A Bayesian source association analysis of UHECRs: Impact of the Galactic magnetic field and composition

Keito Watanabe, A. Fedynitch, F. Capel, Hiroyuki Sagawa
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Abstract

We present a statistical analysis of the association between UHECRs and proposed astrophysical sources. Our approach is based on the Bayesian hierarchical framework presented in Capel & Mortlock 2019, but with notable extensions. Using CRPropa3, we now include the lensing effect of the Galactic magnetic field and explore the impact of heavier compositions. This analysis directly connects to the physics of UHECR propagation so that each detected event is allowed different possible deflections and energy-loss horizons based on its measured energy, arrival direction and the corresponding uncertainties. In this way, we can easily interpret the connection to proposed sources in a physical way. We verify our approach using simulated data and then present our results with views of the Northern and Southern skies thanks to publicly available data from both the Telescope Array experiment and Pierre Auger Observatory.
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uhecr的贝叶斯源关联分析:星系磁场和组成的影响
我们对uhecr和天体物理源之间的关联进行了统计分析。我们的方法基于Capel & Mortlock 2019中提出的贝叶斯分层框架,但进行了显著的扩展。使用CRPropa3,我们现在包括了银河系磁场的透镜效应,并探索了较重成分的影响。这种分析直接与UHECR传播的物理特性联系在一起,因此每个检测到的事件都可以根据测量到的能量、到达方向和相应的不确定性,允许不同的可能偏转和能量损失范围。通过这种方式,我们可以很容易地以物理方式解释与建议源的联系。我们用模拟数据验证了我们的方法,然后用望远镜阵列实验和皮埃尔·奥格天文台的公开数据展示了我们的结果,以及南北天空的视图。
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