论文标题

地面伽马射线天文学:技术的历史和发展

Ground-based gamma-ray astronomy: history and development of techniques

论文作者

Bose, D., Chitnis, V. R., Majumdar, P., Acharya, B. S.

论文摘要

非常高的能量(VHE)伽玛射线构成了高能量天体物理学的主要支柱之一。伽玛射线是在宇宙中极端的相对论条件下产生的。可以在地面上间接检测到Vhe gamma $射线。这些能量光子的检测带来了一些技术挑战。首先,即使伽玛射线具有高度渗透性,地球的大气使他们不透明。其次,将在宇宙射线的压倒性背景下检测到这些伽玛射线。当Vhe Gamma Ray到达大气的顶部时,它会产生带电的次要。这些带电的颗粒在光条上产生Cherenkov闪光。即使第一次检测这些Cherenkov闪光的尝试是在70年前进行的,但花了数十年的无情努力来简化这项技术。基于地面的VHE伽马射线天文学现已确立为研究相对论宇宙的传统高能天文学的关键分支之一。在本文中,我们回顾并介绍了历史性的观点,然后对当前状态以及最后的讨论进行了讨论。

Very High Energy (VHE) gamma rays constitute one of the main pillars of high energy astrophysics. Gamma rays are produced under extreme relativistic conditions in the Universe. VHE gamma$ rays can be detected indirectly on the ground. Detection of these energetic photons poses several technological challenges. Firstly, even though gamma rays are highly penetrative, the Earth's atmosphere is opaque to them. Secondly, these gamma rays are to be detected against the overwhelming background of cosmic rays. When a VHE gamma ray arrives at the top of the atmosphere it produces charged secondaries. These charged particles produce Cherenkov flashes in the optical band. Even though the first attempts to detect these Cherenkov flashes were made almost 70 years ago, it took several decades of relentless efforts to streamline the technique. Ground-based VHE gamma-ray astronomy has now established itself as one of the crucial branches of conventional high energy astronomy to study the relativistic Universe. In this article we look back and present a historical perspective followed by a discussion on the current status and finally what lies ahead.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源