Occurrence of fast neutrino flavor conversions in QCD phase-transition supernovae
Zewei Xiong, Meng-Ru Wu, Noshad Khosravi Largani, Tobias Fischer, Gabriel Mart\'inez-Pinedo

TL;DR
This paper investigates the conditions and effects of fast neutrino flavor conversions during QCD phase-transition supernovae, revealing two distinct phases of instability and potential impacts on neutrino signals and nucleosynthesis.
Contribution
It provides a detailed analysis of fast flavor instability conditions in QCD supernova models, identifying two main phases and assessing their observational and nucleosynthetic implications.
Findings
Two phases of fast flavor conversion identified
Growth rates of flavor instability characterized
Potential impact on neutrino signals and r-process nucleosynthesis
Abstract
Core-collapse supernovae undergoing a first-order quantum chromodynamics (QCD) phase transition experience the collapse of the central proto-neutron star that leads to a second bounce. This event is accompanied by the release of a second neutrino burst. Unlike the first stellar core bounce neutrino burst which consists exclusively of electron neutrinos, the second burst is dominated by electron antineutrinos. Such a condition makes QCD supernovae an ideal site for the occurrence of fast neutrino flavor conversion (FFC), which can lead to rapid flavor equilibration and significantly impact the related neutrino signal. In this work, we perform a detailed analysis of the conditions for fast flavor instability (FFI) around and after the second neutrino burst in QCD phase transition supernova models launched from 25~ and 40~ progenitor models. We evaluate the relevant…
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Taxonomy
TopicsNeutrino Physics Research · Particle physics theoretical and experimental studies · Gamma-ray bursts and supernovae
