论文标题

Pierre Auger天文台和望远镜阵列的UHECR到达方向上的各向异性搜索

Full-sky searches for anisotropies in UHECR arrival directions with the Pierre Auger Observatory and the Telescope Array

论文作者

di Matteo, A., Bister, T., Biteau, J., Caccianiga, L., Deligny, O., Fujii, T., Harari, D., Ivanov, D., Kawata, K., Lundquist, J. P., Menezes, R., Mockler, D., Nonaka, T., Sagawa, H., Tinyakov, P., Tkachev, I., Troitsky, S.

论文摘要

超高能量宇宙射线的到达方向似乎在整个天空上分布大致分布,但是最后一代的UHECR探测器阵列,Pierre Augre Absvatory(Auger)和望远镜阵列阵列(TA)已检测到我们从Isotrprey中研究的事件。到目前为止,Auger已检测到具有$ \ sim 6.5 \%$偶极时刻一致的大规模各向异性,在宇宙射线的分布中,$ e> 8 $ 〜EEV,两项合作都报告了较高能量的小规模各向异性的指示。另一方面,阵列都不具有全套的覆盖范围,钻钻的视野仅限于降低$Δ< +45^\ circ $和ta One至$Δ> -16^\ circ $。因此,搜索具有全天候覆盖范围的各向异性需要组合两个数组的数据。为此任务建立了与两项合作成员的工作组。由于在任何一个阵列的能量确定中,即使是较小的系统误差,也可能导致沿东北轴的相当大的虚假各向异性,我们设计了一种方法,可以通过在视野中使用偏低带中的事件来对两个实验的能量尺度进行跨校准两个实验的能量尺度。在这项贡献中,我们报告了有关各向异性盲目搜索的两种更新,以及基于可能的局部外层次来源的第一次全天研究通量模型。

The arrival directions of ultra-high-energy cosmic rays appear to be approximately isotropically distributed over the whole sky, but the last-generation UHECR detector arrays, the Pierre Auger Observatory (Auger) and the Telescope Array (TA), have detected thousands of events, allowing us to study small deviations from isotropy. So far, Auger has detected a large-scale anisotropy consistent with a $\sim 6.5\%$ dipole moment in the distribution of cosmic rays with $E > 8$~EeV, and both collaborations have reported indications for smaller-scale anisotropies at higher energies. On the other hand, neither array has full-sky coverage, the Auger field of view being limited to declinations $δ< +45^\circ$ and the TA one to $δ> -16^\circ$. Searches for anisotropies with full-sky coverage thus require combining data from both arrays. A working group with members from both collaborations has been established for this task. Since even a minor systematic error in the energy determinations at either of the arrays could result in a sizeable spurious anisotropy along the north--south axis, we devised a method to cross-calibrate the energy scales of the two experiments with respect to each other by using events in a declination band within the intersection of their fields of view. In this contribution, we report on both updates on blind searches for anisotropies and the first full-sky studies of flux models based on possible local extragalactic sources.

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