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AugerPrime: the Pierre Auger Observatory Upgrade

机译:AugerPrime:皮埃尔·俄格天文台升级

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The world largest exposure to ultra-high energy cosmic rays accumulated by the Pierre Auger Observatory led to major advances in our understanding of their properties, but the many unknowns about the nature and distribution of the sources, the primary composition and the underlying hadronic interactions prevent the emergence of a uniquely consistent picture. The new perspectives opened by the current results call for an upgrade of the Observatory, whose main aim is the collection of new information about the primary mass of the highest energy cosmic rays on a shower-by-shower basis. The evaluation of the fraction of light primaries in the region of suppression of the flux will open the window to charged particle astronomy, allowing for compositionselected anisotropy searches. In addition, the properties of multiparticle production will be studied at energies not covered by man-made accelerators and new or unexpected changes of hadronic interactions will be searched for. After a discussion of the motivations for upgrading the Pierre Auger Observatory, a description of the detector upgrade is provided. We then discuss the expected performances and the improved physics sensitivity of the upgraded detectors and present the first data collected with the already running Engineering Array.
机译:皮埃尔·俄格天文台在世界上对超高能宇宙射线的暴露最大,这使我们对它们的性质有了重要的了解,但有关源的性质和分布,主要成分和潜在的强子相互作用的许多未知数阻止了出现了唯一一致的图景。当前结果所带来的新观点要求对天文台进行升级,其主要目的是在逐个淋浴的基础上收集有关最高能宇宙射线主要质量的新信息。对光通量抑制区域中的光原色的分数的评估将打开带电粒子天文学的窗口,从而允许进行成分选择的各向异性搜索。另外,将在人造促进剂未涵盖的能量下研究多粒子生产的性质,并寻找强子相互作用的新的或意料之外的变化。在讨论了升级Pierre Auger天文台的动机之后,提供了探测器升级的说明。然后,我们讨论了升级后的探测器的预期性能和提高的物理灵敏度,并介绍了已经运行的Engineering Array收集的第一批数据。

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