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arXiv:1601.06550·v1·High Energy Astrophysical Phenomena

Extreme blazars as counterparts of IceCube astrophysical neutrinos

P. Padovani (1)🇮🇹 · E. Resconi (2)🇩🇪 · P. Giommi (3)🇧🇷 · B. Arsioli (3)🇮🇹 · Y. L. Chang (3) ((1) ESO, (2) TUM, (3) ASDC)🇮🇹

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Abstract

We explore the correlation of -ray emitting blazars with IceCube neutrinos by using three very recently completed, and independently built, catalogues and the latest neutrino lists. We introduce a new observable, namely the number of neutrino events with at least one -ray counterpart, . In all three catalogues we consistently observe a positive fluctuation of with respect to the mean random expectation at a significance level of per cent. This applies only to extreme blazars, namely strong, very high energy -ray sources of the high energy peaked type, and implies a model-independent fraction of the current IceCube signal per cent. An investigation of the hybrid photon -- neutrino spectral energy distributions of the most likely candidates reveals a set of such sources, which could be linked to the corresponding IceCube neutrinos. Other types of blazars, when testable, give null correlation results. Although we could not perform a similar correlation study for Galactic sources, we have also identified two (further) strong Galactic -ray sources as most probable counterparts of IceCube neutrinos through their hybrid spectral energy distributions. We have reasons to believe that our blazar results are not constrained by the -ray samples but by the neutrino statistics, which means that the detection of more astrophysical neutrinos could turn this first hint into a discovery.

Comments: 11 pages, 7 figures, accepted for publication in MNRAS

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