Black-Hole Neutron Star Simulations with the BAM code: First Tests and Simulations
arXiv:2107.08752 · doi:10.1103/PhysRevD.104.084010
Abstract
The first detections of black hole - neutron star mergers (GW200105 and GW200115) by the LIGO-Virgo-Kagra Collaboration mark a significant scientific breakthrough. The physical interpretation of pre- and post-merger signals requires careful cross-examination between observational and theoretical modelling results. Here we present the first set of black hole - neutron star simulations that were obtained with the numerical-relativity code BAM. Our initial data are constructed using the public LORENE spectral library which employs an excision of the black hole interior. BAM, in contrast, uses the moving-puncture gauge for the evolution. Therefore, we need to ``stuff'' the black hole interior with smooth initial data to evolve the binary system in time. This procedure introduces constraint violations such that the constraint damping properties of the evolution system are essential to increase the accuracy of the simulation and in particular to reduce spurious center-of-mass drifts. Within BAM we evolve the Z4c equations and we compare our gravitational-wave results with those of the SXS collaboration and results obtained with the SACRA code. While we find generally good agreement with the reference solutions and phase differences rad at the moment of merger, the absence of a clean convergence order in our simulations does not allow for a proper error quantification. We finally present a set of different initial conditions to explore how the merger of black hole neutron star systems depends on the involved masses, spins, and equations of state.
14 pages, 10 figures
References in corpus (31)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- GW190814: Gravitational Waves from the Coalescence of a 23 M Black Hole with a 2.6 M Compact Object
- Origin of the heavy elements in binary neutron-star mergers from a gravitational wave event
- Robust parameter estimation for compact binaries with ground-based gravitational-wave observations using the LALInference software library
- Observation of gravitational waves from two neutron star-black hole coalescences
- Calibration of Moving Puncture Simulations
- Phenomenological template family for black-hole coalescence waveforms
- Dynamical Tides in General Relativity: Effective Action and Effective-One-Body Hamiltonian
- AT2017gfo: an anisotropic and three-component kilonova counterpart of GW170817
- Modeling the dynamics of tidally-interacting binary neutron stars up to merger
- How to move a black hole without excision: gauge conditions for the numerical evolution of a moving puncture
- Relativistic Simulations of Black Hole-Neutron Star Mergers: Effects of black-hole spin
- Geometry and Regularity of Moving Punctures
- Reducing phase error in long numerical binary black hole evolutions with sixth order finite differencing
- Numerical relativity simulations of neutron star merger remnants using conservative mesh refinement
- Optical follow-up of the neutron star-black hole mergers S200105ae and S200115j
- Initial data for black hole-neutron star binaries: a flexible, high-accuracy spectral method
- Filling the holes: Evolving excised binary black hole initial data with puncture techniques
- Excision without excision: the relativistic turducken
- Simulations of black-hole binaries with unequal masses or non-precessing spins: accuracy, physical properties, and comparison with post-Newtonian results
- On the possibility of GW190425 being a black hole--neutron star binary merger
- Quasiequilibrium black hole-neutron star binaries in general relativity
- Relativistic black hole-neutron star binaries in quasiequilibrium: effects of the black hole excision boundary condition
- Simulations of rotating neutron star collapse with the puncture gauge: end state and gravitational waveforms
- Implications of the search for optical counterparts during the second part of the Advanced LIGO's and Advanced Virgo's third observing run: lessons learned for future follow-up observations
- A Reinvestigation of Moving Punctured Black Holes with a New Code
- Quasiequilibrium sequences of black-hole--neutron-star binaries in general relativity
- The trumpet solution from spherical gravitational collapse with puncture gauges
- Relativistic hydrodynamics in the presence of puncture black holes
- Initial data for black hole-neutron star binaries, with rotating stars
- Spinning black hole in the puncture method: Numerical experiments