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The annihilations of WIMPs produce high energy gamma-rays in the final state. These high energy gamma-rays may be detected by imaging atmospheric Cherenkov telescopes (IACTs). Amongst the plausible targets are the Galactic Center, the…

High Energy Astrophysical Phenomena · Physics 2014-11-20 E. Moulin

MAGIC is currently the largest single dish ground-based imaging air Cherenkov telescope in operation. During its first cycle of observations more than 20 extragalactic objects have been observed, and very high energy gamma-ray signals have…

Astrophysics · Physics 2019-08-14 M. Errando

Context. We are operating an elastic LIDAR for the monitoring of atmospheric conditions during regular observations of the MAGIC Telescopes. Aims. We present and evaluate methods to convert aerosol extinction profiles, obtained with the…

The Cherenkov Telescope Array (CTA) is the future ground-based observatory for gamma-ray astronomy at very high energies. The atmosphere is an integral part of every Cherenkov telescope. Different atmospheric conditions, such as clouds, can…

MAGIC, 17 meters of diameter, is the world's largest single dish Imaging Atmospheric Cherenkov Telescope, and reaches in the analysis the lowest energy threshold (60 GeV) among the VHE gamma detectors. Completed in September 2004, MAGIC…

Astrophysics · Physics 2007-08-28 MAGIC Collaboration , Alessandro De Angelis

The current generation of Imaging Atmospheric Cherenkov Telescopes (IACTs), including the H.E.S.S., MAGIC, and VERITAS telescope arrays, have made substantial contributions to our knowledge about the structure and composition of the highly…

High Energy Astrophysical Phenomena · Physics 2012-05-17 Henric Krawczynski

TAIGA is a hybrid observatory for gamma-ray astronomy at high energies in range from 10 TeV to several EeV. It consists of instruments such as TAIGA-IACT, TAIGA-HiSCORE, and others. TAIGA-HiSCORE, in particular, is an array of wide-angle…

Instrumentation and Methods for Astrophysics · Physics 2021-12-21 Anna Vlaskina , Alexander Kryukov

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

Context. The response of imaging atmospheric Cherenkov telescopes to incident {\gamma}-ray-initiated showers in the atmosphere changes as the telescopes age due to exposure to light and weather. These aging processes affect the…

MAGIC is a system of two imaging atmospheric Cherenkov telescopes (IACTs) located on the Canary island of La Palma. Each telescope's imaging camera consists of 1039 photomultiplier tubes (PMTs). We developed three detector modules based on…

Instrumentation and Methods for Astrophysics · Physics 2022-11-03 A. Hahn , R. Mirzoyan , A. Dettlaff , D. J. Fink , D. Mazin , M. Teshima

The MAGIC telescopes, located at the Roque de los Muchachos Observatory (2200 a.s.l.) in the Canary Island of La Palma, are placed on the top of a mountain, from where a window of visibility of about 5 deg in zenith and 80 deg in azimuth is…

High Energy Astrophysical Phenomena · Physics 2019-08-14 D. Gora , M. Manganaro , E. Bernardini , M. Doro , M. Will , S. Lombardi , J. Rico , D. Sobczynska , J. Palacio

We present a new paradigm for the simulation of arrays of Imaging Atmospheric Cherenkov Telescopes (IACTs) which overcomes limitations of current approaches. Up to now, all major IACT experiments rely on the same Monte-Carlo simulation…

High Energy Astrophysical Phenomena · Physics 2017-11-06 M. Holler , J. Chevalier , J. -P. Lenain , M. de Naurois , D. Sanchez

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 efficiency of the $\gamma$/hadron separation worsens significantly at low energies for Imaging Air Cherenkov Telescopes (IACT). This observed effect was partially explained by the occurrence of a hardly reducible hadronic background…

Instrumentation and Methods for Astrophysics · Physics 2016-12-30 Dorota Sobczynska , Katarzyna Adamczyk

During its first cycle of observations, the MAGIC (Major Atmospheric Gamma-ray Imaging Cherenkov) telescope has observed very high energy gamma-rays from five galactic objects: the Crab Nebula, the SNRs HESS J1813-178 and HESS J1834-087,…

Astrophysics · Physics 2007-05-23 Hendrik Bartko

The Major Atmospheric Gamma-ray Imaging Cherenkov (MAGIC) Telescope collaboration is constructing a large Cherenkov telescope (17 m diameter) for the exploration of the gamma-ray energy regime above 10 GeV with high sensitivity. One of the…

Astrophysics · Physics 2019-08-14 D. Petry

In recent years, imaging atmospheric Cherenkov telescopes (IACTs) have emerged as promising platforms for optical interferometry through the use of intensity interferometry. IACTs combine large segmented mirrors, photodetectors with…

Instrumentation and Methods for Astrophysics · Physics 2025-11-21 Juan Cortina , Alejo Cifuentes-Santos , Tarek Hassan , Fernando Frias

Very-high-energy (>100 GeV) gamma-ray astronomy is emerging as an important discipline in both high energy astrophysics and astro-particle physics. This field is currently dominated by Imaging Atmospheric-Cherenkov Telescopes (IACTs) and…

Astrophysics · Physics 2010-01-15 Jim Hinton

We present the sensitivity of HAWC to Gamma Ray Bursts (GRBs). HAWC is a very high-energy gamma-ray observatory currently under construction in Mexico at an altitude of 4100 m. It will observe atmospheric air showers via the water Cherenkov…

High Energy Astrophysical Phenomena · Physics 2012-04-26 HAWC collaboration , A. U. Abeysekara , J. A. Aguilar , S. Aguilar , R. Alfaro , E. Almaraz , C. Álvarez , J. de D. Álvarez-Romero , M. Álvarez , R. Arceo , J. C. Arteaga-Velázquez , C. Badillo , A. Barber , B. M. Baughman , N. Bautista-Elivar , E. Belmont , E. Benítez , S. Y. BenZvi , D. Berley , A. Bernal , E. Bonamente , J. Braun , R. Caballero-Lopez , I. Cabrera , A. Carramiñana , L. Carrasco , M. Castillo , L. Chambers , R. Conde , P. Condreay , U. Cotti , J. Cotzomi , J. C. D'Olivo , E. de la Fuente , C. De León , S. Delay , D. Delepine , T. DeYoung , L. Diaz , L. Diaz-Cruz , B. L. Dingus , M. A. Duvernois , D. Edmunds , R. W. Ellsworth , B. Fick , D. W. Fiorino , A. Flandes , N. I. Fraija , A. Galindo , J. L. García-Luna , G. García-Torales , F. Garfias , L. X. González , M. M. González , J. A. Goodman , V. Grabski , M. Gussert , C. Guzmán-Ceron , Z. Hampel-Arias , T. Harris , E. Hays , L. Hernandez-Cervantes , P. H. Hüntemeyer , A. Imran , A. Iriarte , J. J. Jimenez , P. Karn , N. Kelley-Hoskins , D. Kieda , R. Langarica , A. Lara , R. Lauer , W. H. Lee , E. C. Linares , J. T. Linnemann , M. Longo , R. Luna-García , H. Martínez , J. Martínez , L. A. Martínez , O. Martínez , J. Martínez-Castro , M. Martos , J. Matthews , J. E. McEnery , G. Medina-Tanco , J. E. Mendoza-Torres , P. A. Miranda-Romagnoli , T. Montaruli , E. Moreno , M. Mostafa , M. Napsuciale , J. Nava , L. Nellen , M. Newbold , R. Noriega-Papaqui , T. Oceguera-Becerra , A. Olmos Tapia , V. Orozco , V. Pérez , E. G. Pérez-Pérez , J. S. Perkins , J. Pretz , C. Ramirez , I. Ramírez , D. Rebello , A. Rentería , J. Reyes , D. Rosa-González , A. Rosado , J. M. Ryan , J. R. Sacahui , H. Salazar , F. Salesa , A. Sandoval , E. Santos , M. Schneider , A. Shoup , S. Silich , G. Sinnis , A. J. Smith , K. Sparks , W. Springer , F. Suárez , N. Suarez , I. Taboada , A. F. Tellez , G. Tenorio-Tagle , A. Tepe , P. A. Toale , K. Tollefson , I. Torres , T. N. Ukwatta , J. Valdes-Galicia , P. Vanegas , V. Vasileiou , O. Vázquez , X. Vázquez , L. Villaseñor , W. Wall , J. S. Walters , D. Warner , S. Westerhoff , I. G. Wisher , J. Wood , G. B. Yodh , D. Zaborov , A. Zepeda

In gamma ray astronomy, the energy range from sub-100GeV to TeV is crucial due to where there is a gap between space experiments and ground-based ones. In addition, observations in this energy range are expected to provide more details…

Instrumentation and Methods for Astrophysics · Physics 2015-09-08 T. L. Chen , Z. Wang , Q. Gao , C. Liu , Y. Zhang , H. B. Hu , H. Cai , X. Y. Zhang , H. Y. Yang , Y. Shi , Danzengluobu , M. Y. Liu , Z. Y. Feng , Y. L. Feng , Y. Q. Guo , Q. B. Gou , Z. Tian , Y. X. Xiao
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