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Related papers: The Wavelength-shifting Optical Module (WOM) for t…

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Water Cherenkov detectors (WCDs) have been widely used in cosmic ray observations. This paper presents, for the first time, a cost-effective WCD design integrating a small photomultiplier tube (PMT) with wavelength-shifting fiber (WLS…

Instrumentation and Detectors · Physics 2025-02-26 H. Sun , Z. Huang , B. Wang , D. Liu , S. Ji , C. Feng

Optical unitary converter (OUC) that can convert a set of N mutually orthogonal optical modes into another set of arbitrary N orthogonal modes is expected to be the key device in diverse applications, including the optical communication,…

The IceCube collaboration is building a cubic kilometer scale neutrino telescope at a depth of 2 km at the geographic South Pole, utilizing the clear Antarctic ice as a Cherenkov medium to detect cosmic neutrinos. The IceCube observatory is…

High Energy Astrophysical Phenomena · Physics 2019-08-13 Timo Karg

A method of enhanced optical cooling (EOC) based on nonlinear selective interaction between particles and theirs amplified undulator radiation wavelets (URW) in storage rings is discussed. It leads to non-exponential fast damping. The…

Accelerator Physics · Physics 2007-09-24 E. G. Bessonov

The IceCube Neutrino Observatory is a Cherenkov detector located at the South Pole. Its main component consists of an in-ice array of optical modules instrumenting one cubic kilometer of deep Glacial ice. The DeepCore sub-detector is a…

High Energy Astrophysical Phenomena · Physics 2023-06-29 Shiqi Yu

The IceCube neutrino detector is built into the Antarctic ice sheet at the South Pole to measure high energy neutrinos. For this, 4800 photomultiplier tubes (PMTs) are being deployed at depths between 1450 and 2450 meters into the ice to…

Astrophysics · Physics 2010-04-30 J. Auffenberg , T. Gaisser , K. Helbing , T. Huege , T. Karg , A. Karle

The ability to modulate an optical field via an electric field is regarded as a key function of electro-optic interconnects, which are used in optical communications and information processing systems. One of the main required devices for…

Quantum Physics · Physics 2016-02-26 Li-Guo Qin , Zhong-Yang Wang , Shang-Qing Gong

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

The IceCube neutrino telescope monitors one cubic kilometer of deep Antarctic ice by detecting Cherenkov photons emitted from charged secondaries produced when neutrinos interact in the ice. The geometry of the detector, which comprises a…

High Energy Astrophysical Phenomena · Physics 2018-07-04 Lutz Köpke

We demonstrate an optical data wavelength converter based on an electrically driven photonic molecule structure comprising two coupled active silicon microring resonators. The converter, supplied by a continuous-wave (CW) microwave drive…

Optics · Physics 2020-05-12 Hayk Gevorgyan , Anatol Khilo , Miloš A. Popović

Electro-optic modulators (EOMs) are vital for optical imaging and information processing, with free-space devices enabling LiDAR and beam control. Lithium niobate (LN), powered by the strong Pockels effect and scalable LN-on-insulator…

Recent experiments showed that unity-order index change in a transparent conducting oxide (TCO) can be achieved in a metal-oxide-semiconductor (MOS) structure by accumulation charge. However, the ultrathin (~5nm) accumulation layer and…

Optics · Physics 2012-05-03 Zhaolin Lu , Wangshi Zhao , Kaifeng Shi

Chip-scale multimode optomechanical systems have unique benefits for sensing, metrology and quantum technologies relative to their single-mode counterparts. Slot-mode optomechanical crystals enable sideband resolution and large…

Four-wave mixing (FWM) is an important nonlinear optical phenomenon that underlines many of the discoveries and device applications since the laser was invented. Examples include parametric amplification, mode-locked pulses and frequency…

The IceCube neutrino observatory in operation at the South Pole, Antarctica, comprises three distinct components: a large buried array for ultrahigh energy neutrino detection, a surface air shower array, and a new buried component called…

Instrumentation and Methods for Astrophysics · Physics 2012-08-27 The IceCube Collaboration

We developed an ultra-compact high-resolution imaging system for cold atoms. Its only in-vacuum element is a multimode optical fiber with a diameter of $230\,\mu$m, which simultaneously collects light and guides it out of the vacuum…

Atomic Physics · Physics 2021-06-23 Nicolas Vitrant , Sébastien Garcia , Kilian Müller , Alexei Ourjoumtsev

The Precision IceCube Next Generation Upgrade (PINGU) is a proposed low-energy in-fill array of the IceCube Neutrino Observatory. Leveraging technology proven with IceCube, PINGU will feature the world's largest effective volume for…

Instrumentation and Detectors · Physics 2017-09-07 PINGU Collaboration

This paper presents a novel beacon light coding protocol, which enables fast and accurate identification of the beacons in an image. The protocol is provably robust to a predefined set of detection and decoding errors, and does not require…

Computer Vision and Pattern Recognition · Computer Science 2020-04-23 Roman Rabinovich , Ibrahim Jubran , Aaron Wetzler , Ron Kimmel

Low-light conditions and occluded scenarios impede object detection in real-world Internet of Things (IoT) applications like autonomous vehicles and security systems. While advanced machine learning models strive for accuracy, their…

Computer Vision and Pattern Recognition · Computer Science 2024-06-25 Shubhabrata Mukherjee , Cory Beard , Zhu Li

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 2025-07-22 R. Abbasi , M. Ackermann , J. Adams , S. K. Agarwalla , J. A. Aguilar , M. Ahlers , J. M. Alameddine , S. Ali , N. M. Amin , K. Andeen , G. Anton , C. Argüelles , Y. Ashida , S. Athanasiadou , J. Audehm , S. N. Axani , R. Babu , X. Bai , A. Balagopal V. , M. Baricevic , S. W. Barwick , V. Basu , R. Bay , J. Becker Tjus , P. Behrens , J. Beise , C. Bellenghi , B. Benkel , S. BenZvi , D. Berley , E. Bernardini , D. Z. Besson , A. Bishop , E. Blaufuss , L. Bloom , S. Blot , M. Bohmer , F. Bontempo , J. Y. Book Motzkin , J. Borowka , C. Boscolo Meneguolo , S. Böser , O. Botner , J. Böttcher , S. Bouma , J. Braun , B. Brinson , Z. Brisson-Tsavoussis , R. T. Burley , M. Bustamante , D. Butterfield , M. A. Campana , K. Carloni , M. Cataldo , S. Chattopadhyay , N. Chau , Z. Chen , D. Chirkin , S. Choi , B. A. Clark , R. Clark , A. Coleman , P. Coleman , G. H. Collin , D. A. Coloma Borja , J. M. Conrad , R. Corley , D. F. Cowen , C. Deaconu , C. De Clercq , S. De Kockere , J. J. DeLaunay , D. Delgado , T. Delmeulle , S. Deng , A. Desai , P. Desiati , K. D. de Vries , G. de Wasseige , J. C. Díaz-Vélez , S. DiKerby , M. Dittmer , G. Do , A. Domi , L. Draper , L. Dueser , H. Dujmovic , D. Durnford , K. Dutta , M. A. DuVernois , T. Egby , T. Ehrhardt , L. Eidenschink , A. Eimer , P. Eller , E. Ellinger , D. Elsässer , R. Engel , H. Erpenbeck , W. Esmail , S. Eulig , J. Evans , J. J. Evans , P. A. Evenson , K. L. Fan , K. Fang , K. Farrag , A. R. Fazely , A. Fedynitch , N. Feigl , C. Finley , L. Fischer , B. Flaggs , D. Fox , A. Franckowiak , T. Fujii , S. Fukami , P. Fürst , J. Gallagher , E. Ganster , A. Garcia , G. Garg , E. Genton , L. Gerhardt , A. Ghadimi , P. Giri , C. Glaser , T. Glüsenkamp , S. Goswami , A. Granados , D. Grant , S. J. Gray , S. Griffin , S. Griswold , D. Guevel , C. Günther , P. Gutjahr , C. Ha , C. Haack , A. Hallgren , S. Hallmann , L. Halve , F. Halzen , L. Hamacher , M. Ha Minh , M. Handt , K. Hanson , J. Hardin , A. A. Harnisch , P. Hatch , A. Haungs , J. Häußler , D. Heinen , K. Helbing , J. Hellrung , B. Hendricks , B. Henke , L. Hennig , F. Henningsen , J. Henrichs , L. Heuermann , N. Heyer , S. Hickford , A. Hidvegi , C. Hill , G. C. Hill , K. D. Hoffman , B. Hoffmann , D. Hooper , S. Hori , K. Hoshina , M. Hostert , W. Hou , T. Huber , T. Huege , E. Huesca Santiago , K. Hultqvist , R. Hussain , K. Hymon , A. Ishihara , T. Ishii , W. Iwakiri , M. Jacquart , S. Jain , A. Jaitly , O. Janik , M. Jansson , M. Jeong , M. Jin , O. Kalekin , N. Kamp , D. Kang , W. Kang , X. Kang , A. Kappes , L. Kardum , T. Karg , M. Karl , A. Karle , A. Katil , T. Katori , U. Katz , M. Kauer , J. L. Kelley , M. Khanal , A. Khatee Zathul , A. Kheirandish , J. Kiryluk , M. Kleifges , C. Klein , S. R. Klein , T. Kobayashi , Y. Kobayashi , A. Kochocki , H. Kolanoski , T. Kontrimas , L. Köpke , C. Kopper , D. J. Koskinen , P. Koundal , M. Kowalski , T. Kozynets , I. Kravchenko , N. Krieger , J. Krishnamoorthi , T. Krishnan , E. Krupczak , A. Kumar , E. Kun , N. Kurahashi , N. Lad , L. Lallement Arnaud , M. J. Larson , F. Lauber , K. Leonard DeHolton , A. Leszczyńska , J. Liao , M. Liu , M. Liubarska , M. Lohan , J. LoSecco , C. Love , L. Lu , F. Lucarelli , Y. Lyu , J. Madsen , E. Magnus , K. B. M. Mahn , Y. Makino , E. Manao , S. Mancina , S. Mandalia , W. Marie Sainte , I. C. Mariş , S. Marka , Z. Marka , M. Marsee , L. Marten , I. Martinez-Soler , R. Maruyama , F. Mayhew , F. McNally , J. V. Mead , K. Meagher , S. Mechbal , A. Medina , M. Meier , Y. Merckx , L. Merten , Z. Meyers , M. Mikhailova , A. Millsop , J. Mitchell , T. Montaruli , R. W. Moore , Y. Morii , R. Morse , A. Mosbrugger , M. Moulai , D. Mousadi , T. Mukherjee , M. Muzio , R. Naab , M. Nakos , A. Narayan , U. Naumann , J. Necker , A. Nelles , L. Neste , M. Neumann , H. Niederhausen , M. U. Nisa , K. Noda , A. Noell , A. Novikov , E. Oberla , A. Obertacke Pollmann , V. O'Dell , A. Olivas , R. Orsoe , J. Osborn , E. O'Sullivan , V. Palusova , L. Papp , A. Parenti , N. Park , E. N. Paudel , L. Paul , C. Pérez de los Heros , T. Pernice , T. C. Petersen , J. Peterson , A. Pizzuto , M. Plum , A. Pontén , Y. Popovych , M. Prado Rodriguez , B. Pries , R. Procter-Murphy , G. T. Przybylski , L. Pyras , J. Rack-Helleis , N. Rad , M. Rameez , M. Ravn , K. Rawlins , Z. Rechav , A. Rehman , E. Resconi , S. Reusch , C. D. Rho , W. Rhode , B. Riedel , M. Riegel , A. Rifaie , E. J. Roberts , S. Robertson , M. Rongen , C. Rott , T. Ruhe , L. Ruohan , D. Ryckbosch , I. Safa , J. Saffer , D. Salazar-Gallegos , P. Sampathkumar , A. Sandrock , P. Sandstrom , G. Sanger-Johnson , M. Santander , S. Sarkar , J. Savelberg , P. Savina , P. Schaile , M. Schaufel , H. Schieler , S. Schindler , L. Schlickmann , B. Schlüter , F. Schlüter , N. Schmeisser , T. Schmidt , F. G. Schröder , L. Schumacher , S. Schwirn , S. Sclafani , D. Seckel , L. Seen , M. Seikh , Z. Selcuk , S. Seunarine , M. H. Shaevitz , R. Shah , S. Shefali , N. Shimizu , M. Silva , B. Skrzypek , R. Snihur , J. Soedingrekso , A. Søgaard , D. Soldin , P. Soldin , G. Sommani , C. Spannfellner , G. M. Spiczak , C. Spiering , J. Stachurska , M. Stamatikos , T. Stanev , T. Stezelberger , J. Stoffels , T. Stürwald , T. Stuttard , G. W. Sullivan , I. Taboada , A. Taketa , T. Tamang , H. K. M. Tanaka , S. Ter-Antonyan , A. Terliuk , M. Thiesmeyer , W. G. Thompson , J. Thwaites , S. Tilav , K. Tollefson , J. Torres , S. Toscano , D. Tosi , A. Trettin , Y. Tsunesada , J. P. Twagirayezu , A. K. Upadhyay , K. Upshaw , A. Vaidyanathan , N. Valtonen-Mattila , J. Valverde , J. Vandenbroucke , T. van Eeden , N. van Eijndhoven , L. van Rootselaar , J. van Santen , F. J. Vara Carbonell , F. Varsi , D. Veberic , J. Veitch-Michaelis , M. Venugopal , S. Vergara Carrasco , S. Verpoest , A. Vieregg , A. Vijai , J. Villarreal , C. Walck , A. Wang , D. Washington , C. Weaver , P. Weigel , A. Weindl , J. Weldert , A. Y. Wen , C. Wendt , J. Werthebach , M. Weyrauch , N. Whitehorn , C. H. Wiebusch , D. R. Williams , S. Wissel , L. Witthaus , M. Wolf , G. Wörner , G. Wrede , S. Wren , X. W. Xu , J. P. Yañez , Y. Yao , E. Yildizci , S. Yoshida , R. Young , F. Yu , S. Yu , T. Yuan , A. Zegarelli , S. Zhang , Z. Zhang , P. Zhelnin , S. Zierke , P. Zilberman , M. Zimmerman , IceCube-Gen2 Collaboration
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