26–28 Feb 2024
Trento
Europe/Rome timezone

Effects of nuclear matter properties in neutron star mergers

26 Feb 2024, 12:00
20m

Speaker

Federico Maria Guercilena

Description

The properties of the nuclear equation of state (EOS) of dense matter have a dramatic impact on the dynamics in mergers of binary neutron stars (BNS), with profound implications on the emission of gravitational waves (GWs) and the ejection of matter in the merger and post-merger phases. It is thus a topic of high interest for multi-messenger astronomy. A variety of nuclear EOSs are available with various underlying microphysical models. This calls for a study to focus on EOS effects from different physical nuclear matter properties and their influence on BNS mergers. We perform simulations of equal-mass BNS mergers with a set of 9 different EOSs based on Skyrme density functionals. In the models, we systematically vary the effective nucleon mass, incompressibility, and symmetry energy at saturation density. This allows us to investigate the influence of specific nuclear matter properties on the dynamics of BNS mergers, which we analyze in terms of the fate of the remnant, disk formation, ejection of matter, and gravitational wave emission. Our results indicate that some aspects of the merger are sensitive to the EOS around saturation density while others are sensitive to the behavior towards higher densities, e.g., characterized by the slope of the pressure as a function of density. The detailed density dependence of the EOS thus needs to be taken into account to describe its influence on BNS mergers.

Primary author

Dr Maximilian Jacobi

Co-authors

Prof. Achim Schwenk Prof. Almudena Arcones Federico Maria Guercilena Giacomo Ricigliano Dr Sabrina Huth

Presentation materials