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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. 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Zdziarski , A. Zech , H. Zechlin , V. I. Zhdanov , A. Ziegler , J. Zorn

The Cherenkov Telescope Array (CTA) is a future gamma-ray observatory that is planned to significantly improve upon the sensitivity and precision of the current generation of Cherenkov telescopes. The observatory will consist of several…

The Cherenkov Telescope Array (CTA), is an international project for the next generation ground- based observatory for gamma-ray astronomy in the energy range from 20 GeV to 300 TeV. The sensitivity in the core energy range will be…

Instrumentation and Methods for Astrophysics · Physics 2015-09-07 Markus Garczarczyk , Stefan Schlenstedt , Louise Oakes , Ullrich Schwanke , the MST Team

The Cherenkov Telescope Array (CTA) is planned to be the next generation ground based observatory for very high energy (VHE) gamma-ray astronomy. Gamma-rays provide a powerful insight into the non-thermal universe and hopefully a unique…

Instrumentation and Methods for Astrophysics · Physics 2016-06-28 Ciro Bigongiari

The Cherenkov Telescope Array (CTA) is the future ground-based gamma-ray observatory and will be composed of two arrays of imaging atmospheric Cherenkov telescopes (IACTs) located in the Northern and Southern hemispheres respectively. The…

The Cherenkov Telescope Array (CTA) represents the next generation of very high-energy gamma-ray observatory, which will provide broad coverage of gamma rays from 20 GeV to 300 TeV with unprecedented sensitivity. CTA will employ three…

Instrumentation and Methods for Astrophysics · Physics 2019-07-23 S. Sakurai , D. Depaoli , R. López-Coto

The Cherenkov Telescope Array (CTA) will be the next generation ground-based gamma-ray observatory. CTA consists of different telescope types of which the largest ones (Large-Sized Telescopes, LSTs) cover the lower energy range, between 20…

Instrumentation and Methods for Astrophysics · Physics 2023-07-13 D. Depaoli , A. Chiavassa , D. Corti , F. Di Pierro , M. Mariotti , R. Rando

The Cherenkov Telescope Array (CTA) is a next generation ground-based very-high-energy gamma-ray observatory that will allow for observations in the >10 GeV range with unprecedented photon statistics and sensitivity. This will enable the…

High Energy Astrophysical Phenomena · Physics 2021-08-11 Alessandro Carosi , Alicia López-Oramas , Francesco Longo

For the proposed Cherenkov Telescope Array (CTA), a post-calibration point-source location accuracy of 3 seconds of arc is aimed for under favorable observing conditions and for gamma-ray energies exceeding 100 GeV. In this contribution,…

Instrumentation and Methods for Astrophysics · Physics 2015-09-08 Stefan Eschbach , Alexander Ziegler , Christopher van Eldik , Johannes Veh , David Berge , Markus Gaug

The Cherenkov Telescope Array (CTA) is a next-generation ground-based observatory for g -rays with energies between some ten GeV and a few hundred TeV. CTA is currently in the advanced design phase and will consist of arrays with different…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 M. Shayduk , S. Vorobiov , U. Schwanke , R. Wischnewski

The Cherenkov Telescopes Array (CTA) is planned to be an Observatory for very high energy gamma ray astronomy and will consist of several tens of telescopes which account for a reflective surface of more than 10000 m$^2$. The mirrors of…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 M. C. Medina , B. Garcia , J. Maya , A. Mancilla , J. J. Larrarte , E. Rasztocky , M. Benitez , J. Dipold , M. Platino

The Cherenkov Telescope Array (CTA) consortium aims to create the next generation Very High Energy gamma-ray observatory. It will be devoted to the observation of gamma rays over a wide band of energy, from 20 GeV to 300 TeV. Three…

Instrumentation and Methods for Astrophysics · Physics 2015-08-27 Jean-Laurent Dournaux , Jean-Michel Huet , Delphine Dumas , Jean-Philippe Amans , Gilles Fasola , Philippe Laporte , Jean-Jacques Bousquet , Hélène Sol

The Cherenkov Telescope Array is the main global project of ground-based gamma-ray astronomy for the coming decades. Performance will be significantly improved relative to present instruments, allowing a new insight into the high-energy…

High Energy Astrophysical Phenomena · Physics 2017-09-27 Sol , H. , Greenshaw , T. , Le Blanc , O. , White , R

The Cherenkov Telescope Array is a next generation ground-based gamma-ray observatory de- signed to detect photons in the 20 GeV to 300 TeV energy range. With a sensitivity improvement of up to one order of magnitude on the entire energy…

High Energy Astrophysical Phenomena · Physics 2019-08-14 Roberta Zanin , Jamie Holder

The planned Cherenkov Telescope Array (CTA), a future ground-based Very-High-Energy (VHE) gamma-ray observatory, will be the largest project of its kind. It aims to provide an order of magnitude increase in sensitivity compared to currently…

The Cherenkov Telescope Array (CTA) will be the next generation ground-based observatory for very-high-energy (VHE) gamma-ray astronomy, with the deployment of tens of highly sensitive and fast-reacting Cherenkov telescopes. It will cover a…

The Cherenkov Telescope Array (CTA) is the next-generation gamma-ray observatory that is expected to reach one order of magnitude better sensitivity than that of current telescope arrays. The Large-Sized Telescopes (LSTs) have an essential…

Instrumentation and Methods for Astrophysics · Physics 2021-08-23 Yukiho Kobayashi , Akira Okumura , Franca Cassol , Hideaki Katagiri , Julian Sitarek , Paweł Gliwny , Seiya Nozaki , Yuto Nogami

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

The Cherenkov Telescope Array (CTA) is the next-generation gamma-ray observatory currently under construction. It will improve over the current generation of imaging atmospheric Cherenkov telescopes (IACTs) by a factor of five to ten in…

Instrumentation and Methods for Astrophysics · Physics 2023-02-24 Maximilian Nöthe , Karl Kosack , Lukas Nickel , Michele Peresano