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Ground-based detectors in very-high-energy gamma-ray astronomy

机译:高能伽玛射线天文学中的地面探测器

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摘要

Following the discovery of the cosmic rays by Victor Hess in 1912, more than 70 years and numerous technological developments were needed before an unambiguous detection of the first very-high-energy gamma-ray source in 1989 was made. Since this discovery, the field on very-high-energy gamma-ray astronomy experienced a true revolution: a second, then a third generation of instruments were built, observing the atmospheric cascades from the ground, either through the atmospheric Cherenkov light they comprise, or via the direct detection of the charged particles they carry. Present arrays, 100 times more sensitive than the pioneering experiments, have detected a large number of astrophysical sources of various types, thus opening a new window on the non-thermal Universe. New, even more sensitive instruments are currently being bui these will allow us to explore further this fascinating domain. In this article we describe the detection techniques, the history of the field and the prospects for the future of ground-based very-high-energy gamma-ray astronomy. (C) 2015 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:Victor Hess于1912年发现宇宙射线之后,在1989年对第一个超高能伽马射线源进行明确探测之前,需要70多年的发展和众多技术发展。自这项发现以来,高能伽马射线天文学领域经历了一次真正的革命:第二代,然后第三代的仪器被制造出来,通过地面的大气切伦科夫光观察地面的大气层级,或者直接检测它们携带的带电粒子。目前的阵列比开创性实验的灵敏度高100倍,已经检测到大量各种类型的天体物理学资源,从而为非热宇宙打开了新的窗口。当前正在建造新的,甚至更加敏感的仪器;这些将使我们能够进一步探索这个引人入胜的领域。在本文中,我们将介绍探测技术,该领域的历史以及地面超高能伽马射线天文学的未来前景。 (C)2015年科学研究院。由Elsevier Masson SAS发布。版权所有。

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