The ordering of the neutrino mass eigenstates is one of the fundamental open questions in neutrino physics. While current-generation neutrino oscillation experiments are able to produce moderate indications on this ordering, upcoming experiments of the next generation aim to provide conclusive evidence. In this paper we study the combined performance of the two future multi-purpose neutrino oscillation experiments JUNO and the IceCube Upgrade, which employ two very distinct and complementary routes toward the neutrino mass ordering. The approach pursued by the 20 kt medium-baseline reactor neutrino experiment JUNO consists of a careful investigation of the energy spectrum of oscillated νe produced by ten nuclear reactor cores. The IceCube U...
The measurement of the Neutrino Mass Ordering (NMO), i.e. the ordering of the three neutrino mass ei...
The Neutrino Mass Ordering (NMO) remains one of the outstanding questions in the field of neutrino p...
The Neutrino Mass Ordering (NMO) remains one of the outstanding questions in the field of neutrino p...
The ordering of the neutrino mass eigenstates is one of the fundamental open questions in neutrino p...
The measurement of the Neutrino Mass Ordering (NMO), i.e. the ordering of the three neutrino mass ei...
The Neutrino Mass Ordering (NMO) remains one of the outstanding questions in the field of neutrino p...
The Neutrino Mass Ordering (NMO) remains one of the outstanding questions in the field of neutrino p...
The ordering of the neutrino mass eigenstates is one of the fundamental open questions in neutrino p...
The measurement of the Neutrino Mass Ordering (NMO), i.e. the ordering of the three neutrino mass ei...
The Neutrino Mass Ordering (NMO) remains one of the outstanding questions in the field of neutrino p...
The Neutrino Mass Ordering (NMO) remains one of the outstanding questions in the field of neutrino p...