首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Space-based extensive air shower optical Cherenkov and fluorescence measurements using SiPM detectors in context of POEMMA
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Space-based extensive air shower optical Cherenkov and fluorescence measurements using SiPM detectors in context of POEMMA

机译:基于空间的广泛的空气淋浴光学Cherenkov和荧光测量使用SIPM探测器在POEMMA的背景下

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Developed as NASA Astrophysics Probe-class mission, the Probe Of Extreme Multi-Messenger Astrophysics (POEMMA) is designed to identify the sources of ultra-high energy cosmic rays (UHECRs) and to observe cosmic neutrinos. POEMMA consists of two spacecraft flying in a loose formation at 525 km altitude, 28.5° inclination orbits. Each spacecraft hosts a Schmidt telescope with a large collecting area and wide Field-of-View (FoV). A novel focal plane is employed that is optimized to observe both the UV fluorescence signal from extensive air showers (EASs) and the optical Cherenkov signals from EASs. In UHECR stereo fluorescence mode, POEMMA will measure the spectrum, composition, and full-sky distribution of the UHECRs above 20 EeV with high statistics along with remarkable sensitivity to UHE neutrinos. The POEMMA spacecraft are designed to quickly re-orient to a Target-of-Opportunity (ToO) neutrino mode to observe transient astrophysical sources with unique sensitivity. In this mode, POEMMA will be able to detect cosmic tau neutrino events above 20 PeV by measuring the upward-moving EASs for r-lepton decays induced from tau neutrino interactions in the Earth. In this paper, POEMMA's science goals and instrument design are summarized with a focus on the SiPM implementation in POEMMA, along with a detailed discussion of the properties of the Cherenkov EAS signal in the context of wide wavelength sensitivity offered by SiPMs. A comparison of the fluorescence response between SiPMs and the MAPMTs currently planned for use in POEMMA will also be discussed, assessing the potential for SiPMs to perform EAS fluorescence measurements.
机译:作为美国国家航空航天局的Astrophysics探测阶级任务,极端多信使天体物理学(Poemma)的探针旨在识别超高能量宇宙射线(UHECR)的来源,并观察宇宙中微子。 Poemma由两个航天器在525公里处的宽松地层中飞行,28.5°倾斜轨道。每个航天器都举办了一个施密特望远镜,带有大收集区域和广阔的视野(FOV)。采用一种新型焦平面,其优化以观察来自广泛的空气淋浴(EAS)和来自EAS的光学Cherenkov信号的UV荧光信号。在UHEC立体声荧光模式中,POEMMA将以高统计数据衡量UHEC的频谱,组成和全天体分布,以及对UHE中微子的显着敏感性。 Poemma SpaceCraft旨在将速度快速定向到机会目标(TOO)中微子模式以观察瞬态天体物理来源,具有独特的敏感性。在这种模式下,Poemma将能够通过测量来自地球中的Tau Neicrino相互作用的R-Lepton衰减的向上移动的缓释来检测20 PEV以上的宇宙Tau Neutrino事件。在本文中,诗集的科学目标和仪器设计总结了致专注于诗句中的SIPM实现,并详细讨论了SIPMS提供的广泛波长灵敏度的背景下的Cherenkov EAS信号的特性。还将讨论SIPMS与目前计划用于POEMMA的MAPMTS之间的荧光响应的比较,评估SIPMS的可能性,以进行荧光测量。

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