English

Precessional instability in binary black holes with aligned spins

General Relativity and Quantum Cosmology 2015-10-06 v2 High Energy Astrophysical Phenomena

Abstract

Binary black holes on quasicircular orbits with spins aligned with their orbital angular momentum have been testbeds for analytic and numerical relativity for decades, not least because symmetry ensures that such configurations are equilibrium solutions to the spin-precession equations. In this work, we show that these solutions can be unstable when the spin of the higher-mass black hole is aligned with the orbital angular momentum and the spin of the lower-mass black hole is anti-aligned. Spins in these configurations are unstable to precession to large misalignment when the binary separation rr is between the values rud±=(χ1±qχ2)4(1q)2Mr_{\rm ud\pm}= (\sqrt{\chi_1} \pm \sqrt{q \chi_2})^4 (1-q)^{-2} M, where MM is the total mass, qm2/m1q \equiv m_2/m_1 is the mass ratio, and χ1\chi_1 (χ2\chi_2) is the dimensionless spin of the more (less) massive black hole. This instability exists for a wide range of spin magnitudes and mass ratios and can occur in the strong-field regime near merger. We describe the origin and nature of the instability using recently developed analytical techniques to characterize fully generic spin precession. This instability provides a channel to circumvent astrophysical spin alignment at large binary separations, allowing significant spin precession prior to merger affecting both gravitational-wave and electromagnetic signatures of stellar-mass and supermassive binary black holes.

Keywords

Cite

@article{arxiv.1506.09116,
  title  = {Precessional instability in binary black holes with aligned spins},
  author = {Davide Gerosa and Michael Kesden and Richard O'Shaughnessy and Antoine Klein and Emanuele Berti and Ulrich Sperhake and Daniele Trifirò},
  journal= {arXiv preprint arXiv:1506.09116},
  year   = {2015}
}

Comments

Accepted for publication in PRL. Animations available at http://davidegerosa.com/spinprecession/

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