Puncture Initial Data for Black-Hole Binaries with High Spins and High Boosts
arXiv:1410.8607 · doi:10.1103/PhysRevD.95.024033
Abstract
We solve the Hamiltonian and momentum constraints of general relativity for two black holes with nearly extremal spins and relativistic boosts in the puncture formalism. We use a non-conformally-flat ansatz with an attenuated superposition of two Lorentz-boosted, conformally Kerr or conformally Schwarzschild 3-metrics and their corresponding extrinsic curvatures. We compare evolutions of these data with the standard Bowen-York conformally flat ansatz (technically limited to intrinsic spins and boosts ), finding, typically, an order of magnitude smaller burst of spurious radiation and agreement with inspiral and merger. As a first case study, we evolve two equal-mass black holes from rest with an initial separation of and spins , compute the waveforms produced by the collision, the energy and angular momentum radiated, and the recoil of the final remnant black hole. We find that the black-hole trajectories curve at close separations, leading to the radiation of angular momentum. We also study orbiting nonspinning and moderate-spin black-hole binaries and compare these with standard Bowen-York data. We find a substantial reduction in the nonphysical initial burst of radiation which leads to cleaner waveforms. Finally, we study the case of orbiting binary black-hole systems with spin magnitude in an aligned configuration and compare waveform and final remnant results with those of the SXS Collaboration, finding excellent agreement. This represents the first moving punctures evolution of orbiting and spinning black holes exceeding the Bowen-York limit. Finally, we study different choices of the initial lapse and lapse evolution equation in the moving punctures approach to improve the accuracy and efficiency of the simulations.
23 pages, 32 figures. Version accepted to PRD
References in corpus (41)
- Observation of Gravitational Waves from a Binary Black Hole Merger
- GW151226: Observation of Gravitational Waves from a 22-Solar-Mass Binary Black Hole Coalescence
- Tests of general relativity with GW150914
- Binary Black Hole Mergers in the first Advanced LIGO Observing Run
- Large Merger Recoils and Spin Flips From Generic Black-Hole Binaries
- Accurate evolutions of inspiralling neutron-star binaries: prompt and delayed collapse to black hole
- How to move a black hole without excision: gauge conditions for the numerical evolution of a moving puncture
- The Spin of Supermassive Black Holes
- High-spin binary black hole mergers
- The high-energy collision of two black holes
- Longterm general relativistic simulation of binary neutron stars collapsing to a black hole
- Remnant mass, spin, and recoil from spin aligned black-hole binaries
- Directly comparing GW150914 with numerical solutions of Einstein's equations for binary black hole coalescence
- Simulating binary neutron stars: dynamics and gravitational waves
- Cross section, final spin and zoom-whirl behavior in high-energy black hole collisions
- Error-analysis and comparison to analytical models of numerical waveforms produced by the NRAR Collaboration
- Challenging the paradigm of singularity excision in gravitational collapse
- Spin-orbit interactions in black-hole binaries
- High-velocity collision of two black holes
- Merger of black hole-neutron star binaries: nonspinning black hole case
- Orbital Evolution of Extreme-Mass-Ratio Black-Hole Binaries with Numerical Relativity
- Improved methods for simulating nearly extremal binary black holes
- Foundations of multiple black hole evolutions
- Final spin and radiated energy in numerical simulations of binary black holes with equal masses and equal, aligned or anti-aligned spins
- Modeling the source of GW150914 with targeted numerical-relativity simulations
- Excision without excision: the relativistic turducken
- A practical formula for the radiated angular momentum
- The NINJA-2 project: Detecting and characterizing gravitational waveforms modelled using numerical binary black hole simulations
- Nearly extremal apparent horizons in simulations of merging black holes
- Black hole puncture initial data with realistic gravitational wave content
- Spin flips in generic black hole binaries
- Flip-flopping binary black holes
- Beyond the Bowen-York extrinsic curvature for spinning black holes
- Accuracy Issues for Numerical Waveforms
- High Energy Collisions of Black Holes Numerically Revisited
- Evolution of near-extremal-spin black holes using the moving puncture technique
- Unstable flip-flopping spinning binary black holes
- Exploring the Outer Limits of Numerical Relativity
- Improved Moving Puncture Gauge Conditions for Compact Binary Evolutions
- Dynamic Fisheye Grids for Binary Black Holes Simulations
- Study of Conformally Flat Initial Data for Highly Spinning Black Holes and their Early Evolutions
Cited by in corpus (25)
- Black holes, gravitational waves and fundamental physics: a roadmap
- A Surrogate Model of Gravitational Waveforms from Numerical Relativity Simulations of Precessing Binary Black Hole Mergers
- The RIT binary black hole simulations catalog
- Numerical Relativity of Compact Binaries in the 21st Century
- The Third RIT binary black hole simulations catalog
- SENR/NRPy+: Numerical Relativity in Singular Curvilinear Coordinate Systems
- Coalescence of black hole--neutron star binaries
- Exploring the small mass ratio binary black hole merger via Zeno's dichotomy approach
- Post-Newtonian Quasicircular Initial Orbits for Numerical Relativity
- Circumbinary Disk Accretion into Spinning Black Hole Binaries
- Kicking gravitational wave detectors with recoiling black holes
- Induced Spins from Scattering Experiments of Initially Nonspinning Black Holes
- Evolutions of Nearly Maximally Spinning Black Hole Binaries Using the Moving Puncture Approach
- Elliptica: a new pseudo-spectral code for the construction of initial data
- Adapted gauge to small mass ratio binary black hole evolutions
- Does charge matter in high-energy collisions of black holes?
- A spectral method algorithm for numerical simulations of gravitational fields
- Evolutions of unequal mass, highly spinning black hole binaries
- Bona-Masso slicing conditions and the lapse close to black-hole punctures
- Bona-Massó slices of Reissner-Nordström spacetimes
- Trumpet Initial Data for Boosted Black Holes
- Black hole initial data by numerical integration of the parabolic-hyperbolic form of the constraints
- Discontinuous Galerkin scheme for elliptic equations on extremely stretched grids
- Conformally flat slices of asymptotically flat spacetimes
- The Fourth RIT binary black hole simulations catalog: Extension to Eccentric Orbits