arXiv · astro-ph/9502080
Matter-enhanced antineutrino flavor transformation and supernova nucleosynthesis
Abstract
Matter-enhanced antineutrino flavor transformation between $\barν_e$ and $\barν_{μ(τ)}$ can occur in supernovae if the vacuum masses for these species satisfy $m_{\barν_e}>m_{\barν_{μ(τ)}}$. For $δm^2> 1$ eV$^2$, such flavor transformation can affect the electron fraction $Y_e$ in the neutrino-heated supernova ejecta. We point out that such flavor transformation will not drive $Y_e>0.5$ at the $r$-process nucleosynthesis epoch in the best available supernova model for such nucleosynthesis. Consequently, there is no obvious conflict between matter-enhanced antineutrino flavor transformation $\barν_e\rightleftharpoons\barν_{μ(τ)}$ and $r$-process nucleosynthesis in the neutrino-heated supernova ejecta.
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Yong-Zhong Qian, George M. Fuller. 1995-02-17. Matter-enhanced antineutrino flavor transformation and supernova nucleosynthesis. https://doi.org/10.1103/physrevd.52.656
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