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June 23, 2021Physical Review Letters119 citationsOpen Access

Neutrino Fast Flavor Conversions in Neutron-Star Postmerger Accretion Disks

XLXinyu LiDSDaniel M. Siegel

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Abstract

A compact accretion disk may be formed in the merger of two neutron stars or of a neutron star and a stellar-mass black hole. Outflows from such accretion disks have been identified as a major site of rapid neutron-capture (r-process) nucleosynthesis and as the source of "red" kilonova emissions following the first observed neutron-star merger GW170817. We present long-term general-relativistic radiation magnetohydrodynamic simulations of a typical postmerger accretion disk at initial accretion rates of Mover ˙∼1 M⊙ s^-1 over 400 ms postmerger. We include neutrino radiation transport that accounts for the effects of neutrino fast flavor conversions dynamically. We find ubiquitous flavor oscillations that result in a significantly more neutron-rich outflow, providing lanthanide and 3rd-peak r-process abundances similar to solar abundances. This provides strong evidence that postmerger accretion disks are a major production site of heavy r-process elements. A similar flavor effect may allow for increased lanthanide production in collapsars.

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Cite This Study

Li et al. (2021) studied this question.

synapsesocial.com/papers/6a62b1aeeed25793eac3ddb4https://doi.org/10.1103/physrevlett.126.251101
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