Two recent publications have reported intriguing analyses, tentatively suggesting that some aspects of IceCube data might be manifestations of quantum-gravity-modified laws of propagation for neutrinos. We here propose a strategy of data analysis which has the advantage of being applicable to several alternative possibilities for the laws of propagation of neutrinos in a quantum spacetime. In all scenarios here of interest one should find a correlation between the energy of an observed neutrino and the difference between the time of observation of that neutrino and the trigger time of a GRB. We select accordingly some GRB-neutrino candidates among IceCube events, and our data analysis finds a rather strong such correlation. This sort of study naturally lends itself to the introduction of a “false alarm probability”, which for our analysis we estimate conservatively to be of 1%. We therefore argue that our findings should motivate a vigorous program of investigation following the strategy here advocated.

IceCube and GRB neutrinos propagating in quantum spacetime / Amelino Camelia, G.; Barcaroli, L.; D'Amico, G.; Loret, N.; Rosati, G.. - In: PHYSICS LETTERS. SECTION B. - ISSN 0370-2693. - 761:(2016), pp. 318-325. [10.1016/j.physletb.2016.07.075]

IceCube and GRB neutrinos propagating in quantum spacetime

Amelino Camelia G.;
2016

Abstract

Two recent publications have reported intriguing analyses, tentatively suggesting that some aspects of IceCube data might be manifestations of quantum-gravity-modified laws of propagation for neutrinos. We here propose a strategy of data analysis which has the advantage of being applicable to several alternative possibilities for the laws of propagation of neutrinos in a quantum spacetime. In all scenarios here of interest one should find a correlation between the energy of an observed neutrino and the difference between the time of observation of that neutrino and the trigger time of a GRB. We select accordingly some GRB-neutrino candidates among IceCube events, and our data analysis finds a rather strong such correlation. This sort of study naturally lends itself to the introduction of a “false alarm probability”, which for our analysis we estimate conservatively to be of 1%. We therefore argue that our findings should motivate a vigorous program of investigation following the strategy here advocated.
2016
IceCube and GRB neutrinos propagating in quantum spacetime / Amelino Camelia, G.; Barcaroli, L.; D'Amico, G.; Loret, N.; Rosati, G.. - In: PHYSICS LETTERS. SECTION B. - ISSN 0370-2693. - 761:(2016), pp. 318-325. [10.1016/j.physletb.2016.07.075]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/836802
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