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Can BL Lacertae emission explain the neutrinos above 0.2 PeV?

机译:BL Lacertae发射能解释0.2 PeV以上的中微子吗?

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Context. Multi-messenger astronomy can help to investigate the sources of the high-energy neutrinos observed by the high-energy neutrino telescope IceCube. Aims. We consider the hypothesis that the highest energy neutrinos are produced by BL Lacs, arguing that this is not contradicted severely by any known fact. Methods. We check the BL Lac hypothesis by searching for correlations between the through-going muon events of IceCube and the BL Lacs of the second catalog of Fermi -LAT (2FHL). Results. We expect 10.2 ± 2.4 correlated events but we find that just 1 event has a BL Lac as counterpart. We also assess the probability of observing one multiplet from the same source, finding that the present null result is not yet of critical significance. Conclusions. We conclude that the hypothesis that the BL Lacs are the main emitters of the highest-energy neutrinos observed by IceCube is disfavored at 3.7 σ . We discuss implications and possible ways out; for example, this could work if the angular resolution was 4° , which is much more than expected.
机译:上下文。多信使天文学可以帮助研究高能中微子望远镜IceCube观测到的高能中微子的来源。目的我们考虑了BL Lacs产生最高能量的中微子的假设,认为这与任何已知事实都没有严重矛盾。方法。通过搜索IceCube的持续μ子事件与费米-LAT(2FHL)第二个目录的BL Lacs之间的相关性,我们检查了BL Lac假设。结果。我们期望有10.2±2.4个相关事件,但是我们发现只有1个事件具有BL Lac作为对等事件。我们还评估了从同一来源观察到一个多重峰的可能性,发现当前的无效结果还不是至关重要的。结论。我们得出的结论是,IceCube观测到BL Lacs是能量最高的中微子的主要发射体的假设在3.7σ时被反对。我们讨论了影响和可能的出路;例如,如果角度分辨率为4°,这比预期的要大得多,那么这可能会起作用。

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