We analyze quantum correlations and quantum coherence in neutrino oscillations. To this end, we exploit complete complementarity relations (CCR) that fully characterize the interplay between different correlations encoded in a quantum system both for pure and mixed states. We consider the CCR for neutrino oscillations both in the case of plane-waves (pure state) and of wave packets (mixed state). In this last case we find a complex structure of correlations depending on the mixing angle, and we show the connection with the non local advantage of quantum coherence, a relevant quantifier of coherence
We provide an interpretation of entanglement based on classical correlations between measurement out...
The radical departure from classical physics implies quantum coherence, i.e., coherent superposition...
Understanding how correlations can be used for quantum communication protocols is a central goal of ...
We analyze quantum correlations and quantum coherence in neutrino oscillations. To this end, we expl...
We analyze quantum correlations and quantum coherence in neutrino oscillations. To this end, we expl...
In this paper, we consider the quantum correlations, coherence and entanglement, in neutrino oscilla...
Abstract Quantum correlations provide a fertile testing ground for investigating fundamental aspects...
In quantum mechanics, quantum coherence of a state relative to a quantum measurement can be identifi...
Quantum information theory is built upon the realisation that quantum resources like coherence and e...
The monogamy relation of quantum states has limited the shareability properties of quantum resources...
Recent results in quantum information theory characterize quantum coherence in the context of resour...
Quantum coherence and distributed correlations among subparties are often considered as separate, al...
Although neutrino–antineutrino states originating from neutral-current interactions are blind concer...
The wave packet approach to neutrino oscillations provides an enlightening description of quantum de...
AbstractNeutrino oscillations provide evidence for the mode entanglement of neutrino mass eigenstate...
We provide an interpretation of entanglement based on classical correlations between measurement out...
The radical departure from classical physics implies quantum coherence, i.e., coherent superposition...
Understanding how correlations can be used for quantum communication protocols is a central goal of ...
We analyze quantum correlations and quantum coherence in neutrino oscillations. To this end, we expl...
We analyze quantum correlations and quantum coherence in neutrino oscillations. To this end, we expl...
In this paper, we consider the quantum correlations, coherence and entanglement, in neutrino oscilla...
Abstract Quantum correlations provide a fertile testing ground for investigating fundamental aspects...
In quantum mechanics, quantum coherence of a state relative to a quantum measurement can be identifi...
Quantum information theory is built upon the realisation that quantum resources like coherence and e...
The monogamy relation of quantum states has limited the shareability properties of quantum resources...
Recent results in quantum information theory characterize quantum coherence in the context of resour...
Quantum coherence and distributed correlations among subparties are often considered as separate, al...
Although neutrino–antineutrino states originating from neutral-current interactions are blind concer...
The wave packet approach to neutrino oscillations provides an enlightening description of quantum de...
AbstractNeutrino oscillations provide evidence for the mode entanglement of neutrino mass eigenstate...
We provide an interpretation of entanglement based on classical correlations between measurement out...
The radical departure from classical physics implies quantum coherence, i.e., coherent superposition...
Understanding how correlations can be used for quantum communication protocols is a central goal of ...