中文
相关论文

相关论文: LAGOVirtual: A Collaborative Environment for the L…

200 篇论文

The LAT instrument on the Fermi mission will reveal the rich spectral and temporal gamma-ray burst phenomena in the > 100 MeV band. The synergy with Fermi's GBM detectors will link these observations to those in the well explored 10-1000…

GAW (Gamma Air Watch) is a pathfinder experiment in the TeV range to test the feasibility of a new generation of Imaging Atmospheric Cherenkov Telescopes (IACT). It combines high flux sensitivity with large field-of-view (FoV=24deg x 24deg)…

高能天体物理现象 · 物理学 2010-06-14 Luisa Arruda , GAW collaboration

LHAASO-WCDA is a large ground-based water Cherenkov detector array planned to be built at Shangri-La, Yunnan Province, China. As a major component of LHAASO project, the main purpose of LHAASO-WCDA is to survey the northern sky for…

仪器与探测器 · 物理学 2019-08-14 Gao Bo , Chen Ming-Jun , Gu Ming-Hao , Hao Xin-Jun , Li Hui-Cai , Wu Han-Rong , Yao Zhi-Guo , You Xiao-Hao , Zhou Bin

The detection of astrophysical Gamma-Ray Bursts (GRBs) has always been intertwined with the challenge of identifying the direction of the source. Accurate angular localization of better than a degree has been achieved to date only with…

天体物理仪器与方法 · 物理学 2021-02-25 Roi Rahin , Luca Moleri , Alex Vdovin , Amir Feigenboim , Solomon Margolin , Shlomit Tarem , Ehud Behar , Max Ghelman , Alon Osovizky

Ground based extensive air showers arrays can observe GRBs in the 1-1000 GeV energy range using the "single particle" techique. The sensitivity to detect a GRB as a function of the burst parameters and the detector characteristics are…

天体物理学 · 物理学 2011-05-23 Silvia Vernetto

Gamma-Ray Bursts (GRBs) afterglows are rapidly decaying signals that pose significant detection challenges, requiring improved methods to track their temporal evolution. In this study, we systematically compare various techniques for…

高能天体物理现象 · 物理学 2025-09-23 Léo Le Moigne , Mathieu de Bony de Lavergne , Armand Fiasson , Edna Ruiz-Velasco , David Sanchez , Kenta Terauchi

The High-Altitude Water Cherenkov (HAWC) observatory in central Mexico is currently the world's only synoptic survey instrument for gamma rays above 1 TeV. Because there is significant interest in covering the full TeV sky with a survey…

天体物理仪器与方法 · 物理学 2019-08-13 Michael DuVernois

The hybrid detection approach in astroparticle physics has been successfully employed in cosmic-ray experiments and is currently being explored by gamma-ray observatories like LHAASO. We present a study on the hybrid detection concept for…

Gamma-Ray Bursts (GRBs) have been detected at GeV energies by EGRET and models predict emission at > 100 GeV. Milagro is a wide field (2 sr) high duty cycle (> 90 %) ground based water Cherenkov detector that records extensive air showers…

天体物理学 · 物理学 2009-11-13 Pablo M. Saz Parkinson

The HAWC gamma ray observatory, to be constructed at Sierra Negra, Puebla in Mexico, is a large array of water Cherenkov detectors sited at an elevation of 4100 m, which has been optimized for gamma/hadron discrimination of the primary…

The High Altitude Water Cherenkov (HAWC) gamma-ray observatory is located at an altitude of 4100 meters in Sierra Negra, Puebla, Mexico. HAWC is an air shower array of 300 water Cherenkov detectors (WCD's), each with 4 photomultiplier tubes…

天体物理仪器与方法 · 物理学 2019-08-13 T. Capistrán , I. Torres , L. Altamirano

The Cherenkov Telescope Array (CTA) will be the next generation gamma-ray observatory, which will consist of three kinds of telescopes of different sizes. Among those, the Large Size Telescope (LST) will be the most sensitive in the low…

The High-Altitude Water Cherenkov (HAWC) observatory is a second-generation continuously operated, wide field-of-view, TeV gamma-ray observatory. The HAWC observatory and its analysis techniques build on experience of the Milagro experiment…

高能天体物理现象 · 物理学 2023-04-12 A. U. Abeysekara , A. Albert , R. Alfaro , C. Álvarez , J. D. Álvarez , M. Araya , J. C. Arteaga-Velázquez , K. P. Arunbabu , D. Avila Rojas , H. A. Ayala Solares , R. Babu , A. S. Barber , A. Becerril , E. Belmont-Moreno , S. Y. BenZvi , O. Blanco , J. Braun , C. Brisbois , K. S. Caballero-Mora , J. I. Cabrera Martínez , T. Capistrán , A. Carramiñana , S. Casanova , M. Castillo , O. Chaparro-Amaro , U. Cotti , J. Cotzomi , S. Coutiño de León , E. de la Fuente , C. de León , T. De Young , R. Díaz Hernández , B. L. Dingus , M. A. DuVernois , M. Durocher , J. C. Díaz-Vélez , R. W. Ellsworth , K. Engel , C. Espinoza , K. L. Fan , K. Fang , U. B. Fick , H. Fleischhack , J. L. Flores , N. Fraija , J. A. García-González , G. García-Torales , F. Garfias , G. Giacinti , H. Goksu , M. M. González , A. González-Muñoz , J. A. Goodman , J. P. Harding , E. Hernández , S. Hernández , J. Hinton , B. Hona , D. Huang , F. Hueyotl-Zahuantitla , C. M. Hui , T. B. Humensky , P. Hüntemeyer , A. Iriarte , A. Imran , A. Jardin-Blicq , V. Joshi , S. Kaufmann , D. Kieda , G. J. Kunde , A. Lara , R. Lauer , W. H. Lee , D. Lennarz , H. León Vargas , J. T. Linnemann , A. L. Longinotti , G. Luis-Raya , J. Lundeen , K. Malone , V. Marandon , A. Marinelli , O. Martínez , I. Martínez-Castellanos , J. Martínez-Castro , H. Martínez-Huerta , J. A. Matthews , P. Miranda-Romagnoli , T. Montaruli , J. A. Morales-Soto , E. Moreno , M. Mostafá , A. Nayerhoda , L. Nellen , M. Newbold , M. U. Nisa , R. Noriega-Papaqui , T. Oceguera-Becerra , L. Olivera-Nieto , N. Omodei , A. Peisker , Y. Pérez Araujo , E. G. Pérez-Pérez , E. Ponce , J. Pretz , C. D. Rho , D. Rosa-González , E. Ruiz-Velasco , H. Salazar , D. Salazar-Gallegos , F. Salesa Greus , A. Sandoval , M. Schneider , H. Schoorlemmer , J. Serna-Franco , G. Sinnis , A. J. Smith , Y. Son , K. Sparks Woodle , R. W. Springer , I. Taboada , A. Tepe , O. Tibolla , K. Tollefson , I. Torres , R. Torres-Escobedo , R. Turner , F. Ureña-Mena , T. N. Ukwatta , E. Varela , M. Vargas-Magaña , L. Villaseñor , X. Wang , I. J. Watson , F. Werner , S. Westerhoff , E. Willox , I. Wisher , J. Wood , G. B. Yodh , D. Zaborov , A. Zepeda , H. Zhou

The main scientific goal of the Gravitational wave high-energy Electromagnetic Counterpart All-sky Monitor (GECAM) is to monitor various types of Gamma-Ray Bursts (GRB) originated from merger of binary compact stars, which could also…

The LIGO, VIRGO and KAGRA Gravitational-wave (GW) observatories are getting ready for their fourth observational period, O4, scheduled to begin in March 2023, with improved sensitivities and thus higher event rates. GW-related computing has…

天体物理仪器与方法 · 物理学 2023-11-22 Stefano Bagnasco

The Milagro Gamma Ray Observatory, located at an altitude of 8,600 feet in the Jemez Mountains of New Mexico, is the world's first large-area water Cherenkov detector capable of continuously monitoring the entire sky for sources of TeV…

天体物理学 · 物理学 2012-08-27 The Milagro Collaboration

Milagro is a water-Cherenkov detector that observes the extended air showers produced by cosmic gamma rays of energies E>100GeV. The effective area of Milagro peaks at energies E~10TeV, however it is still large even down to a few hundred…

天体物理学 · 物理学 2008-11-11 Vlasios Vasileiou

Since the science white paper of the Large High Altitude Air Shower Observatory (LHAASO) published on arXiv in 2019 [e-Print: 1905.02773 (astro-ph.HE)], LHAASO has completed the transition from a project to an operational gamma-ray…