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首页> 外文期刊>Prog. Theor. Exp. Phys. >Air shower observation by a simple structured Fresnel lens telescope with a single pixel for the next generation of ultra-high-energy cosmic ray observatories
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Air shower observation by a simple structured Fresnel lens telescope with a single pixel for the next generation of ultra-high-energy cosmic ray observatories

机译:通过简单的结构化菲涅耳透镜望远镜进行风淋观测,该望远镜具有单个像素,可用于下一代超高能宇宙射线天文台

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Improved statistics and observations sensitive to mass composition are required to clarify the origin of ultra-high-energy cosmic rays (UHECRs). Inevitably, in the future UHECR observatories will have to be expanded due to the small flux; however, such upgrades will be expensive with the detectors currently in use. Hence, we are developing a new fluorescence detector for UHECR observation. The proposed fluorescence detector, called a cosmic ray air fluorescence Fresnel lens telescope (CRAFFT), has an extremely simple structure and can observe the longitudinal development of an air shower. Furthermore, CRAFFT has the potential to significantly reduce costs for the realization of a huge observatory for UHECR research. We deployed four CRAFFT detectors at the Telescope Array site and conducted a test observation. We have successfully observed ten air shower events using CRAFFT. Thus, CRAFFT can be a solution to help realize the next generation of UHECR observatories.
机译:需要改进对质量组成敏感的统计数据和观测资料,以阐明超高能宇宙射线(UHECR)的起源。不可避免地,由于通量较小,未来的UHECR天文台将不得不扩大。但是,这种升级对于当前使用的检测器而言将是昂贵的。因此,我们正在开发一种用于UHECR观测的新型荧光检测器。所提出的荧光检测器称为宇宙射线空气荧光菲涅耳透镜望远镜(CRAFFT),其结构极为简单,可以观察风淋的纵向发展。此外,CRAFFT有潜力显着降低实现UHECR研究的大型天文台的成本。我们在望远镜阵列站点部署了四个CRAFFT检测器,并进行了测试观察。我们已经使用CRAFFT成功观察了十次空气淋浴事件。因此,CRAFFT可以成为帮助实现UHECR下一代观测站的解决方案。

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