrinos may signal the sources of…

Astrophysics · Physics 2019-08-14 Spencer R. Klein

The next generation neutrino telescope, IceCube-Gen2, will be sensitive to the astrophysical and cosmogenic flux of neutrinos across a broad energy range, from the TeV to the EeV scale. The planned design includes 8 cubic kilometers of ice…

High Energy Astrophysical Phenomena · Physics 2025-07-11 Christian Glaser

Neutrino astronomy beyond the Sun was first imagined in the late 1950s; by the 1970s, it was realized that kilometer-scale neutrino detectors were required. The first such instrument, IceCube, is near completion and taking data. The IceCube…

High Energy Astrophysical Phenomena · Physics 2010-11-15 Francis Halzen , Spencer R. Klein

With the completion of the first cubic-kilometer class neutrino telescopes, IceCube, the race for the discovery of the first cosmic high-energy neutrino sources enters into a new phase. The usage of neutrinos as cosmic messengers has the…

High Energy Astrophysical Phenomena · Physics 2011-11-01 Alexander Kappes

The observation of an astrophysical neutrino flux in IceCube and its detection capability to separate between the different neutrino flavors has led IceCube to constraint the flavor content of this flux. IceCube-Gen2 is the planned…

High Energy Astrophysical Phenomena · Physics 2023-08-30 Neha Lad

The IceCube Neutrino Observatory has the invaluable capability of continuously monitoring the whole sky. This has affirmed the role of IceCube as a sentinel, providing real-time alerts to the astrophysical community on the detection of…

High Energy Astrophysical Phenomena · Physics 2023-07-31 Caterina Boscolo Meneguolo , Elisa Bernardini , Sarah Mancina

The year 2008 has witnessed remarkable steps in developing high energy neutrino telescopes. IceCube at the South Pole has been deployed with 40 of its planned 80 strings and reached half a cubic kilometer instrumented volume, in the…

Astrophysics · Physics 2009-11-13 Christian Spiering

Astrophysical and atmospheric neutrinos are important probes of the powerful accelerators that produce cosmic-rays with EeV energies. Understanding these accelerators is a key goal of neutrino observatories, along with searches for…

High Energy Astrophysical Phenomena · Physics 2019-06-07 Spencer R. Klein

IceCube detects more than 100,000 neutrinos per year in the GeV- to PeV-energy range. Among those, we have isolated a flux of high-energy cosmic neutrinos. I will discuss the instrument, the analysis of the data, the significance of the…

High Energy Physics - Phenomenology · Physics 2018-10-09 Francis Halzen

The completed IceCube Observatory, the first km^3 neutrino telescope, is already providing the most stringent limits on the flux of high energy cosmic neutrinos from point-like and diffuse galactic and extra-galactic sources. The…

High Energy Astrophysical Phenomena · Physics 2019-08-13 Paolo Desiati

The astrophysical neutrinos recently discovered by the IceCube neutrino telescope have the highest detected neutrino energies --- from TeV to PeV --- and travel the longest distances --- up to a few Gpc, the size of the observable Universe.…

High Energy Astrophysical Phenomena · Physics 2020-12-30 Mauricio Bustamante

IceCube was completed in December 2010. It forms a lattice of 5160 photomultiplier tubes that monitor a volume of ~ 1 cubic km in the deep Antarctic ice for particle induced photons. The telescope was designed to detect neutrinos with…

High Energy Astrophysical Phenomena · Physics 2019-08-14 Lutz Köpke

In 2018, the IceCube collaboration reported evidence for the identification of a blazar as an astrophysical neutrino source. That evidence is briefly summarised here before focusing on the prospects of tau neutrino physics in IceCube, both…

High Energy Physics - Experiment · Physics 2019-01-04 Daan van Eijk

Understanding cosmic acceleration mechanisms, such as jet formation in black holes, star collapses or binary mergers, and the propagation of accelerated particles in the universe is still a `work in progress' and requires a multi-messenger…

High Energy Astrophysical Phenomena · Physics 2019-08-21 Teresa Montaruli

The sources of galactic charged cosmic rays are so far unknown, because their arrival directions are randomized in the galactic magnetic field. Objects accelerating hadrons are expected to produce high-energy neutrinos. In addition, a…

High Energy Astrophysical Phenomena · Physics 2024-05-16 A. Sandrock