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Astrophysical interpretation of small-scale neutrino angular correlation searches with IceCube

机译:利用IceCube进行小规模中微子角相关搜索的天体解释

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摘要

The IceCube Neutrino Observatory has discovered a diffuse all-flavor flux of high-energy astrophysical neutrinos. However, the corresponding astrophysical sources have not yet been identified. Neither significant point sources nor significant angular correlations of event directions have been observed by IceCube or other instruments to date. We present a new method to interpret the non-observation of angular correlations in terms of exclusions on the strength and number of point-like neutrino sources in generic astrophysical scenarios. Additionally, we constrain the presence of these sources taking into account the measurement of the diffuse high-energy neutrino flux by IceCube. We apply the method to two types of astrophysically motivated source count distributions: The first type is obtained by considering the cosmological evolution of the co-moving density of active galaxies, while the second type is directly derived from the gamma ray source count distribution observed by Fermi-LAT. As a result, we constrain the possible parameter space for both types of source count distributions. (C) 2016 Elsevier B.V. All rights reserved.
机译:IceCube中微子天文台发现了高能天体中微子的全味扩散通量。但是,尚未确定相应的天体物理学来源。迄今为止,IceCube或其他仪器都未观察到重要的点源或事件方向的显着角度相关性。我们提出了一种新的方法,可以根据通用天体物理场景中点状中微子源的强度和数量的排除来解释对角相关性的非观测。此外,考虑到IceCube对弥散高能中微子通量的测量,我们限制了这些源的存在。我们将这种方法应用于两种类型的天体动力源计数分布:第一种类型是通过考虑活动星系共同运动密度的宇宙学演化而获得的,而第二种类型是直接从观测到的伽玛射线源计数分布中得出的费米-拉特结果,我们限制了两种类型的源计数分布的可能参数空间。 (C)2016 Elsevier B.V.保留所有权利。

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