Resolution of (Heavy) Primaries in Ultra High Energy Cosmic Rays

Blaž Bortolato, Jernej F. Kamenik, Michele Tammaro
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Abstract

Measurements of Ultra-High Energy Cosmic Rays (UHECR) suggest a complex composition with significant contributions from heavy nuclei at the highest energies. We systematically explore how the selection and number of primary nuclei included in the analysis impact the inferred UHECR mass composition. Introducing a distance measure in the space of $X_{\rm max}$ distribution moments, we demonstrate that limiting the analysis to a few primaries can introduce significant biases, particularly as observational data improves. We provide lists of primaries approximately equidistant in the new measure, which guaranty unbiased results at given statistical confidence. Additionally, we explore consistent inclusion of nuclei heavier than iron and up to plutonium, deriving first observational upper bounds on their contributions to UHECR with the Pierre Auger Open Data.
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解析超高能宇宙射线中的(重)原初粒子
对超高能量宇宙射线(UHECR)的测量表明,在最高能量下,重核的贡献是非常大的。我们在$X_{\rm max}$分布矩的空间中引入了一个距离度量,证明将分析限制在几个原核上会带来显著的偏差,特别是随着观测数据的改进。我们提供了在新度量中近似等距的基元列表,这保证了在给定统计置信度下的无偏结果。此外,我们还探讨了将比铁重的原子核和钚的原子核一致地包括进来的问题,并利用皮埃尔-奥格开放数据首次得出了它们对 UHECR 贡献的观测上限。
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