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Related papers: Status and Current Sensitivity of the CELESTE Expe…

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The CELESTE experiment uses the heliostats of an old solar farm in the French Pyrenees to detect gamma ray air showers by the atmospheric Cerenkov technique. Observations of the TeV blazar Markarian 421 have been made with the fully…

Astrophysics · Physics 2017-08-23 J. Holder , CELESTE collaboration

The CELESTE experiment will be an Atmospheric Cherenkov detector designed to bridge the gap in energy sensitivity between current satellite and ground-based gamma-ray telescopes, 20 to 300 GeV. We present test results made at the former…

We have converted the former solar electrical plant THEMIS (French Pyrenees) into an atmospheric Cherenkov detector called CELESTE, which records gamma rays above 30 GeV (7E24 Hz). Here we present the first sub-100 GeV detection by a ground…

We have measured the gamma-ray fluxes of the blazars Mrk 421 and Mrk 501 in the energy range between 50 and 350 GeV (1.2 to 8.3 x 10^25 Hz). The detector, called CELESTE, used first 40, then 53 heliostats of the former solar facility…

The Solar Tower Atmospheric Cherenkov Effect Experiment (STACEE) is located at the National Solar Thermal Test Facility of Sandia National Laboratories in Albuquerque, New Mexico, USA. The field of solar tracking mirrors (heliostats) around…

The ``Gamma Ray Astronomy at ALmeria'' (GRAAL) experiment uses 63 heliostat-mirrors with a total mirror area of ~ 2500 m2 from the CESA-1 field at the ``Plataforma Solar de Almeria'' (PSA) to collect Cherenkov light from air showers. The…

The CELESTE atmospheric Cherenkov detector, running until June 2004 at the Themis solar facility, has taken data on compact sources such as pulsars and blazars. We will take stock of the experiment, in particular regarding the latest…

Astrophysics · Physics 2007-05-23 E. Brion , the CELESTE collaboration

The ``Gamma Ray Astronomy at ALmeria'' (GRAAL) experiment uses 63 heliostat-mirrors with a total mirror area of ~ 2500 m2 from the CESA-1 field to collect Cherenkov light from airshowers. The detector is located in a central solar tower and…

The CELESTE atmospheric Cherenkov detector ran until June 2004. It has detected several gamma-ray flares of Mrk 421 since 1999. The new data analysis provides better background rejection. We compare our light curves with X-ray data. We…

Astrophysics · Physics 2007-05-23 E. Brion , the CELESTE collaboration

The Solar Tower Atmospheric Cherenkov Effect Experiment (STACEE) is a new ground-based atmospheric Cherenkov telescope for gamma-ray astronomy. STACEE uses the large mirror area of a solar heliostat facility to achieve a low energy…

The Solar Tower Atmospheric Cherenkov Effect Experiment (STACEE) is a ground-based instrument designed to study astrophysical sources of gamma radiation in the energy range of 50 to 500 GeV. STACEE uses an array of large heliostat mirrors…

The CAT imaging telescope, recently built on the site of the former solar plant Themis (French Pyrenees), observed gamma-rays from the Crab nebula from October 1996 to March 1997. This steady source, often considered as the standard candle…

The Solar Tower Atmospheric Cherenkov Effect Experiment (STACEE) is an atmospheric Cherenkov telescope (ACT) that uses a large mirror array to achieve a relatively low energy threshold. For sources with Crab-like spectra, at high…

The Major Atmospheric Cherenkov Experiment (MACE) is a large size (21m) Imaging Atmospheric Cherenkov Telescope (IACT) installed at an altitude of 4270m above sea level at Hanle, Ladakh in northern India. Here we report the detection of…

The uncertainties on the absolute energy scale of the CELESTE experiment affect the constraints CELESTE can impose on > 30 GeV gamma-ray emission models. To date, these uncertainties have been of order 30 %. The optical throughputs of the…

Astrophysics · Physics 2007-05-23 E. Brion , D. Smith , the CELESTE collaboration

The Crab Nebula has been observed by the HEGRA (High-Energy Gamma-Ray Astronomy) stereoscopic system of imaging air Cherenkov telescopes (IACTs) for a total of about 200 hrs during two observational campaigns: from September 1997 to March…

Astrophysics · Physics 2009-10-31 F. Aharonian , The HEGRA Collaboration

CTA (Cherenkov Telescope Array) is the next generation ground-based observatory for gamma-ray astronomy at very-high energies. The Large-Sized Telescope prototype (LST-1) is located at the Northern site of CTA, on the Canary Island of La…

High Energy Astrophysical Phenomena · Physics 2025-01-16 CTA-LST Project , : , H. Abe , K. Abe , S. Abe , A. Aguasca-Cabot , I. Agudo , N. Alvarez Crespo , L. A. Antonelli , C. Aramo , A. Arbet-Engels , C. Arcaro , M. Artero , K. Asano , P. Aubert , A. Baktash , A. Bamba , A. Baquero Larriva , L. Baroncelli , U. Barres de Almeida , J. A. Barrio , I. Batkovic , J. Baxter , J. Becerra González , E. Bernardini , M. I. Bernardos , J. Bernete Medrano , A. Berti , P. Bhattacharjee , N. Biederbeck , C. Bigongiari , E. Bissaldi , O. Blanch , G. Bonnoli , P. Bordas , A. Borghese , A. Bulgarelli , I. Burelli , M. Buscemi , M. Cardillo , S. Caroff , A. Carosi , F. Cassol , D. Cauz , G. Ceribella , Y. Chai , K. Cheng , A. Chiavassa , M. Chikawa , L. Chytka , A. Cifuentes , J. L. Contreras , J. Cortina , H. Costantini , G. D'Amico , M. Dalchenko , A. De Angelis , M. de Bony de Lavergne , B. De Lotto , R. de Menezes , G. Deleglise , C. Delgado , J. Delgado Mengual , D. della Volpe , M. Dellaiera , D. Depaoli , A. Di Piano , F. Di Pierro , R. Di Tria , L. Di Venere , C. Díaz , R. M. Dominik , D. Dominis Prester , A. Donini , D. Dorner , M. Doro , D. Elsässer , G. Emery , J. Escudero , V. Fallah Ramazani , G. Ferrara , F. Ferrarotto , A. Fiasson , L. Freixas Coromina , S. Fröse , S. Fukami , Y. Fukazawa , E. Garcia , R. Garcia López , C. Gasbarra , D. Gasparrini , F. Geyer , J. Giesbrecht Paiva , N. Giglietto , F. Giordano , E. Giro , P. Gliwny , N. Godinovic , R. Grau , D. Green , J. Green , S. Gunji , J. Hackfeld , D. Hadasch , A. Hahn , K. Hashiyama , T. Hassan , K. Hayashi , L. Heckmann , M. Heller , J. Herrera Llorente , K. Hirotani , D. Hoffmann , D. Horns , J. Houles , M. Hrabovsky , D. Hrupec , D. Hui , M. Hütten , M. Iarlori , R. Imazawa , T. Inada , Y. Inome , K. Ioka , M. Iori , K. Ishio , Y. Iwamura , M. Jacquemont , I. Jimenez Martinez , J. Jurysek , M. Kagaya , V. Karas , H. Katagiri , J. Kataoka , D. Kerszberg , Y. Kobayashi , A. Kong , H. Kubo , J. Kushida , M. Lainez , G. Lamanna , A. Lamastra , T. Le Flour , M. Linhoff , F. Longo , R. López-Coto , M. López-Moya , A. López-Oramas , S. Loporchio , A. Lorini , P. L. Luque-Escamilla , P. Majumdar , M. Makariev , D. Mandat , M. Manganaro , G. Manicò , K. Mannheim , M. Mariotti , P. Marquez , G. Marsella , J. Martí , O. Martinez , G. Martínez , M. Martínez , P. Marusevec , A. Mas-Aguilar , G. Maurin , D. Mazin , E. Mestre Guillen , S. Micanovic , D. Miceli , T. Miener , J. M. Miranda , R. Mirzoyan , T. Mizuno , M. Molero Gonzalez , E. Molina , T. Montaruli , I. Monteiro , A. Moralejo , D. Morcuende , A. Morselli , K. Mrakovcic , K. Murase , A. Nagai , S. Nagataki , T. Nakamori , L. Nickel , M. Nievas , K. Nishijima , K. Noda , D. Nosek , S. Nozaki , M. Ohishi , Y. Ohtani , T. Oka , N. Okazaki , A. Okumura , R. Orito , J. Otero-Santos , M. Palatiello , D. Paneque , F. R. Pantaleo , R. Paoletti , J. M. Paredes , M. Pech , M. Pecimotika , M. Peresano , A. Pérez , E. Pietropaolo , G. Pirola , C. Plard , F. Podobnik , V. Poireau , M. Polo , E. Pons , E. Prandini , J. Prast , G. Principe , C. Priyadarshi , M. Prouza , R. Rando , W. Rhode , M. Ribó , V. Rizi , G. Rodriguez Fernandez , J. E. Ruiz , T. Saito , S. Sakurai , D. A. Sanchez , T. Šarić , Y. Sato , F. G. Saturni , B. Schleicher , F. Schmuckermaier , J. L. Schubert , F. Schussler , T. Schweizer , M. Seglar Arroyo , R. Silvia , J. Sitarek , V. Sliusar , A. Spolon , J. Strišković , M. Strzys , Y. Suda , Y. Sunada , H. Tajima , H. Takahashi , M. Takahashi , J. Takata , R. Takeishi , P. H. T. Tam , S. J. Tanaka , D. Tateishi , L. A. Tejedor , P. Temnikov , Y. Terada , K. Terauchi , T. Terzic , M. Teshima , M. Tluczykont , F. Tokanai , D. F. Torres , P. Travnicek , S. Truzzi , A. Tutone , G. Uhlrich , M. Vacula , P. Vallania , J. van Scherpenberg , M. Vázquez Acosta , V. Verguilov , I. Viale , A. Vigliano , C. F. Vigorito , V. Vitale , G. Voutsinas , I. Vovk , T. Vuillaume , R. Walter , M. Will , T. Yamamoto , R. Yamazaki , T. Yoshida , T. Yoshikoshi , N. Zywucka , K. Bernloehr , O. Gueta , K. Kosack , G. Maier , J. Watson

The High Energy Stereoscopic System (H.E.S.S.) phase I instrument was an array of four $100\,\mathrm{m}^2$ mirror area Imaging Atmospheric Cherenkov Telescopes (IACTs) that has very successfully mapped the sky at photon energies above $\sim…

High Energy Astrophysical Phenomena · Physics 2019-08-14 M. Holler , D. Berge , C. van Eldik , J. -P. Lenain , V. Marandon , T. Murach , M. de Naurois , R. D. Parsons , H. Prokoph , D. Zaborov

The Crab nebula has proved to be the nearest to a standard candle in VHE $\gamma-$ ray astronomy. Results on the gamma ray emission from the nebula at various energies have come in the last decade mostly from imaging telescopes. The aim of…

Since 2009, several rapid and bright flares have been observed at high energies (>100 MeV) from the direction of the Crab Nebula. Several hypotheses have been put forward to explain this phenomenon, but the origin is still unclear. The…

High Energy Astrophysical Phenomena · Physics 2022-10-11 Enrique Mestre , Emma de Ona Wilhelmi , Dmitry Khangulyan , Roberta Zanin , Fabio Acero , Diego F. Torres
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