In inhomogeneous neutrino transport with coexisting fast and collisional instabilities, all unstable cases converge to a universal flavor equilibrium determined by electron-flavor collisions, distinct from the collisionless FFI outcome.
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In post-merger disks, electron-lepton-number crossings drive fast flavor instabilities that enhance heavy lepton neutrino fluxes, while collisional instabilities are subdominant and asymmetrically raise heavy-flavor antineutrino energies.
Many-body correlations disrupt the inhomogeneous fast flavor instability, with flavor transformation timescale scaling logarithmically with system size.
citing papers explorer
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Dynamic Competition of Fast and Collisional Neutrino Flavor Instabilities with Collisional Damping in Spatially Inhomogeneous Systems
In inhomogeneous neutrino transport with coexisting fast and collisional instabilities, all unstable cases converge to a universal flavor equilibrium determined by electron-flavor collisions, distinct from the collisionless FFI outcome.
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Neutrino transport and flavor instabilities in a post-merger disk
In post-merger disks, electron-lepton-number crossings drive fast flavor instabilities that enhance heavy lepton neutrino fluxes, while collisional instabilities are subdominant and asymmetrically raise heavy-flavor antineutrino energies.
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Many-Body Simulations of the Fast Flavor Instability
Many-body correlations disrupt the inhomogeneous fast flavor instability, with flavor transformation timescale scaling logarithmically with system size.