Mergers of black hole binaries driven by misaligned circumbinary discs

Author:

Martin Rebecca G12ORCID,Lepp Stephen12ORCID,Zhang Bing12ORCID,Nixon C J3ORCID,Childs Anna C4ORCID

Affiliation:

1. Nevada Center for Astrophysics, University of Nevada, Las Vegas , 4505 South Maryland Parkway, Las Vegas, NV 89154 , USA

2. Department of Physics and Astronomy, University of Nevada, Las Vegas , 4505 South Maryland Parkway, Las Vegas, NV 89154 , USA

3. School of Physics and Astronomy, Sir William Henry Bragg Building, Woodhouse Ln., University of Leeds , Leeds LS2 9JT , UK

4. Center for Interdisciplinary Exploration and Research in Astrophysics (CIERA) and Department of Physics and Astronomy Northwestern University , 1800 Sherman Ave., Evanston, IL 60201 , USA

Abstract

ABSTRACT With hydrodynamical simulations we examine the evolution of a highly misaligned circumbinary disc around a black hole binary including the effects of general relativity. We show that a disc mass of just a few per cent of the binary mass can significantly increase the binary eccentricity through von-Zeipel–Kozai–Lidov (ZKL) like oscillations provided that the disc lifetime is longer than the ZKL oscillation time-scale. The disc begins as a relatively narrow ring of material far from the binary and spreads radially. When the binary becomes highly eccentric, disc breaking forms an inner disc ring that quickly aligns to polar. The polar ring drives fast retrograde apsidal precession of the binary that weakens the ZKL effect. This allows the binary eccentricity to remain at a high level and may significantly shorten the black hole merger time. The mechanism requires the initial disc inclination relative to the binary to be closer to retrograde than to prograde.

Funder

NASA

NSF

Science and Technology Facilities Council

Leverhulme Trust

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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