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首页> 外文期刊>Journal of the Korean Physical Society >Development of TUS Pinhole Cameras for Observing Transient Luminous Events from Space and Establishing Role of Those Events as a Background for Ultra-high-energy Cosmic-ray Measurements
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Development of TUS Pinhole Cameras for Observing Transient Luminous Events from Space and Establishing Role of Those Events as a Background for Ultra-high-energy Cosmic-ray Measurements

机译:TUS针孔摄像机的开发,用于观察来自太空的瞬时发光事件,并确立这些事件作为超高能宇宙射线测量背景的作用

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The TUS (tracking ultraviolet setup) experiment is intended for the observation from space of ultraviolet (UV) fluorescence induced both by ultra-high-energy cosmic rays (UHECRs) with energies above 5× 10~(19) eV and by transient luminous events (TLEs) occurring in the upper atmosphere. These two types of events are very different in terms of duration, lateral shape, and intensity; thus, each behaves as a background for the other. The TUS is equipped with two conventional pinhole cameras as auxiliary instrumentation to detect and efficiently distinguish TLEs from UHECRs. Each pinhole camera contains a MAPMT (multi-anode photo-multiplier tube) and its associated analog and digital electronics. The R11265-03-M64 MAPMT has been custom-made for space applications by Hamamatsu Photonics, particularly for the future EUSO (Extreme Universe Space Observatory) UHECR space mission. Thus, the TUS pinhole system will be the test bench for the deployment in space of a large number,~5000, of MAPMTs. In this study, we present the design and fabrication of the pinhole cameras, and we estimate the detectability of TLEs with respect to atmospheric light background.
机译:TUS(跟踪紫外线设置)实验旨在观察由能量高于5×10〜(19)eV的超高能宇宙射线(UHECR)和瞬态发光事件诱发的紫外(UV)荧光空间(TLE)发生在高层大气中。这两种类型的事件在持续时间,侧面形状和强度方面都大不相同。因此,每个人都充当另一个人的背景。 TUS配备了两个传统的针孔摄像机作为辅助仪器,以检测和有效区分TLE和UHECR。每个针孔摄像机都包含一个MAPMT(多阳极光电倍增管)及其相关的模拟和数字电子设备。 R11265-03-M64 MAPMT是由Hamamatsu Photonics专门为太空应用量身定制的,特别是针对未来的EUSO(极端宇宙空间天文台)UHECR太空任务。因此,TUS针孔系统将成为在约5000个MAPMT的空间中部署的测试平台。在这项研究中,我们介绍了针孔相机的设计和制造,并估计了相对于大气光背景的TLE的可检测性。

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