Nutational resonances, transitional precession, and precession-averaged evolution in binary black-hole systems
arXiv:1705.02369 · doi:10.1103/PhysRevD.96.024007
Abstract
In the post-Newtonian (PN) regime, the timescale on which the spins of binary black holes precess is much shorter than the radiation-reaction timescale on which the black holes inspiral to smaller separations. On the precession timescale, the angle between the total and orbital angular momenta oscillates with nutation period , during which the orbital angular momentum precesses about the total angular momentum by an angle . This defines two distinct frequencies that vary on the radiation-reaction timescale: the nutation frequency and the precession frequency . We use analytic solutions for generic spin precession at 2PN order to derive Fourier series for the total and orbital angular momenta in which each term is a sinusoid with frequency for integer . As black holes inspiral, they can pass through nutational resonances () at which the total angular momentum tilts. We derive an approximate expression for this tilt angle and show that it is usually less than radians for nutational resonances at binary separations . The large tilts occurring during transitional precession (near zero total angular momentum) are a consequence of such states being approximate nutational resonances. Our new Fourier series for the total and orbital angular momenta converge rapidly with providing an intuitive and computationally efficient approach to understanding generic precession that may facilitate future calculations of gravitational waveforms in the PN regime.
18 pages, 9 figures, version published in PRD
References in corpus (8)
- Illuminating Black Hole Binary Formation Channels with Spins in Advanced LIGO
- Analysis of spin precession in binary black hole systems including quadrupole-monopole interaction
- Constructing Gravitational Waves from Generic Spin-Precessing Compact Binary Inspirals
- Effective potentials and morphological transitions for binary black-hole spin precession
- Relativistic Suppression of Black Hole Recoils
- Final spins from the merger of precessing binary black holes
- Effects of post-Newtonian Spin Alignment on the Distribution of Black-Hole Recoils
- On the equal-mass limit of precessing black-hole binaries
Cited by in corpus (17)
- Black holes, gravitational waves and fundamental physics: a roadmap
- Spin orientations of merging black holes formed from the evolution of stellar binaries
- Measuring the Hubble constant with neutron star black hole mergers
- Evolution of small-mass-ratio binaries with a spinning secondary
- Improved post-Newtonian waveform model for inspiralling precessing-eccentric compact binaries
- Efficient multi-timescale dynamics of precessing black-hole binaries
- Accurate and Efficient Waveform Model for Precessing Binary Black Holes
- Endpoint of the up-down instability in precessing binary black holes
- A taxonomy of black-hole binary spin precession and nutation
- Wide nutation: binary black-hole spins repeatedly oscillating from full alignment to full anti-alignment
- Up-down instability of binary black holes in numerical relativity
- Ringdown mode amplitudes of precessing binary black holes
- Constraining black-hole binary spin precession and nutation with sequential prior conditioning
- The binary black hole explorer: on-the-fly visualizations of precessing binary black holes
- Relevance of Precession for Tests of the Black Hole No Hair Theorems
- Parity Violation in Spin-Precessing Binaries: Gravitational Waves from the Inspiral of Black Holes in Dynamical Chern-Simons Gravity
- Signatures of spin precession and nutation in isolated black-hole binaries