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首页> 外文期刊>The Astrophysical journal >PINPOINTING THE KNEE OF COSMIC RAYS WITH DIFFUSE PEV γ-RAYS AND NEUTRINOS
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PINPOINTING THE KNEE OF COSMIC RAYS WITH DIFFUSE PEV γ-RAYS AND NEUTRINOS

机译:用弥散PEVγ射线和中性点确定宇宙射线的拐点

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The origin of the knee in the cosmic ray spectrum remains to be an unsolved fundamental problem. There are various kinds of models that predict different break positions and the compositions of the knee. In this work, we suggest the use of diffuse γ-rays and neutrinos as probes to test these models. Based on several typical types of composition models, the diffuse γ-ray and neutrino spectra are calculated and show distinctive cutoff behaviors at energies from tens of TeV to multi-PeV. The expected flux will be observable by the newly upgraded Tibet-ASγ+MD (muon detector) experiment as well as more sensitive future projects, such as LHAASO and HiSCORE. By comparing the neutrino spectrum with the recent observations by the IceCube experiment, we find that the diffuse neutrinos from interactions between the cosmic rays and the interstellar medium may not be responsible to the majority of the IceCube events. Future measurements of the neutrinos may be able to identify the Galactic diffuse component and shed further light on the problem of the knee of cosmic rays.
机译:膝盖在宇宙射线光谱中的起源仍然是一个尚未解决的基本问题。有多种模型可以预测不同的折断位置和膝盖的组成。在这项工作中,我们建议使用弥散的γ射线和中微子作为探针来测试这些模型。基于几种典型的组成模型,计算了扩散的γ射线和中微子光谱,并显示了在数十TeV到multi-PeV能量下的截断行为。预期的通量将通过新升级的Tibet-ASγ+ MD(μ子探测器)实验以及更敏感的未来项目(如LHAASO和HiSCORE)观察到。通过将中微子谱与IceCube实验的最新观测结果进行比较,我们发现,宇宙射线与星际介质之间相互作用产生的弥散中微子可能与大部分IceCube事件无关。中微子的未来测量可能能够识别银河系扩散成分,并进一步阐明宇宙射线的膝盖问题。

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