arXiv · 1309.1764
Standard Model Explanation of the Ultra-high Energy Neutrino Events at IceCube
Abstract
The recent observation of two PeV events at IceCube, followed by an additional 26 events between 30 - 300 TeV, has generated considerable speculations on its origin, and many exotic New Physics explanations have been invoked. For a reliable interpretation, it is however important to first scrutinize the Standard Model (SM) expectations carefully, including the theoretical uncertainties, mainly due to the parton distribution functions. Assuming a new isotropic cosmic neutrino flux with a simple unbroken power-law spectrum, $Φ\propto E^{-s}$ for the entire energy range of interest, we find that with $s=1.5$ - 2, the SM neutrino-nucleon interactions are sufficient to explain all the observed events so far, without the need for any beyond the SM explanation. With more statistics, this powerful detector could provide a unique test of the SM up to the PeV scale, and lead to important clues of New Physics.
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Chien-Yi Chen, P. S. Bhupal Dev, Amarjit Soni. 2014-01-01. Standard Model Explanation of the Ultra-high Energy Neutrino Events at IceCube. https://doi.org/10.1103/physrevd.89.033012
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