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Cherenkov Telescope Array (CTA)- building the World's largest ground-based gamma-ray observatory

机译:切伦科夫望远镜阵列(CTA)-建立世界上最大的地面伽玛射线天文台

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The Cherenkov Telescope Array (CTA) is the next generation ground-based observatory for gamma-ray astronomy at very high energies. With more than 100 telescopes at two sites, CTA will be the world's largest and most sensitive high-energy gamma-ray observatory covering the full sky with a northern array located at the Roque de los Muchachos astronomical observatory on the island of La Palma (Spain) and a southern array near the European Southern Observatory site at Paranal (Chile). Three classes of telescope types spread over a large area are required to cover the full CTA very-high energy range from 20 GeV to 300 TeV. Building on the technology of current generation ground-based gamma-ray detectors (H.E.S.S., VERITAS and MAGIC), CTA will be 5 to 20 times more sensitive, depending on gamma-ray energy, and have unprecedented accuracy in its detection of high-energy gamma rays. Current gamma-ray telescope arrays host up to five individual telescopes, but CTA is designed to detect gamma rays over a larger area and a wider field of view. Prototypes for the major CTA subsystems including the various size telescopes and cameras have been developed and built at different places. CTA is currently preparing for the full construction phase, both technically and organizationally, with the goal to achieve first light by the year 2022 and completion by 2024/25. CTA will be the first ground-based gamma-ray observatory open to the worldwide astronomical and particle physics communities as a resource for data from unique, high-energy astronomical observations.
机译:切伦科夫望远镜阵列(CTA)是下一代极高能量伽马射线天文地面观测站。 CTA将在两个地点拥有100多台望远镜,它将成为世界上最大,最敏感的高能伽玛射线天文台,其北面的阵列位于拉帕尔玛岛(西班牙)上的洛斯·德·洛·穆沙乔斯天文台。 )以及位于Paranal(智利)的欧洲南方天文台站点附近的南方阵地。为了覆盖从20 GeV到300 TeV的整个CTA极高能量范围,需要在大面积上分布的三类望远镜。基于当前的地面伽马射线探测器(HESS,VERITAS和MAGIC)的技术,CTA的灵敏度将提高5至20倍(取决于伽马射线能量),并且在检测高能方面具有前所未有的准确性伽马射线。当前的伽马射线望远镜阵列最多可容纳五台单独的望远镜,但是CTA旨在检测更大面积和更宽视野内的伽马射线。主要CTA子系统(包括各种尺寸的望远镜和照相机)的原型已经在不同的地方开发和制造。 CTA目前正在为技术和组织上的整个建设阶段做准备,目标是到2022年实现首次亮灯,并于2024/25年完成。 CTA将是第一个向全球天文和粒子物理学界开放的地面伽马射线观测站,作为来自独特的高能天文观测数据的资源。

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