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arXiv:1110.0022·v2·High Energy Physics — Phenomenology

Instability in the dense supernova neutrino gas with flavor-dependent angular distributions

Alessandro Mirizzi (Hamburg U., II Inst. Theor. Phys.)🇩🇪 · Pasquale D. Serpico (LAPTh, Annecy-Le-Vieux)🇫🇷

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Abstract

The usual description of self-induced flavor conversions for neutrinos (\nu's) in supernovae is based on the simplified assumption that all the \nu's of the different species are emitted "half-isotropically" by a common neutrinosphere, in analogy to a blackbody emission. However, realistic supernova simulations show that \nu angular distributions at decoupling are far from being half-isotropic and, above all, are flavor-dependent. We show that flavor-dependent angular distributions may lead to crossing points in the angular spectra of different \nu species (where F_{\nu_e}=F_{\nu_x} and F_{{\bar\nu}_e}=F_{{\bar\nu}_x}) around which a new multi-angle instability can develop. To characterize this effect, we carry out a linearized flavor stability analysis for different SN neutrino angular distributions. We find that this instability can shift the onset of the flavor conversions toward low-radii and produce a smearing of the splitting features found with trivial emission models. As a result the spectral differences among \nu's of different flavors could be strongly reduced.

Comments: v2: 5 pages, 2 eps figures. Revised version. Discussion enlarged with a new part including a stability analysis. Conclusions unchanged. Matches the version published on PRL

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