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Электронный каталог: Tluczykont, M. - The TAIGA Experiment
Tluczykont, M. - The TAIGA Experiment
Книга (аналит. описание)
Автор: Tluczykont, M.
The 16th Marcel Grossmann Meeting : On Recent Developments in Theoretical and Experimental General Relativity, Astrophysics, and Relativistic Field Theories. In 4 Volumes. Pt. C [Electronic resource]: The TAIGA Experiment
б.г.
ISBN отсутствует
Автор: Tluczykont, M.
The 16th Marcel Grossmann Meeting : On Recent Developments in Theoretical and Experimental General Relativity, Astrophysics, and Relativistic Field Theories. In 4 Volumes. Pt. C [Electronic resource]: The TAIGA Experiment
б.г.
ISBN отсутствует
Книга (аналит. описание)
Tluczykont, M.
The TAIGA Experiment / M.Tluczykont, A.N.Borodin, V.M.Grebenyuk, A.A.Grinyuk, M.Lavrova, A.Pan, Y.I.Sagan, I.Satyshev, L.G.Tkachev, [a.o.] // The 16th Marcel Grossmann Meeting : On Recent Developments in Theoretical and Experimental General Relativity, Astrophysics, and Relativistic Field Theories. In 4 Volumes. Pt. C [Electronic resource] : Proceedings of the MG16 Meeting on General Relativity, 5 – 10 July 2021, Online / Ed.: R.Ruffini, G.Vereshchagin. – New Jersey [etc.] : World Scientific Publ., 2023. – P. 3324-3342. – URL: https://doi.org/10.1142/9789811269776_0274. – Bibliogr.: 26.
The Tunka Advanced Instrument for Gamma-ray and cosmic ray Astrophysics (TAIGA) is a hybrid experiment for the measurement of Extensive Air Showers (EAS) with good spectral resolution in the TeV to PeV energy range. In this domain, the long-sought Pevatrons can be detected. Currently the hybrid TAIGA detector combines two wide angle shower front Cherenkov light sampling timing arrays (HiSCORE and Tunka-133), two 4m class, 10° aperture Imaging Air Cherenkov Telescopes (IACTs) and 240 m2 surface and underground charged particle detector stations. Our goal is to introduce a new hybrid reconstruction technique, combining the good angular and shower core resolution of HiSCORE with the gamma-hadron separation power of imaging telescopes. This approach allows to maximize the effective area and simultaneously to reach a good gamma-hadron separation at low energies (few TeV). At higher energies, muon detectors are planned to enhance gamma-hadron separation. During the commissioning phase of the first and second IACT, several sources were observed. First detections of known sources with the first telescope show the functionality of the TAIGA IACTs. Here, the status of the TAIGA experiment will be presented, along with first results from the current configuration.
ОИЯИ = ОИЯИ (JINR)2023
Спец.(статьи,препринты) = С 347 д - Ядерный каскад. Широкие атмосферные ливни
Спец.(статьи,препринты) = С 63 - Астрофизика$
Tluczykont, M.
The TAIGA Experiment / M.Tluczykont, A.N.Borodin, V.M.Grebenyuk, A.A.Grinyuk, M.Lavrova, A.Pan, Y.I.Sagan, I.Satyshev, L.G.Tkachev, [a.o.] // The 16th Marcel Grossmann Meeting : On Recent Developments in Theoretical and Experimental General Relativity, Astrophysics, and Relativistic Field Theories. In 4 Volumes. Pt. C [Electronic resource] : Proceedings of the MG16 Meeting on General Relativity, 5 – 10 July 2021, Online / Ed.: R.Ruffini, G.Vereshchagin. – New Jersey [etc.] : World Scientific Publ., 2023. – P. 3324-3342. – URL: https://doi.org/10.1142/9789811269776_0274. – Bibliogr.: 26.
The Tunka Advanced Instrument for Gamma-ray and cosmic ray Astrophysics (TAIGA) is a hybrid experiment for the measurement of Extensive Air Showers (EAS) with good spectral resolution in the TeV to PeV energy range. In this domain, the long-sought Pevatrons can be detected. Currently the hybrid TAIGA detector combines two wide angle shower front Cherenkov light sampling timing arrays (HiSCORE and Tunka-133), two 4m class, 10° aperture Imaging Air Cherenkov Telescopes (IACTs) and 240 m2 surface and underground charged particle detector stations. Our goal is to introduce a new hybrid reconstruction technique, combining the good angular and shower core resolution of HiSCORE with the gamma-hadron separation power of imaging telescopes. This approach allows to maximize the effective area and simultaneously to reach a good gamma-hadron separation at low energies (few TeV). At higher energies, muon detectors are planned to enhance gamma-hadron separation. During the commissioning phase of the first and second IACT, several sources were observed. First detections of known sources with the first telescope show the functionality of the TAIGA IACTs. Here, the status of the TAIGA experiment will be presented, along with first results from the current configuration.
ОИЯИ = ОИЯИ (JINR)2023
Спец.(статьи,препринты) = С 347 д - Ядерный каскад. Широкие атмосферные ливни
Спец.(статьи,препринты) = С 63 - Астрофизика$