arXiv:1712.08788·v2·High Energy Astrophysical Phenomena
Quark deconfinement as supernova explosion engine for massive blue-supergiant stars
Tobias Fischer🇵🇱 · Niels-Uwe F. Bastian🇵🇱 · Meng-Ru Wu🇹🇼 · Petr Baklanov🇷🇺 · Elena Sorokina🇷🇺 · Sergei Blinnikov🇷🇺 · Stefan Typel🇩🇪 · Thomas Klähn🇺🇸 · David B. Blaschke🇷🇺
Abstract
Blue-supergiant stars develop into core-collapse supernovae --- one of the most energetic outbursts in the universe --- when all nuclear burning fuel is exhausted in the stellar core. Previous attempts failed to explain observed explosions of such stars which have a zero-age main sequence mass of 50~M or more. Here we exploit the largely uncertain state of matter at high density, and connect the modeling of such stellar explosions with a first-order phase transition from nuclear matter to the quark-gluon plasma. The resulting energetic supernova explosions can account for a large variety of lightcurves, from peculiar type II to super-luminous events. The remnants are neutron stars with quark matter core, known as hybrid stars, of about 2~M at birth. A galactic event of this kind could be observable due to the release of a second neutrino burst. Its observation would confirm such a first-order phase transition at densities relevant for astrophysics.
Comments: 28 pages, 6 figures