Axisymmetric models for neutron star merger remnants with realistic thermal and rotational profiles
arXiv:2011.10557 · doi:10.1103/PhysRevD.103.063014
Abstract
Merging neutron stars are expected to produce hot, metastable remnants in rapid differential rotation, which subsequently cool and evolve into rigidly rotating neutron stars or collapse to black holes. Studying this metastable phase and its further evolution is essential for the prediction and interpretation of the electromagnetic, neutrino, and gravitational signals from such a merger. In this work, we model binary neutron star merger remnants and propose new rotation and thermal laws that describe post-merger remnants. Our framework is capable to reproduce quasi-equilibrium configurations for generic equations of state, rotation and temperature profiles, including nonbarotropic ones. We demonstrate that our results are in agreement with numerical relativity simulations concerning bulk remnant properties like the mass, angular momentum, and the formation of a massive accretion disk. Because of the low computational cost for our axisymmetric code compared to full 3+1-dimensional simulations, we can perform an extensive exploration of the binary neutron star remnant parameter space studying several hundred thousand configurations for different equation of states.
18 pages, 10 figures, 1 appendix, published on PRD. Companion dataset can be downloaded from DOI:10.5281/zenodo.4268501
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- Gamma-Ray Flashes from Dark Photons in Neutron Star Mergers
- Equilibrium sequences of differentially rotating stars with post-merger-like rotational profiles
- Differentially rotating scalarized neutron stars with realistic post-merger profile
- Rapidly spinning dark matter-admixed neutron stars
- Thermal effects on nuclear matter properties
- Equilibriums of extremely magnetized compact stars with force-free magnetotunnels
- Dependence of postmerger properties on the thermal heating efficiency in neutron star mergers
- Exploring the Potential for Detecting Rotational Instabilities in Binary Neutron Star Merger Remnants with Gravitational Wave Detectors
- General relativistic self-gravitating equilibrium disks around rotating neutron stars
- Equation of state for hot hyperonic neutron star matter
- Fundamental modes of rotating neutron stars with various degrees of differential rotation in dynamical spacetimes
- Light scalars in neutron star mergers
- Convective stability analysis of massive neutron stars formed in binary mergers
- Host galaxies and electromagnetic counterparts to binary neutron star mergers across the cosmic time: Detectability of GW170817-like events