Litcius/Paper detail

Potential Impact of Fast Flavor Oscillations on Neutrino-driven Winds and Their Nucleosynthesis

Zewei Xiong, Andre Sieverding, Manibrata Sen, Yong-Zhong Qian

2020The Astrophysical Journal73 citationsDOIOpen Access PDF

Abstract

Abstract The wind driven by the intense neutrino emission from a protoneutron star (PNS) is an important site for producing nuclei heavier than the Fe group. Because of certain features in the neutrino angular distributions, the so-called fast flavor oscillations may occur very close to the PNS surface, effectively resetting the neutrino luminosities and energy spectra that drive the wind. Using the unoscillated neutrino emission characteristics from two core-collapse supernova simulations representative of relevant progenitors at the lower and higher mass end, we study the potential effects of fast flavor oscillations on neutrino-driven winds and their nucleosynthesis. We find that such oscillations can increase the total mass loss by factors up to ∼1.5–1.7 and lead to significantly more proton-rich conditions. The latter effect can greatly enhance the production of 64 Zn and the so-called light p -nuclei 74 Se, 78 Kr, and 84 Sr. Implications for abundances in metal-poor stars, Galactic chemical evolution in general, and isotopic anomalies in meteorites are discussed.

Topics & Concepts

PhysicsNucleosynthesisSupernovaNeutrinoSpectral lineNeutrino oscillationAstrophysicsFlavorStarsNuclear physicsAstronomyType II supernovaStellar nucleosynthesisStellar evolutionBig Bang nucleosynthesisIsotopeNeutron starJet (fluid)r-processMass numberNeutrino Physics ResearchGamma-ray bursts and supernovaeAstrophysics and Cosmic Phenomena