Prototype effective-one-body model for nonprecessing spinning inspiral-merger-ringdown waveforms
arXiv:1202.0790 · doi:10.1103/PhysRevD.86.024011
Abstract
We first use five non-spinning and two mildly spinning (chi_i \simeq -0.44, +0.44) numerical-relativity waveforms of black-hole binaries and calibrate an effective-one-body (EOB) model for non-precessing spinning binaries, notably its dynamics and the dominant (2,2) gravitational-wave mode. Then, we combine the above results with recent outcomes of small-mass-ratio simulations produced by the Teukolsky equation and build a prototype EOB model for detection purposes, which is capable of generating inspiral-merger-ringdown waveforms for non-precessing spinning black-hole binaries with any mass ratio and individual black-hole spins -1 \leq chi_i \lesssim 0.7. We compare the prototype EOB model to two equal-mass highly spinning numerical-relativity waveforms of black holes with spins chi_i = -0.95, +0.97, which were not available at the time the EOB model was calibrated. In the case of Advanced LIGO we find that the mismatch between prototype-EOB and numerical-relativity waveforms is always smaller than 0.003 for total mass 20-200 M_\odot, the mismatch being computed by maximizing only over the initial phase and time. To successfully generate merger waveforms for individual black-hole spins chi_i \gtrsim 0.7, the prototype-EOB model needs to be improved by (i) better modeling the plunge dynamics and (ii) including higher-order PN spin terms in the gravitational-wave modes and radiation-reaction force.
20 pages, 8 figures. Minor changes to match version accepted for publication in PRD
References in corpus (28)
- LIGO: The Laser Interferometer Gravitational-Wave Observatory
- Inspiral, merger and ring-down of equal-mass black-hole binaries
- Toward faithful templates for non-spinning binary black holes using the effective-one-body approach
- Faithful Effective-One-Body waveforms of small-mass-ratio coalescing black-hole binaries
- Effective-one-body waveforms calibrated to numerical relativity simulations: coalescence of non-spinning, equal-mass black holes
- An improved analytical description of inspiralling and coalescing black-hole binaries
- Effective one body approach to the dynamics of two spinning black holes with next-to-leading order spin-orbit coupling
- Gravitational self-force correction to the innermost stable circular orbit of a Schwarzschild black hole
- Comparing Effective-One-Body gravitational waveforms to accurate numerical data
- A data-analysis driven comparison of analytic and numerical coalescing binary waveforms: nonspinning case
- The final mass and spin of black hole mergers
- Using Full Information When Computing Modes of Post-Newtonian Waveforms From Inspiralling Compact Binaries in Circular Orbit
- Accurate Effective-One-Body waveforms of inspiralling and coalescing black-hole binaries
- The Hyperfine Einstein-Infeld-Hoffmann Potential
- Effective-one-body waveforms calibrated to numerical relativity simulations: coalescence of non-precessing, spinning, equal-mass black holes
- High-accuracy numerical simulation of black-hole binaries: Computation of the gravitational-wave energy flux and comparisons with post-Newtonian approximants
- The First Law of Binary Black Hole Mechanics in General Relativity and Post-Newtonian Theory
- Gravitational Recoil during Binary Black Hole Coalescence using the Effective One Body Approach
- Faithful Effective-One-Body waveforms of equal-mass coalescing black-hole binaries
- The complete non-spinning effective-one-body metric at linear order in the mass ratio
- Gravitational Self-Force Correction to the Binding Energy of Compact Binary Systems
- Precession effect of the gravitational self-force in a Schwarzschild spacetime and the effective one-body formalism
- Spin induced multipole moments for the gravitational wave flux from binary inspirals to third Post-Newtonian order
- Accurate gravitational waveforms for binary-black-hole mergers with nearly extremal spins
- Modeling multipolar gravitational-wave emission from small mass-ratio mergers
- Final spin of a coalescing black-hole binary: an Effective-One-Body approach
- Can binary mergers produce maximally spinning black holes?
- A hybrid method for understanding black-hole mergers: head-on case
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