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Progress towards characterizing ultrahigh energy cosmic ray sources

机译:表征超高能源宇宙射线光源的进展

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We use a multimessenger approach to constrain realistic mixed composition models of ultrahigh energy cosmic ray sources using the latest cosmic ray, neutrino, and gamma-ray data. We build on the successful Unger-Farrar-Anchordoqui 2015 (UFA15) model which explains the shape of the spectrum and its complex composition evolution via photodisintegration of accelerated nuclei in the photon field surrounding the source. We explore the constraints which can currently be placed on the redshift evolution of sources and the temperature of the photon field surrounding the sources. We show that a good fit is obtained to all data either with a source which accelerates a narrow range of nuclear masses or a MilkyWay-like mix of nuclear compositions, but in the latter case the nearest source should be 30-50 Mpc away from the Milky Way in order to fit observations from the Pierre Auger Observatory. We also ask whether the data allow for a subdominant purely protonic component at UHE in addition to the primary UFA15 mixed composition component. We find that such a two-component model can significantly improve the fit to cosmic ray data while being compatible with current multimessenger data.
机译:我们使用多次客手使用最新的宇宙射线,中微子和伽马射线数据来限制超高能源宇宙射线源的现实混合组成模型。我们建立在成功的UNGER-FARRAR-AnchordoQui 2015(UFA15)模型上,该模型解释了光谱和其复杂的组合物的形状,通过加速核在源极的光子场中的光电沉淀。我们探讨了目前可以放置在源极源的红移演化和源极源的光子场的温度上的约束。我们表明,通过加速狭窄的核心群或牛奶道的核组合物混合的来源,可以获得良好的拟合,但在后一种情况下,最近的来源应该是30-50 mpc的远离银河系,以适应Pierre Auger天文台的观察。除了初级UFA15混合组合物组分之外,还询问数据是否允许在UHE上允许亚邻纯度质子分量。我们发现,这种双组分模型可以显着改善拟合到宇宙射线数据,同时与当前的多方百料数据兼容。

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