Computation of gravitational waves from inspiraling binary neutron stars in quasiequilibrium circular orbits: Formulation and calibration
- 26 October 2001
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review D
- Vol. 64 (10) , 104017
- https://doi.org/10.1103/physrevd.64.104017
Abstract
Gravitational waves from binary neutron stars in quasiequilibrium circular orbits are computed using an approximate method which we propose in this paper. In the first step of this method, we prepare general relativistic irrotational binary neutron stars in a quasiequilibrium circular orbit, neglecting gravitational waves. We adopt the so-called conformal flatness approximation for a three-metric to obtain the quasiequilibrium states in this paper. In the second step, we compute gravitational waves, solving linear perturbation equations in the background spacetime of the quasiequilibrium states. Comparing numerical results with post-Newtonian waveforms and luminosity of gravitational waves from two point masses in circular orbits, we demonstrate that this method can produce accurate waveforms and luminosity of gravitational waves. It is shown that the effects of tidal deformation of neutron stars and strong general relativistic gravity modify the post-Newtonian results for compact binary neutron stars in close orbits. We indicate that the magnitude of a systematic error in quasiequilibrium states associated with the conformal flatness approximation is fairly large for close and compact binary neutron stars. Several formulations for improving the accuracy of quasiequilibrium states are proposed.Keywords
All Related Versions
This publication has 46 references indexed in Scilit:
- Equation of motion for relativistic compact binaries with the strong field point particle limit: The second and half post-Newtonian orderPhysical Review D, 2001
- Gravitational field and equations of motion of spinning compact binaries to 2.5 post-Newtonian orderPhysical Review D, 2001
- Determination of the last stable orbit for circular general relativistic binaries at the third post-Newtonian approximationPhysical Review D, 2000
- Generation of Post-Newtonian Gravitational Radiation via Direct Integration of the Relaxed Einstein EquationsProgress of Theoretical Physics Supplement, 1999
- Post-Newtonian Expansion of Gravitational RadiationProgress of Theoretical Physics Supplement, 1999
- Computing the merger of black-hole binaries: The IBBH problemPhysical Review D, 1998
- Chapter 1. Black Hole PerturbationProgress of Theoretical Physics Supplement, 1997
- Gravitational waveforms from inspiralling compact binaries to second-post-Newtonian orderClassical and Quantum Gravity, 1996
- Post-Newtonian Expansion of Gravitational Waves from a Particle in Circular Orbit around a Schwarzschild Black HoleProgress of Theoretical Physics, 1994
- Black Holes, White Dwarfs, and Neutron StarsPublished by Wiley ,1983