Nonchaotic evolution of triangular configuration due to gravitational radiation reaction in the three-body problem
arXiv:1512.01087 · doi:10.1103/PhysRevD.93.084027
Abstract
Continuing work initiated in an earlier publication [H. Asada, Phys. Rev. D {\bf 80}, 064021 (2009)], the gravitational radiation reaction to Lagrange's equilateral triangular solution of the three-body problem is investigated in an analytic method. The previous work is based on the energy balance argument, which is sufficient for a two-body system because the number of degrees of freedom (the semimajor axis and the eccentricity in quasi-Keplerian cases, for instance) equals that of the constants of motion such as the total energy and the orbital angular momentum. In a system with three (or more) bodies, however, the number of degrees of freedom is more than that of the constants of motion. Therefore, the present paper discusses the evolution of the triangular system by directly treating the gravitational radiation reaction force to each body. The perturbed equations of motion are solved by using the Laplace transform technique. It is found that the triangular configuration is adiabatically shrinking and is kept in equilibrium by increasing the orbital frequency due to the radiation reaction if the mass ratios satisfy the Newtonian stability condition. Long-term stability involving the first post-Newtonian corrections is also discussed.
19 pages, 2 figures; accepted by PRD
References in corpus (12)
- Observation of Gravitational Waves from a Binary Black Hole Merger
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- A millisecond pulsar in a stellar triple system
- Comparing Effective-One-Body gravitational waveforms to accurate numerical data
- Faithful Effective-One-Body waveforms of equal-mass coalescing black-hole binaries
- Gravitational waveforms for 2- and 3-body gravitating systems
- Earth-Moon Lagrangian points as a testbed for general relativity and effective field theories of gravity
- Post-Newtonian effects on Lagrange's equilateral triangular solution for the three-body problem
- Post-Newtonian effects on the stability of the triangular solution in the three-body problem for general masses
- Gravitational Waves from Periodic Three-Body Systems
- Can N-body systems generate periodic gravitational waves?
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