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Design studies for the future 50 GeV arrays of imaging air Cerenkov telescopes

机译:未来50 GeV空中切伦科夫望远镜成像阵列的设计研究

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Arrays of imaging air Cerenkov telescopes (IACTs) like VERITAS, HESS have been recently proposed as the instruments of the next generation for ground based very high energy #gamma#-ray astronomy invading into 50-100 GeV energy range. Here we present results of design studies for the future IACT arrays which have been performed by means of Monte Carlo simulations. We studied different trigger strategies, abilities of cosmic ray rejection for arrays of 4 and 16 telescopes with 10 m reflectors, equipped with cameras comprising 271 and 721 pixels of 0.25 deg and 0.15 deg, respectively. The comparative analysis of the performance of such telescope arrays has been done for both camera options, providing almost the same field of view of approx 4.3 deg. An important issue is the choice of the optimum spacing between the telescopes in such an array. In order to maximize the signal-to-noise ratio in observations at the small zenith angles of approx 20 deg as well as at large zenith angles of approx 60 deg, different arrangements of IACT array have been examined. Finally, we present a major recommendations regarding the optimum configuration.
机译:像VERITAS,HESS一样的空中Cerenkov望远镜(IACT)成像阵列最近已被提出,作为入侵到50-100 GeV能量范围内的地基超高能γ射线天文学的下一代仪器。在这里,我们介绍了针对未来IACT阵列的设计研究结果,这些研究已通过蒙特卡罗模拟进行了。我们研究了不同的触发策略,具有10 m反射器的4台和16台望远镜的阵列的宇宙线抑制能力,这些望远镜配备了分别包含0.25度和0.15度的271和721像素的摄像机。对这两种望远镜选件都进行了这种望远镜阵列性能的比较分析,它们提供了大约4.3度的几乎相同的视场。一个重要的问题是在这种阵列中选择望远镜之间的最佳间距。为了在大约20度的小天顶角和大约60度的大天顶角时观察时最大化信噪比,已经研究了IACT阵列的不同布置。最后,我们提出了有关最佳配置的主要建议。

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