English
Related papers

Related papers: Timing performances of NectarCAM, a Medium Sized T…

200 papers

The 499 pixel photomultiplier cameras of the VERITAS gamma ray telescopes are instrumented with 500MHz sampling Flash ADCs. This paper describes a preliminary investigation of the best methods by which to exploit this information so as to…

Astrophysics · Physics 2019-08-14 J. Holder

A FRAM (F/(Ph)otometric Robotic Atmospheric Monitor) telescope is a system of a robotic mount, a large-format CCD camera and a fast telephoto lens that can be used for atmospheric monitoring at any site when information about the…

Atmospheric monitoring is an integral part of the design of the Cherenkov Telescope Array (CTA), as atmospheric conditions affect the observations by Imaging Atmospheric Cherenkov Telescopes (IACT) in multiple ways. The variable optical…

Instrumentation and Methods for Astrophysics · Physics 2018-01-22 Jan Ebr , Tomasz Bulik , Lluis Font , Markus Gaug , Petr Janecek , Jakub Jurysek , Dusan Mandat , Stanislav Stefanik , Laura Valore , George Vasileiadis

In October 2019 the central 28m telescope of the H.E.S.S. experiment has been upgraded with a new camera. The camera is based on the FlashCam design which has been developed in view of a possible future implementation in the medium-sized…

The Cherenkov Telescope Array (CTA) project, led by an international collaboration of institutes, aims to create the world's largest next generation observatory for Very High Energy (VHE) gamma-ray astronomy. It will be devoted to…

Instrumentation and Methods for Astrophysics · Physics 2019-09-26 A. Dmytriiev , L. Dangeon , G. Fasola , H. Sol , A. Zech , J. Gironnet , O. Le Blanc , J. P. Amans , G. Buchholtz , J. L. Dournaux , F. de Frondat , D. Horville , J. M. Huet , I. Jégouzo , P. Laporte

The Cherenkov Telescope Array Observatory (CTAO) will be the next-generation major ground-based gamma-ray observatory. It will be made up of two large arrays of imaging atmospheric Cherenkov telescopes (IACTs), with one site in the Northern…

High Energy Astrophysical Phenomena · Physics 2026-02-03 Francesco Schiavone

The Cherenkov Telescope Array is a world-wide project for a new generation of ground-based Cherenkov telescopes of the Imaging class with the aim of exploring the highest energy region of the electromagnetic spectrum. With two planned…

Imaging atmospheric Cherenkov telescopes (IACTs) used for ground-based gamma-ray astronomy at TeV energies use reflectors with areas on the order of 100m$^2$ as their primary optic. These tessellated reflectors comprise hundreds of mirror…

Instrumentation and Methods for Astrophysics · Physics 2014-11-20 A. McCann , D. Hanna , J. Kildea , M. McCutcheon

The Cherenkov Telescope Array (CTA) is a project for the construction of a next generation VHE gamma ray observatory with full sky coverage. Its aim is improving by about one order of magnitude the sensitivity of the existing installations,…

Instrumentation and Methods for Astrophysics · Physics 2011-11-10 The CTA Consortium

The Cherenkov Telescope Array (CTA) is the next generation ground-based observatory for gamma-ray astronomy at very-high energies. It will be capable of detecting gamma rays in the energy range from 20 GeV to more than 300 TeV with…

Instrumentation and Methods for Astrophysics · Physics 2019-07-22 Daniel Mazin

Silicon photomultipliers are very versatile photo detectors due to their high photon detection efficiency, fast response, single photon counting capability, high amplification, and their insensitivity to magnetic fields. At our institute we…

Nuclear Experiment · Physics 2015-05-18 G. S. M. Ahmed , P. Bühler , J. Marton , K. Suzuki

The small size telescopes (SSTs), spread over an area of several square km, dominate the CTA sensitivity in the photon energy range from a few TeV to over 100 TeV, enabling for the detailed exploration of the very high energy gamma-ray sky.…

Instrumentation and Methods for Astrophysics · Physics 2015-08-27 Teresa Montaruli , Giovanni Pareschi , Tim Greenshaw

The camera of the Large Size Telescopes (LSTs) of the Cherenkov Telescope Array (CTA) consists of 265 photosensor modules, each of them containing 7 photomultiplier tubes (PMTs), a slow control board (SCB), a readout board, and a trigger…

Instrumentation and Methods for Astrophysics · Physics 2015-09-07 D. Hadasch , Y. Konno , H. Kubo , D. Nakajima , H. Ohoka , T. Saito , M. Teshima , the LST Team

The Cherenkov Telescope Array (CTA) will be the next generation observatory employing different types of Cherenkov telescopes for the detection of particle showers initiated by very-high-energy gamma rays. A good knowledge of the Earth's…

Instrumentation and Methods for Astrophysics · Physics 2018-01-22 Stanislav Stefanik , Raquel de los Reyes , Dalibor Nosek

The Cherenkov Telescope Array (CTA) will operate several types of telescopes and cameras. The individual camera trigger rates will vary much - from 0.6 to 15 kHz - while the content of the raw data will be heterogeneous. Raw data streams of…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 E. Lyard , R. Walter

The construction of the Cherenkov Telescope Array is expected to start soon. We will present the baseline methods and their extensions currently foreseen to calibrate the observatory. These are bound to achieve the strong requirements on…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 Markus Gaug , Michael Daniel , David Berge , Raquel de los Reyes , Michele Doro , Andreas Foerster , Maria Concetta Maccarone , Dan Parsons , Christopher van Eldik

The Cherenkov Telescope Array (CTA) is the next generation very high energy gamma-ray observatory. It will consist of three classes of telescopes, of large, medium and small sizes. The small telescopes, of 4 m diameter, will be dedicated to…

The Cherenkov Telescope Array, CTA, will be the major global observatory for very high energy gamma-ray astronomy over the next decade and beyond. The scientific potential of CTA is extremely broad: from understanding the role of…

Instrumentation and Methods for Astrophysics · Physics 2019-02-27 The Cherenkov Telescope Array Consortium , : , B. S. Acharya , I. Agudo , I. Al Samarai , R. Alfaro , J. Alfaro , C. Alispach , R. Alves Batista , J. -P. Amans , E. Amato , G. Ambrosi , E. Antolini , L. A. Antonelli , C. Aramo , M. Araya , T. Armstrong , F. Arqueros , L. Arrabito , K. Asano , M. Ashley , M. Backes , C. Balazs , M. Balbo , O. Ballester , J. Ballet , A. Bamba , M. Barkov , U. Barres de Almeida , J. A. Barrio , D. Bastieri , Y. Becherini , A. Belfiore , W. Benbow , D. Berge , E. Bernardini , M. G. Bernardini , M. Bernardos , K. Bernlöhr , B. Bertucci , B. Biasuzzi , C. Bigongiari , A. Biland , E. Bissaldi , J. Biteau , O. Blanch , J. Blazek , C. Boisson , J. Bolmont , G. Bonanno , A. Bonardi , C. Bonavolontà , G. Bonnoli , Z. Bosnjak , M. Böttcher , C. Braiding , J. Bregeon , A. Brill , A. M. Brown , P. Brun , G. Brunetti , T. Buanes , J. Buckley , V. Bugaev , R. Bühler , A. Bulgarelli , T. Bulik , M. Burton , A. Burtovoi , G. Busetto , R. Canestrari , M. Capalbi , F. Capitanio , A. Caproni , P. Caraveo , V. Cárdenas , C. Carlile , R. Carosi , E. Carquín , J. Carr , S. Casanova , E. Cascone , F. Catalani , O. Catalano , D. Cauz , M. Cerruti , P. Chadwick , S. Chaty , R. C. G. Chaves , A. Chen , X. Chen , M. Chernyakova , M. Chikawa , A. Christov , J. Chudoba , M. Cieślar , V. Coco , S. Colafrancesco , P. Colin , V. Conforti , V. Connaughton , J. Conrad , J. L. Contreras , J. Cortina , A. Costa , H. Costantini , G. Cotter , S. Covino , R. Crocker , J. Cuadra , O. Cuevas , P. Cumani , A. D'Aì , F. D'Ammando , P. D'Avanzo , D. D'Urso , M. Daniel , I. Davids , B. Dawson , F. Dazzi , A. De Angelis , R. de Cássia dos Anjos , G. De Cesare , A. De Franco , E. M. de Gouveia Dal Pino , I. de la Calle , R. de los Reyes Lopez , B. De Lotto , A. De Luca , M. De Lucia , M. de Naurois , E. de Oña Wilhelmi , F. De Palma , F. De Persio , V. de Souza , C. Deil , M. Del Santo , C. Delgado , D. della Volpe , T. Di Girolamo , F. Di Pierro , L. Di Venere , C. Díaz , C. Dib , S. Diebold , A. Djannati-Ataï , A. Domínguez , D. Dominis Prester , D. Dorner , M. Doro , H. Drass , D. Dravins , G. Dubus , V. V. Dwarkadas , J. Ebr , C. Eckner , K. Egberts , S. Einecke , T. R. N. Ekoume , D. Elsässer , J. -P. Ernenwein , C. Espinoza , C. Evoli , M. Fairbairn , D. Falceta-Goncalves , A. Falcone , C. Farnier , G. Fasola , E. Fedorova , S. Fegan , M. Fernandez-Alonso , A. Fernández-Barral , G. Ferrand , M. Fesquet , M. Filipovic , V. Fioretti , G. Fontaine , M. Fornasa , L. Fortson , L. Freixas Coromina , C. Fruck , Y. Fujita , Y. Fukazawa , S. Funk , M. Füßling , S. Gabici , A. Gadola , Y. Gallant , B. Garcia , R. Garcia López , M. Garczarczyk , J. Gaskins , T. Gasparetto , M. Gaug , L. Gerard , G. Giavitto , N. Giglietto , P. Giommi , F. Giordano , E. Giro , M. Giroletti , A. Giuliani , J. -F. Glicenstein , R. Gnatyk , N. Godinovic , P. Goldoni , G. Gómez-Vargas , M. M. González , J. M. González , D. Götz , J. Graham , P. Grandi , J. Granot , A. J. Green , T. Greenshaw , S. Griffiths , S. Gunji , D. Hadasch , S. Hara , M. J. Hardcastle , T. Hassan , K. Hayashi , M. Hayashida , M. Heller , J. C. Helo , G. Hermann , J. Hinton , B. Hnatyk , W. Hofmann , J. Holder , D. Horan , J. Hörandel , D. Horns , P. Horvath , T. Hovatta , M. Hrabovsky , D. Hrupec , T. B. Humensky , M. Hütten , M. Iarlori , T. Inada , Y. Inome , S. Inoue , T. Inoue , Y. Inoue , F. Iocco , K. Ioka , M. Iori , K. Ishio , Y. Iwamura , M. Jamrozy , P. Janecek , D. Jankowsky , P. Jean , I. Jung-Richardt , J. Jurysek , P. Kaaret , S. Karkar , H. Katagiri , U. Katz , N. Kawanaka , D. Kazanas , B. Khélifi , D. B. Kieda , S. Kimeswenger , S. Kimura , S. Kisaka , J. Knapp , J. Knödlseder , B. Koch , K. Kohri , N. Komin , K. Kosack , M. Kraus , M. Krause , F. Krauß , H. Kubo , G. Kukec Mezek , H. Kuroda , J. Kushida , N. La Palombara , G. Lamanna , R. G. Lang , J. Lapington , O. Le Blanc , S. Leach , J. -P. Lees , J. Lefaucheur , M. A. Leigui de Oliveira , J. -P. Lenain , R. Lico , M. Limon , E. Lindfors , T. Lohse , S. Lombardi , F. Longo , M. López , R. López-Coto , C. -C. Lu , F. Lucarelli , P. L. Luque-Escamilla , E. Lyard , M. C. Maccarone , G. Maier , P. Majumdar , G. Malaguti , D. Mandat , G. Maneva , M. Manganaro , S. Mangano , A. Marcowith , J. Marín , S. Markoff , J. Martí , P. Martin , M. Martínez , G. Martínez , N. Masetti , S. Masuda , G. Maurin , N. Maxted , D. Mazin , C. Medina , A. Melandri , S. Mereghetti , M. Meyer , I. A. Minaya , N. Mirabal , R. Mirzoyan , A. Mitchell , T. Mizuno , R. Moderski , M. Mohammed , L. Mohrmann , T. Montaruli , A. Moralejo , D. Morcuende-Parrilla , K. Mori , G. Morlino , P. Morris , A. Morselli , E. Moulin , R. Mukherjee , C. Mundell , T. Murach , H. Muraishi , K. Murase , A. Nagai , S. Nagataki , T. Nagayoshi , T. Naito , T. Nakamori , Y. Nakamura , J. Niemiec , D. Nieto , M. Nikołajuk , K. Nishijima , K. Noda , D. Nosek , B. Novosyadlyj , S. Nozaki , P. O'Brien , L. Oakes , Y. Ohira , M. Ohishi , S. Ohm , N. Okazaki , A. Okumura , R. A. Ong , M. Orienti , R. Orito , J. P. Osborne , M. Ostrowski , N. Otte , I. Oya , M. Padovani , A. Paizis , M. Palatiello , M. Palatka , R. Paoletti , J. M. Paredes , G. Pareschi , R. D. Parsons , A. Pe'er , M. Pech , G. Pedaletti , M. Perri , M. Persic , A. Petrashyk , P. Petrucci , O. Petruk , B. Peyaud , M. Pfeifer , G. Piano , A. Pisarski , S. Pita , M. Pohl , M. Polo , D. Pozo , E. Prandini , J. Prast , G. Principe , D. Prokhorov , H. Prokoph , M. Prouza , G. Pühlhofer , M. Punch , S. Pürckhauer , F. Queiroz , A. Quirrenbach , S. Rainò , S. Razzaque , O. Reimer , A. Reimer , A. Reisenegger , M. Renaud , A. H. Rezaeian , W. Rhode , D. Ribeiro , M. Ribó , T. Richtler , J. Rico , F. Rieger , M. Riquelme , S. Rivoire , V. Rizi , J. Rodriguez , G. Rodriguez Fernandez , J. J. Rodríguez Vázquez , G. Rojas , P. Romano , G. Romeo , J. Rosado , A. C. Rovero , G. Rowell , B. Rudak , A. Rugliancich , C. Rulten , I. Sadeh , S. Safi-Harb , T. Saito , N. Sakaki , S. Sakurai , G. Salina , M. Sánchez-Conde , H. Sandaker , A. Sandoval , P. Sangiorgi , M. Sanguillon , H. Sano , M. Santander , S. Sarkar , K. Satalecka , F. G. Saturni , E. J. Schioppa , S. Schlenstedt , M. Schneider , H. Schoorlemmer , P. Schovanek , A. Schulz , F. Schussler , U. Schwanke , E. Sciacca , S. Scuderi , I. Seitenzahl , D. Semikoz , O. Sergijenko , M. Servillat , A. Shalchi , R. C. Shellard , L. Sidoli , H. Siejkowski , A. Sillanpää , G. Sironi , J. Sitarek , V. Sliusar , A. Slowikowska , H. Sol , A. Stamerra , S. Stanič , R. Starling , Ł. Stawarz , S. Stefanik , M. Stephan , T. Stolarczyk , G. Stratta , U. Straumann , T. Suomijarvi , A. D. Supanitsky , G. Tagliaferri , H. Tajima , M. Tavani , F. Tavecchio , J. -P. Tavernet , K. Tayabaly , L. A. Tejedor , P. Temnikov , Y. Terada , R. Terrier , T. Terzic , M. Teshima , V. Testa , S. Thoudam , W. Tian , L. Tibaldo , M. Tluczykont , C. J. Todero Peixoto , F. Tokanai , J. Tomastik , D. Tonev , M. Tornikoski , D. F. Torres , E. Torresi , G. Tosti , N. Tothill , G. Tovmassian , P. Travnicek , C. Trichard , M. Trifoglio , I. Troyano Pujadas , S. Tsujimoto , G. Umana , V. Vagelli , F. Vagnetti , M. Valentino , P. Vallania , L. Valore , C. van Eldik , J. Vandenbroucke , G. S. Varner , G. Vasileiadis , V. Vassiliev , M. Vázquez Acosta , M. Vecchi , A. Vega , S. Vercellone , P. Veres , S. Vergani , V. Verzi , G. P. Vettolani , A. Viana , C. Vigorito , J. Villanueva , H. Voelk , A. Vollhardt , S. Vorobiov , M. Vrastil , T. Vuillaume , S. J. Wagner , R. Wagner , R. Walter , J. E. Ward , D. Warren , J. J. Watson , F. Werner , M. White , R. White , A. Wierzcholska , P. Wilcox , M. Will , D. A. Williams , R. Wischnewski , M. Wood , T. Yamamoto , R. Yamazaki , S. Yanagita , L. Yang , T. Yoshida , S. Yoshiike , T. Yoshikoshi , M. Zacharias , G. Zaharijas , L. Zampieri , F. Zandanel , R. Zanin , M. Zavrtanik , D. Zavrtanik , A. A. Zdziarski , A. Zech , H. Zechlin , V. I. Zhdanov , A. Ziegler , J. Zorn

The Cherenkov Telescope Array (CTA) observatory will be deployed over two sites in the two hemispheres. Both sites will be equipped with four Large Size Telescopes (LSTs), which are crucial to achieve the science goals of CTA in the 20-200…

Instrumentation and Methods for Astrophysics · Physics 2017-08-09 D. Mazin , J. Cortina , M. Teshima , the CTA Consortium