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Blackhole Mergers Through Evection Resonances

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arxiv 2204.07282 v3 pith:PMQ5O7AO submitted 2022-04-15 astro-ph.HE gr-qc

Blackhole Mergers Through Evection Resonances

classification astro-ph.HE gr-qc
keywords binaryeccentricitytimescalediskmergerprecessionresonancewhen
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Mechanisms have been proposed to enhance the merger rate of stellar mass black hole binaries, such as the Von Zeipel-Lidov-Kozai mechanism (vZLK). However, high inclinations are required in order to greatly excite the eccentricity and to reduce the merger time through vZLK. Here, we propose a novel pathway through which compact binaries could merge due to eccentricity increase in general, including in a near coplanar configuration. Specifically, a compact binary migrating in an AGN disk could be captured in an evection resonance, when the precession rate of the binary equals their orbital period around the supermassive black hole. In our study we include precession to due first-order post Newtonian precession as well as that due to disk around one or both components of the binary. Eccentricity is excited when the binary sweeps through the resonance which happens only when it migrates on a timescale 10-100 times the libration timescale of the resonance. Libration timescale decreases as the mass of the disk increases. The eccentricity excitation of the binary can reduce the merger timescale by a factor up to $\sim 10^{3-5}$.

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