English

Core-collapse supernova explosions triggered by a quark-hadron phase transition during the early post-bounce phase

High Energy Astrophysical Phenomena 2015-05-20 v2 High Energy Physics - Phenomenology

Abstract

We explore explosions of massive stars, which are triggered via the quark-hadron phase transition during the early post bounce phase of core-collapse supernovae. We construct a quark equation of state, based on the bag model for strange quark matter. The transition between the hadronic and the quark phases is constructed applying Gibbs conditions. The resulting quark-hadron hybrid equations of state are used in core-collapse supernova simulations, based on general relativistic radiation hydrodynamics and three flavor Boltzmann neutrino transport in spherical symmetry. The formation of a mixed phase reduces the adiabatic index, which induces the gravitational collapse of the central protoneutron star. The collapse halts in the pure quark phase, where the adiabatic index increases. A strong accretion shock forms, which propagates towards the protoneutron star surface. Due to the density decrease of several orders of magnitude, the accretion shock turns into a dynamic shock with matter outflow. This moment defines the onset of the explosion in supernova models that allow for a quark-hadron phase transition, where otherwise no explosions could be obtained. The shock propagation across the neutrinospheres releases a burst of neutrinos. This serves as a strong observable identification for the structural reconfiguration of the stellar core. The ejected matter expands on a short timescale and remains neutron-rich. These conditions might be suitable for the production of heavy elements via the r-process. The neutron-rich material is followed by proton-rich neutrino-driven ejecta in the later cooling phase of the protoneutron star where the vp-process might occur.

Keywords

Cite

@article{arxiv.1011.3409,
  title  = {Core-collapse supernova explosions triggered by a quark-hadron phase transition during the early post-bounce phase},
  author = {T. Fischer and I. Sagert and G. Pagliara and M. Hempel and J. Schaffner-Bielich and T. Rauscher and F. -K. Thielemann and R. Käppeli and G. Martínez-Pinedo and M. Liebendörfer},
  journal= {arXiv preprint arXiv:1011.3409},
  year   = {2015}
}

Comments

29 pages, 24 figures, submitted to ApJ

R2 v1 2026-06-21T16:43:57.052Z