In the light of the new IceCube data on the (yet unidentified) astrophysical neutrino flux in the PeV and sub-PeV range, we present an update on the status of decaying dark matter interpretation of the events. In particular, we develop further the angular distribution analysis and discuss the perspectives for diagnostics. By performing various statistical tests (maximum likelihood, Kolmogorov-Smirnov and Anderson-Darling tests) we conclude that currently the data show a mild preference (below the two sigma level) for the angular distribution expected from dark matter decay vs. the isotropic distribution foreseen for a conventional astrophysical flux of extragalactic origin. Also, we briefly develop some general considerations on heavy...
Late time decay of very heavy dark matter is considered as one of the possible explanations for diff...
The discovery by the IceCube experiment of a high-energy astrophysical neutrino flux with energies o...
In this theoretical physics master thesis I've looked at a set of observations from a neutrino obser...
International audienceIn the light of the new IceCube data on the (yet unidentified) astrophysical n...
Abstract. In the light of the new IceCube data on the (yet unidentified) astrophysical neu-trino flu...
We present a novel interpretation of IceCube high energy neutrino events (with energy larger than 60...
In this Letter we focus our attention on the IceCube events in the energy range between 60 and 100 T...
The recent study on the 6 year up-going muon neutrinos by the IceCube Collaboration support the hypo...
The IceCube Neutrino Observatory at the South Pole has measured astrophysical neutrinos using throug...
The hypothesis of two different components in the high-energy neutrino flux observed with IceCube ha...
Abstract With the observation of high-energy astrophysical neutrinos by the IceCube Neutrino Observa...
7 pages, 3 figures; v2: discussion improved, reference added, matches the version published in JCAPI...
Utilizing the Fermi measurement of the γ-ray spectrum toward the Inner Galaxy, we derive some of the...
Late time decay of very heavy dark matter is considered as one of the possible explanations for diff...
The discovery by the IceCube experiment of a high-energy astrophysical neutrino flux with energies o...
In this theoretical physics master thesis I've looked at a set of observations from a neutrino obser...
International audienceIn the light of the new IceCube data on the (yet unidentified) astrophysical n...
Abstract. In the light of the new IceCube data on the (yet unidentified) astrophysical neu-trino flu...
We present a novel interpretation of IceCube high energy neutrino events (with energy larger than 60...
In this Letter we focus our attention on the IceCube events in the energy range between 60 and 100 T...
The recent study on the 6 year up-going muon neutrinos by the IceCube Collaboration support the hypo...
The IceCube Neutrino Observatory at the South Pole has measured astrophysical neutrinos using throug...
The hypothesis of two different components in the high-energy neutrino flux observed with IceCube ha...
Abstract With the observation of high-energy astrophysical neutrinos by the IceCube Neutrino Observa...
7 pages, 3 figures; v2: discussion improved, reference added, matches the version published in JCAPI...
Utilizing the Fermi measurement of the γ-ray spectrum toward the Inner Galaxy, we derive some of the...
Late time decay of very heavy dark matter is considered as one of the possible explanations for diff...
The discovery by the IceCube experiment of a high-energy astrophysical neutrino flux with energies o...
In this theoretical physics master thesis I've looked at a set of observations from a neutrino obser...