Strangeness-changing Rates and Hyperonic Bulk Viscosity in Neutron Star Mergers
arXiv:2009.05181 · doi:10.1103/PhysRevC.103.045810
Abstract
In this paper we present a computation of the rates of strangeness-changing processes and the resultant bulk viscosity in matter at the densities and temperatures typical of neutron star mergers. To deal with the high temperature in this environment we go beyond the Fermi surface approximation in our rate calculations and numerically evaluate the full phase space integral. We include processes where quarks move between baryons via meson exchange: these have generally been omitted in previous analyses but provide the dominant contribution to the rates of strangeness-changing processes and the bulk viscosity. The calculation of these rates is an essential step towards any calculation of dissipation mechanisms in hyperonic matter in mergers. As one application, we calculate the dissipation times for density oscillations at the frequencies seen in merger simulations. We find that hyperon bulk viscosity for temperatures in the MeV regime can probably be neglected in this context, but becomes highly relevant for keV-range temperatures.
17 pages, 11 figures v2: corrected computation of susceptibilities, resonant temperature for maximum bulk viscosity shifted to much lower temperatures
References in corpus (18)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- A Massive Pulsar in a Compact Relativistic Binary
- On the importance of viscous dissipation and heat conduction in binary neutron-star mergers
- The Dynamics of Binary Neutron Star Mergers and of GW170817
- Hypernuclear Physics for Neutron Stars
- General-Relativistic Large-Eddy Simulations of Binary Neutron Star Mergers
- Constraining hypernuclear density functional with -hypernuclei and compact stars
- Studying strong phase transitions in neutron stars with gravitational waves
- Gravitational waves from f-modes excited by the inspiral of highly eccentric neutron star binaries
- Large amplitude behavior of the bulk viscosity of dense matter
- Effect of hyperon-hyperon interaction on bulk viscosity and r-mode instability in neutron stars
- Bulk viscosity of superfluid hyperon stars
- Bulk viscosity in neutron stars with hyperon cores
- Leptonic contribution to the bulk viscosity of nuclear matter
- Hyperonic Neutron Star Matter in Light of GW170817
- Theory of neutrino emission from nucleon-hyperon matter in neutron stars: Angular integrals
- Exotic bulk viscosity and its influence on neutron star r-modes
- Constraints on the Neutron Star Equation of State from GW170817
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- Bulk viscosity from Urca processes: matter in the neutrino-trapped regime
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- Tidal heating as a direct probe of strangeness inside neutron stars
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- Projecting the likely importance of weak-interaction-driven bulk viscosity in neutron star mergers
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