Accuracy of gravitational waveform models for observing neutron-star--black-hole binaries in Advanced LIGO
arXiv:1307.1757 · doi:10.1103/PhysRevD.88.124039
Abstract
Gravitational waves radiated by the coalescence of compact-object binaries containing a neutron star and a black hole are one of the most interesting sources for the ground-based gravitational-wave observatories Advanced LIGO and Advanced Virgo. Advanced LIGO will be sensitive to the inspiral of a neutron star into a black hole to a maximum distance of Mpc. Achieving this sensitivity and extracting the physics imprinted in observed signals requires accurate modeling of the binary to construct template waveforms. In a NSBH binary, the black hole may have significant angular momentum (spin), which affects the phase evolution of the emitted gravitational waves. We investigate the ability of post-Newtonian (PN) templates to model the gravitational waves emitted during the inspiral phase of NSBH binaries. We restrict the black hole's spin to be aligned with the orbital angular momentum and compare several approximants. We examine restricted amplitude waveforms that are accurate to 3.5PN order in the orbital dynamics and complete to 2.5PN order in the spin dynamics. We also consider PN waveforms with the recently derived 3.5PN spin-orbit and 3PN spin-orbit tail corrections. We compare these approximants to the effective-one-body model. For all these models, large disagreements start at low to moderate black hole spins, particularly for binaries where the spin is anti-aligned with the orbital angular momentum. We show that this divergence begins in the early inspiral at for . PN spin corrections beyond those currently known will be required for optimal detection searches and to measure the parameters of neutron star--black hole binaries. While this complicates searches, the strong dependence of the gravitational-wave signal on the spin dynamics will make it possible to extract significant astrophysical information.
17 pages, 15 figures, abstract shortened to the 1920 character limit
References in corpus (9)
- Comparison of post-Newtonian templates for compact binary inspiral signals in gravitational-wave detectors
- Higher-order spin effects in the dynamics of compact binaries I. Equations of motion
- Eight New Millisecond Pulsars in NGC 6440 and NGC 6441
- Implications for the Origin of GRB 070201 from LIGO Observations
- Search for gravitational waves from binary inspirals in S3 and S4 LIGO data
- Next-to-next-to-leading order spin-orbit effects in the near-zone metric and precession equations of compact binaries
- Detecting binary neutron star systems with spin in advanced gravitational-wave detectors
- Recoil velocity at 2PN order for spinning black hole binaries
- First direct comparison of non-disrupting neutron star-black hole and binary black hole merger simulations
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