We present a systematic study of fast neutrino-flavor conversion (FFC) with both small-scale and large-scale numerical simulations in spherical symmetry. We find that FFCs can, in general, reach a quasi-steady state, and these features in the non-linear phase are not characterized by the growth rate of FFC instability but rather angular structures of electron neutrino lepton number (ELN) and heavy one (XLN). Our result suggests that neutrinos can almost reach a flavor equipartition even in cases with low growth rate of instability (e.g., shallow ELN crossing) and narrow angular regions (in momentum space) where flavor conversions occur vigorously. This exhibits that ELN and XLN angular distributions can not provide a sufficient information ...
The successful transition from core-collapse supernova simulations using classical neutrino transpor...
In the dense supernova environment, neutrinos can undergo fast flavor conversions which depend on th...
Neutrinos drive core-collapse supernovae, launch outflows from neutron star merger accretion disks, ...
Despite the theoretical indication that fast neutrino-flavor conversion (FFC) ubiquitously occurs in...
One of the greatest uncertainties in any modeling of inner engine of core-collapse supernova (CCSN) ...
One of the active debates in core-collapse supernova (CCSN) theory is how significantly neutrino fla...
In core-collapse supernovae or compact binary merger remnants, neutrino-neutrino refraction can spaw...
We calculate fast conversions of two flavor neutrinos by considering Boltzmann collisions of neutrin...
Neutrino self-interactions in a dense neutrino gas can induce collective neutrino flavor conversions...
The neutrino fast flavor instability (FFI) can change neutrino flavor on time scales of nanoseconds ...
The flavor evolution of neutrinos in core collapse supernovae and neutron star mergers is a critical...
It has been recently pointed out that neutrino fluxes from a supernova can show substantial flavor c...
We examine the effect of neutrino flavor transformation by the fast flavor instability (FFI) on long...
The outflows from neutrino-cooled black-hole (BH) accretion disks formed in neutron-star mergers or ...
Supernova neutrinos can exhibit a rich variety of flavor conversion mechanisms. In particular, they ...
The successful transition from core-collapse supernova simulations using classical neutrino transpor...
In the dense supernova environment, neutrinos can undergo fast flavor conversions which depend on th...
Neutrinos drive core-collapse supernovae, launch outflows from neutron star merger accretion disks, ...
Despite the theoretical indication that fast neutrino-flavor conversion (FFC) ubiquitously occurs in...
One of the greatest uncertainties in any modeling of inner engine of core-collapse supernova (CCSN) ...
One of the active debates in core-collapse supernova (CCSN) theory is how significantly neutrino fla...
In core-collapse supernovae or compact binary merger remnants, neutrino-neutrino refraction can spaw...
We calculate fast conversions of two flavor neutrinos by considering Boltzmann collisions of neutrin...
Neutrino self-interactions in a dense neutrino gas can induce collective neutrino flavor conversions...
The neutrino fast flavor instability (FFI) can change neutrino flavor on time scales of nanoseconds ...
The flavor evolution of neutrinos in core collapse supernovae and neutron star mergers is a critical...
It has been recently pointed out that neutrino fluxes from a supernova can show substantial flavor c...
We examine the effect of neutrino flavor transformation by the fast flavor instability (FFI) on long...
The outflows from neutrino-cooled black-hole (BH) accretion disks formed in neutron-star mergers or ...
Supernova neutrinos can exhibit a rich variety of flavor conversion mechanisms. In particular, they ...
The successful transition from core-collapse supernova simulations using classical neutrino transpor...
In the dense supernova environment, neutrinos can undergo fast flavor conversions which depend on th...
Neutrinos drive core-collapse supernovae, launch outflows from neutron star merger accretion disks, ...