English
Related papers

Related papers: CTA sensitivity for probing cosmology and fundamen…

200 papers

The Cherenkov Telescope Array (CTA) is the major ground-based gamma-ray observatory planned for the next decade and beyond. Consisting of two large atmospheric Cherenkov telescope arrays (one in the southern hemisphere and one in the…

High Energy Astrophysical Phenomena · Physics 2019-06-12 The CTA Consortium , represented by Rene A. Ong

The upcoming Cherenkov Telescope Array (CTA) project is expected to provide unprecedented sensitivity in the low-energy ( <~100 GeV) range for Cherenkov telescopes. In order to exploit fully the potential of the telescopes the standard…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 Julian Sitarek , Dorota Sobczyńska , Michał Szanecki , Katarzyna Adamczyk

The Cherenkov Telescope Array (CTA) is the next generation ground-based $\gamma$-ray observatory. It will provide an order of magnitude better sensitivity and an extended energy coverage, 20 GeV - 300 TeV, relative to current Imaging…

High Energy Astrophysical Phenomena · Physics 2018-01-22 T. Hassan , A. Domínguez , J. Lefaucheur , D. Mazin , S. Pita , A. Zech

The Cherenkov Telescope Array (CTA) will be the world's leading ground-based gamma-ray observatory allowing us to study very high energy phenomena in the Universe. CTA will produce huge data sets, of the order of petabytes, and the…

Instrumentation and Methods for Astrophysics · Physics 2018-10-02 S. Mangano , C. Delgado , M. Bernardos , M. Lallena , J. J. Rodríguez Vázquez

We provide an updated assessment of the power of the Cherenkov Telescope Array (CTA) to search for thermally produced dark matter at the TeV scale, via the associated gamma-ray signal from pair-annihilating dark matter particles in the…

High Energy Astrophysical Phenomena · Physics 2021-02-02 The Cherenkov Telescope Array Consortium , : , A. Acharyya , R. Adam , C. Adams , I. Agudo , A. Aguirre-Santaella , R. Alfaro , J. Alfaro , C. Alispach , R. Aloisio , R. Alves Batista , L. Amati , G. Ambrosi , E. O. Angüner , L. A. Antonelli , C. Aramo , A. Araudo , T. Armstrong , F. Arqueros , K. Asano , Y. Ascasíbar , M. Ashley , C. Balazs , O. Ballester , A. Baquero Larriva , V. Barbosa Martins , M. Barkov , U. Barres de Almeida , J. A. Barrio , D. Bastieri , J. Becerra , G. Beck , J. Becker Tjus , W. Benbow , M. Benito , D. Berge , E. Bernardini , K. Bernlöhr , A. Berti , B. Bertucci , V. Beshley , B. Biasuzzi , A. Biland , E. Bissaldi , J. Biteau , O. Blanch , J. Blazek , F. Bocchino , C. Boisson , L. Bonneau Arbeletche , P. Bordas , Z. Bosnjak , E. Bottacini , V. Bozhilov , J. Bregeon , A. Brill , T. Bringmann , A. M. Brown , P. Brun , F. Brun , P. Bruno , A. Bulgarelli , M. Burton , A. Burtovoi , M. Buscemi , R. Cameron , M. Capasso , A. Caproni , R. Capuzzo-Dolcetta , P. Caraveo , R. Carosi , A. Carosi , S. Casanova , E. Cascone , F. Cassol , F. Catalani , D. Cauz , M. Cerruti , P. Chadwick , S. Chaty , A. Chen , M. Chernyakova , G. Chiaro , A. Chiavassa , M. Chikawa , J. Chudoba , M. Çolak , V. Conforti , R. Coniglione , F. Conte , J. L. Contreras , J. Coronado-Blazquez , A. Costa , H. Costantini , G. Cotter , P. Cristofari , A. D'Aì , F. D'Ammando , L. A. Damone , M. K. Daniel , F. Dazzi , A. De Angelis , V. De Caprio , R. de Cássia dos Anjos , E. M. de Gouveia Dal Pino , B. De Lotto , D. De Martino , E. de Oña Wilhelmi , F. De Palma , V. de Souza , C. Delgado , A. G. Delgado Giler , D. della Volpe , D. Depaoli , T. Di Girolamo , F. Di Pierro , L. Di Venere , S. Diebold , A. Dmytriiev , A. Domínguez , A. Donini , M. Doro , J. Ebr , C. Eckner , T. D. P. Edwards , T. R. N. Ekoume , D. Elsässer , C. Evoli , D. Falceta-Goncalves , E. Fedorova , S. Fegan , Q. Feng , G. Ferrand , G. Ferrara , E. Fiandrini , A. Fiasson , M. Filipovic , V. Fioretti , M. Fiori , L. Foffano , G. Fontaine , O. Fornieri , F. J. Franco , S. Fukami , Y. Fukui , D. Gaggero , G. Galaz , V. Gammaldi , E. Garcia , M. Garczarczyk , D. Gascon , A. Gent , A. Ghalumyan , F. Gianotti , M. Giarrusso , G. Giavitto , N. Giglietto , F. Giordano , A. Giuliani , J. Glicenstein , R. Gnatyk , P. Goldoni , M. M. González , K. Gourgouliatos , J. Granot , D. Grasso , J. Green , A. Grillo , O. Gueta , S. Gunji , A. Halim , T. Hassan , M. Heller , S. Hernández Cadena , N. Hiroshima , B. Hnatyk , W. Hofmann , J. Holder , D. Horan , J. Hörandel , P. Horvath , T. Hovatta , M. Hrabovsky , D. Hrupec , G. Hughes , T. B. Humensky , M. Hütten , M. Iarlori , T. Inada , S. Inoue , F. Iocco , M. Iori , M. Jamrozy , P. Janecek , W. Jin , L. Jouvin , J. Jurysek , E. Karukes , K. Katarzyński , D. Kazanas , D. Kerszberg , M. C. Kherlakian , R. Kissmann , J. Knödlseder , Y. Kobayashi , K. Kohri , N. Komin , H. Kubo , J. Kushida , G. Lamanna , J. Lapington , P. Laporte , M. A. Leigui de Oliveira , J. Lenain , F. Leone , G. Leto , E. Lindfors , T. Lohse , S. Lombardi , F. Longo , A. Lopez , M. López , R. López-Coto , S. Loporchio , P. L. Luque-Escamilla , E. Mach , C. Maggio , G. Maier , M. Mallamaci , R. Malta Nunes de Almeida , D. Mandat , M. Manganaro , S. Mangano , G. Manicò , M. Marculewicz , M. Mariotti , S. Markoff , P. Marquez , J. Martí , O. Martinez , M. Martínez , G. Martínez , H. Martínez-Huerta , G. Maurin , D. Mazin , J. D. Mbarubucyeye , D. Medina Miranda , M. Meyer , M. Miceli , T. Miener , M. Minev , J. M. Miranda , R. Mirzoyan , T. Mizuno , B. Mode , R. Moderski , L. Mohrmann , E. Molina , T. Montaruli , A. Moralejo , D. Morcuende-Parrilla , A. Morselli , R. Mukherjee , C. Mundell , A. Nagai , T. Nakamori , R. Nemmen , J. Niemiec , D. Nieto , M. Nikołajuk , D. Ninci , K. Noda , D. Nosek , S. Nozaki , Y. Ohira , M. Ohishi , Y. Ohtani , T. Oka , A. Okumura , R. A. Ong , M. Orienti , R. Orito , M. Orlandini , S. Orlando , E. Orlando , M. Ostrowski , I. Oya , I. Pagano , A. Pagliaro , M. Palatiello , F. R. Pantaleo , J. M. Paredes , G. Pareschi , N. Parmiggiani , B. Patricelli , L. Pavletić , A. Pe'er , M. Pecimotika , J. Pérez-Romero , M. Persic , O. Petruk , K. Pfrang , G. Piano , P. Piatteli , E. Pietropaolo , R. Pillera , B. Pilszyk , F. Pintore , M. Pohl , V. Poireau , R. R. Prado , E. Prandini , J. Prast , G. Principe , H. Prokoph , M. Prouza , H. Przybilski , G. Pühlhofer , M. L. Pumo , F. Queiroz , A. Quirrenbach , S. Rainò , R. Rando , S. Razzaque , S. Recchia , O. Reimer , A. Reisenegger , Y. Renier , W. Rhode , D. Ribeiro , M. Ribó , T. Richtler , J. Rico , F. Rieger , L. Rinchiuso , V. Rizi , J. Rodriguez , G. Rodriguez Fernandez , J. C. Rodriguez Ramirez , G. Rojas , P. Romano , G. Romeo , J. Rosado , G. Rowell , B. Rudak , F. Russo , I. Sadeh , E. Sæther Hatlen , S. Safi-Harb , F. Salesa Greus , G. Salina , D. Sanchez , M. Sánchez-Conde , P. Sangiorgi , H. Sano , M. Santander , E. M. Santos , R. Santos-Lima , A. Sanuy , S. Sarkar , F. G. Saturni , U. Sawangwit , F. Schussler , U. Schwanke , E. Sciacca , S. Scuderi , M. Seglar-Arroyo , O. Sergijenko , M. Servillat , K. Seweryn , A. Shalchi , P. Sharma , R. C. Shellard , H. Siejkowski , J. Silk , C. Siqueira , V. Sliusar , A. Słowikowska , A. Sokolenko , H. Sol , S. Spencer , A. Stamerra , S. Stanič , R. Starling , T. Stolarczyk , U. Straumann , J. Strišković , Y. Suda , T. Suomijarvi , P. Świerk , F. Tavecchio , L. Taylor , L. A. Tejedor , M. Teshima , V. Testa , L. Tibaldo , C. J. Todero Peixoto , F. Tokanai , D. Tonev , G. Tosti , L. Tosti , N. Tothill , S. Truzzi , P. Travnicek , V. Vagelli , B. Vallage , P. Vallania , C. van Eldik , J. Vandenbroucke , G. S. Varner , V. Vassiliev , M. Vázquez Acosta , M. Vecchi , S. Ventura , S. Vercellone , S. Vergani , G. Verna , A. Viana , C. F. Vigorito , J. Vink , V. Vitale , S. Vorobiov , I. Vovk , T. Vuillaume , S. J. Wagner , R. Walter , J. Watson , C. Weniger , R. White , M. White , R. Wiemann , A. Wierzcholska , M. Will , D. A. Williams , R. Wischnewski , S. Yanagita , L. Yang , T. Yoshikoshi , M. Zacharias , G. Zaharijas , A. A. Zakaria , L. Zampieri , R. Zanin , D. Zaric , M. Zavrtanik , D. Zavrtanik , A. A. Zdziarski , A. Zech , H. Zechlin , V. I. Zhdanov , M. Živec

We discuss the prospects for indirect detection of dark matter (DM) with the Cherenkov Telescope Array (CTA), a future ground-based gamma-ray observatory that will be sensitive to gamma rays in the energy range from a few tens of GeV to 100…

High Energy Astrophysical Phenomena · Physics 2013-09-24 Matthew Wood , Jim Buckley , Seth Digel , Stefan Funk , Daniel Nieto , Miguel A. Sanchez-Conde

The Cherenkov Telescope Array (CTA) observatory will probe the non-thermal universe above 20 GeV up to several hundreds of TeV with a significant improvement in sensitivity and angular resolution compared to current experiments. Its…

High Energy Astrophysical Phenomena · Physics 2017-10-25 Julien Lefaucheur , Catherine Boisson , Zeljka Bosnjak , Matteo Cerruti , Christoph Deil , Jean-Philippe Lenain , Santiago Pita , Andreas Zech

The Cherenkov Telescope Array (CTA) is an international initiative to build the next generation ground-based very-high-energy gamma-ray observatory. Full sky coverage will be assured by two arrays, one located on each of the northern and…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 Maria Concetta Maccarone , Dan Parsons , Markus Gaug , Raquel de los Reyes

The Cherenkov Telescope Array (CTA) is about to enter construction phase and one of its main key science projects is to perform an unbiased survey in search of extragalactic sources. We make use of both the latest blazar gamma--ray…

Instrumentation and Methods for Astrophysics · Physics 2017-07-04 Andrea De Franco , Yoshiyuki Inoue , Miguel A. Sánchez-Conde , Garret Cotter

The Cherenkov Telescope Array (CTA) is the next-generation gamma-ray observatory with sensitivity in the energy range from 20 GeV to beyond 300 TeV. CTA is proposed to consist of two arrays of 40-100 imaging atmospheric Cherenkov…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 G. Maier , L. Arrabito , K. Bernlöhr , J. Bregeon , F. Di Pierro , T. Hassan , T. Jogler , J. Hinton , A. Moralejo , M. Wood

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

We compute the sensitivity to dark matter annihilations for the forthcoming large Cherenkov Telescope Array (CTA) in several primary channels and over a range of dark matter masses from 30 GeV up to 80 TeV. For all channels, we include…

High Energy Astrophysical Phenomena · Physics 2015-06-29 Valentin Lefranc , Emmanuel Moulin , Paolo Panci , Joseph Silk

The Cherenkov Telescope Array (CTA) is the next generation facility of Imaging Atmospheric Cherenkov Telescopes. It will reach unprecedented sensitivity and energy resolution in very-high-energy gamma-ray astronomy. CTA will detect…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 M. Doro , M. Daniel , R. de los Reyes , M. Gaug , M. C. Maccarone

The measurement of $\gamma$-rays originating from active galactic nuclei offers the unique opportunity to study the propagation of very-high-energy photons over cosmological distances. Most prominently, $\gamma$-rays interact with the…

The Cherenkov Telescope Array (CTA) represents the next generation of ground based instruments for Very High Energy gamma-ray astronomy. It is expected to improve on the sensitivity of current instruments by an order of magnitude and…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 T. Hassan , L. Arrabito , K. Bernlör , J. Bregeon , J. Hinton , T. Jogler , G. Maier , A. Moralejo , F. Di Pierro , M. Wood

The assumption of Lorentz invariance is one of the founding principles of modern physics and violation of that would have deep consequences to our understanding of the universe. Potential signatures of such a violation could range from…

High Energy Astrophysical Phenomena · Physics 2019-08-14 M. K. Daniel , D. Emmanoulopoulos , M. Fairbairn , N. Otte

The Cherenkov Telescope Array (CTA) is the next generation observatory for the study of very high-energy gamma rays from about 20 GeV up to 300 TeV. Thanks to the large effective area and field of view, the CTA observatory will be…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 Andrea Zoli , Andrea Bulgarelli , Adriano De Rosa , Alessio Aboudan , Valentina Fioretti , Giovanni De Cesare , Ramin Marx

Very high energy (VHE; E > 100 GeV) gamma-rays provide a unique probe into the non-thermal processes in the universe. The ground-based Imaging Air Cherenkov telescopes (IACTs) for detecting VHE gamma-rays have been perfected, so a…

High Energy Astrophysical Phenomena · Physics 2019-08-15 Massimo Persic

The Cherenkov Telescope Array (CTA) is a future ground-based gamma-ray observatory that will provide unprecedented sensitivity and angular resolution for the detection of gamma rays with energies above a few tens of GeV. In comparison to…

Instrumentation and Methods for Astrophysics · Physics 2019-08-07 Victor Barbosa Martins , Markus Garczarczyk , Gerrit Spengler , Ullrich Schwanke

The Cherenkov Telescope Array (CTA) will be the world's first observatory for detecting gamma-rays from astrophysical phenomena and is now in its prototyping phase with construction expected to begin in 2015/16. In this work we present the…

Instrumentation and Methods for Astrophysics · Physics 2019-08-14 Cameron B. Rulten , Sam J. Nolan