Constructing Binary Neutron Star Initial Data with High Spins, High Compactness, and High Mass-Ratios
arXiv:1910.09690 · doi:10.1103/PhysRevD.100.124046
Abstract
The construction of accurate and consistent initial data for various binary parameters is a critical ingredient for numerical relativity simulations of the compact binary coalescence. In this article, we present an upgrade of the pseudospectral SGRID code, which enables us to access even larger regions of the binary neutron star parameter space. As a proof of principle, we present a selected set of first simulations based on initial configurations computed with the new code version. In particular, we simulate two millisecond pulsars close to their breakup spin, highly compact neutron stars with masses at about of the maximum supported mass of the employed equation of state, and an unequal mass systems with mass ratios even outside the range predicted by population synthesis models (). The discussed code extension will help us to simulate previously unexplored binary configurations. This is a necessary step to construct and test new gravitational wave approximants and to interpret upcoming binary neutron star merger observations. When we construct initial data, one has to specify various parameters, such as a rotation parameter for each star. Some of these parameters do not have direct physical meaning, which makes comparisons with other methods or models difficult. To facilitate this, we introduce simple estimates for the initial spin, momentum, mass, and center of mass of each individual star.
16 pages, 11 figures
References in corpus (17)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Multi-messenger Observations of a Binary Neutron Star Merger
- Constraints on a phenomenologically parameterized neutron-star equation of state
- Spin Flips and Precession in Black-Hole-Binary Mergers
- Gravitational waves and mass ejecta from binary neutron star mergers: Effect of the mass-ratio
- A General-relativistic Determination of the Threshold Mass to Prompt Collapse in Binary Neutron Star Mergers
- Revisiting the lower bound on tidal deformability derived by AT 2017gfo
- Sub-radian-accuracy gravitational waveforms of coalescing binary neutron stars in numerical relativity
- Gravitational waves and mass ejecta from binary neutron star mergers: Effect of the stars' rotation
- Initial data for black hole-neutron star binaries: a flexible, high-accuracy spectral method
- Gravitational waveforms from SpEC simulations : neutron star-neutron star and low-mass black hole-neutron star binaries
- Initial data for binary neutron stars with arbitrary spins
- Conformal Thin-Sandwich Solver for Generic Initial Data
- Black hole evolution with the BSSN system by pseudo-spectral methods
- Initial data for binary neutron stars with adjustable eccentricity
- Multi-Domain Spectral Method for Initial Data of Arbitrary Binaries in General Relativity
- The initial value problem as it relates to numerical relativity