AbstractNeutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe is dominated by neutrino–neutrino refraction, often spawning “self-induced flavor conversion,” i.e., shuffling of flavor among momentum modes. This effect is driven by collective run-away modes of the coupled “flavor oscillators” and can spontaneously break the initial symmetries such as axial symmetry, homogeneity, isotropy, and even stationarity. Moreover, the growth rates of unstable modes can be of the order of the neutrino–neutrino interaction energy instead of the much smaller vacuum oscillation frequency: self-induced flavor conversion does not always require neutrino masses. We illustrate these newly found phenomena in terms of...
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. ...
A dense neutrino medium can experience collective flavor oscillations through nonlinear neutrino–neu...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
AbstractNeutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early un...
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 examine coherent active-active channel neutrino flavor evolution in environments where neutrino-n...
We examine coherent active-active channel neutrino flavor evolution in environments where neutrino-n...
A dense neutrino medium could experience self-induced flavor conversions on relatively small scales ...
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...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
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 study the flavor evolution of a dense gas initially consisting of pure monoenergetic νe and ν̄e. ...
A dense neutrino medium can experience collective flavor oscillations through nonlinear neutrino–neu...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
AbstractNeutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early un...
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 examine coherent active-active channel neutrino flavor evolution in environments where neutrino-n...
We examine coherent active-active channel neutrino flavor evolution in environments where neutrino-n...
A dense neutrino medium could experience self-induced flavor conversions on relatively small scales ...
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...
We can understand many recently discovered features of flavor evolution in dense, self-coupled super...
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 study the flavor evolution of a dense gas initially consisting of pure monoenergetic νe and ν̄e. ...
A dense neutrino medium can experience collective flavor oscillations through nonlinear neutrino–neu...