It has been recently pointed out that neutrino fluxes from a supernova can show substantial flavor conversions almost immediately above the core. Using linear stability analyses and numerical solutions of the fully nonlinear equations of motion, we perform a detailed study of these fast conversions, focussing on the region just above the supernova core. We carefully specify the instabilities for evolution in space or time, and find that neutrinos travelling towards the core make fast conversions more generic, i.e., possible for a wider range of flux ratios and angular asymmetries that produce a crossing between the zenith-angle spectra of νe and νe. Using fluxes and angular distributions predicted by supernova simulations, we find that fast...
One of the greatest uncertainties in any modeling of inner engine of core-collapse supernova (CCSN) ...
International audienceNeutrinos propagating in dense neutrino media such as those in core-collapse s...
International audienceA dense neutrino gas, such as the one anticipated in the supernova environment...
Supernova neutrinos can exhibit a rich variety of flavor conversion mechanisms. In particular, they ...
We show that a self-interacting neutrino gas can spontaneously acquire a non-stationary pulsating co...
We show that a self-interacting neutrino gas can spontaneously acquire a nonstationary pulsating com...
We summarize our current understanding of the neutrino flavor conversions inside a core collapse sup...
The neutrino fast flavor instability (FFI) can change neutrino flavor on timescales of nanoseconds a...
One of the active debates in core-collapse supernova (CCSN) theory is how significantly neutrino fla...
International audienceThe dense neutrino medium in a core-collapse supernova or a neutron-star merge...
AbstractNeutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early un...
We point out possible features of neutrino spectra from a future galactic core collapse supernova th...
Fast flavor conversions of supernova neutrinos, possible near the neutrinosphere, depends on an inte...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
Fast flavor conversions of supernova neutrinos, possible near the neutrinosphere, depends on an inte...
One of the greatest uncertainties in any modeling of inner engine of core-collapse supernova (CCSN) ...
International audienceNeutrinos propagating in dense neutrino media such as those in core-collapse s...
International audienceA dense neutrino gas, such as the one anticipated in the supernova environment...
Supernova neutrinos can exhibit a rich variety of flavor conversion mechanisms. In particular, they ...
We show that a self-interacting neutrino gas can spontaneously acquire a non-stationary pulsating co...
We show that a self-interacting neutrino gas can spontaneously acquire a nonstationary pulsating com...
We summarize our current understanding of the neutrino flavor conversions inside a core collapse sup...
The neutrino fast flavor instability (FFI) can change neutrino flavor on timescales of nanoseconds a...
One of the active debates in core-collapse supernova (CCSN) theory is how significantly neutrino fla...
International audienceThe dense neutrino medium in a core-collapse supernova or a neutron-star merge...
AbstractNeutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early un...
We point out possible features of neutrino spectra from a future galactic core collapse supernova th...
Fast flavor conversions of supernova neutrinos, possible near the neutrinosphere, depends on an inte...
Neutrino flavor evolution in core-collapse supernovae, neutron-star mergers, or the early universe i...
Fast flavor conversions of supernova neutrinos, possible near the neutrinosphere, depends on an inte...
One of the greatest uncertainties in any modeling of inner engine of core-collapse supernova (CCSN) ...
International audienceNeutrinos propagating in dense neutrino media such as those in core-collapse s...
International audienceA dense neutrino gas, such as the one anticipated in the supernova environment...