We examine coherent active-active channel neutrino flavor evolution in environments where neutrino-neutrino forward scattering can engender large-scale collective flavor transformation. We introduce the concept of neutrino flavor isospin which treats neutrinos and antineutrinos on an equal footing, and which facilitates the analysis of neutrino systems in terms of the spin precession analogy. We point out a key quantity, the "total effective energy," which is conserved in several important regimes. Using this concept, we analyze collective neutrino and antineutrino flavor oscillation in the synchronized mode and what we term the bi-polar mode. We thereby are able to explain why large collective flavor mixing can develop on short time scales...
We study the flavor evolution of a dense gas initially consisting of pure monoenergetic νe and ν̄e. ...
We calculate coherent neutrino and antineutrino flavor transformation in the supernova environment, ...
Neutrinos and antineutrinos emitted from a core collapse supernova interact among themselves, giving...
We examine coherent active-active channel neutrino flavor evolution in environments where neutrino-n...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
We review the rich phenomena associated with neutrino flavor transformation in the presence of neutr...
We review the rich phenomena associated with neutrino flavor transformation in the presence of neutr...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
AbstractNeutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early un...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
We present results of large-scale numerical simulations of the evolution of neutrino and antineutrin...
We study the flavor evolution of a dense gas initially consisting of pure monoenergetic νe and ν̄e. ...
We study the flavor evolution of a dense gas initially consisting of pure monoenergetic νe and ν̄e. ...
We present results of large-scale numerical simulations of the evolution of neutrino and antineutrin...
We study the flavor evolution of a dense gas initially consisting of pure monoenergetic νe and ν̄e. ...
We calculate coherent neutrino and antineutrino flavor transformation in the supernova environment, ...
Neutrinos and antineutrinos emitted from a core collapse supernova interact among themselves, giving...
We examine coherent active-active channel neutrino flavor evolution in environments where neutrino-n...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
We review the rich phenomena associated with neutrino flavor transformation in the presence of neutr...
We review the rich phenomena associated with neutrino flavor transformation in the presence of neutr...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
AbstractNeutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early un...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
We present results of large-scale numerical simulations of the evolution of neutrino and antineutrin...
We study the flavor evolution of a dense gas initially consisting of pure monoenergetic νe and ν̄e. ...
We study the flavor evolution of a dense gas initially consisting of pure monoenergetic νe and ν̄e. ...
We present results of large-scale numerical simulations of the evolution of neutrino and antineutrin...
We study the flavor evolution of a dense gas initially consisting of pure monoenergetic νe and ν̄e. ...
We calculate coherent neutrino and antineutrino flavor transformation in the supernova environment, ...
Neutrinos and antineutrinos emitted from a core collapse supernova interact among themselves, giving...