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Spin misalignment of black hole binaries from young star clusters: implications for the origin of gravitational waves events

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arxiv 2102.01689 v2 pith:SUWUDRIN submitted 2021-02-02 astro-ph.HE astro-ph.GA

classification astro-ph.HEastro-ph.GA
keywords binarybinariesenvelopeinteractionsmergingspinundergoxeff
verification ladder T0 review T1 audit T2 compute T3 formal
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Recent studies indicate that the progenitors of merging black hole (BH) binaries from young star clusters can undergo a common envelope phase just like isolated binaries. If the stars emerge from the common envelope as naked cores, tidal interactions can efficiently synchronize their spins before they collapse into BHs. Contrary to the isolated case, these binary BHs can also undergo dynamical interactions with other BHs in the cluster before merging. The interactions can tilt the binary orbital plane, leading to spin-orbit misalignment. We estimate the spin properties of merging binary BHs undergoing this scenario by combining up-to-date binary population synthesis and accurate few-body simulations. We show that post-common envelope binary BHs are likely to undergo only a single encounter, due to the high binary recoil velocity and short coalescence times. Adopting conservative limits on the binary-single encounter rates, we obtain a local BH merger rate density of ~6.6 yr^-1 Gpc^-3. Assuming low (<0.2) natal BH spins, this scenario reproduces the trends in the distributions of effective spin Xeff and precession parameters Xp inferred from GWTC-2, including the peaks at (Xeff, Xp) ~ (0.1, 0.2) and the tail at negative Xeff values.

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Cited by 2 Pith papers

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  1. Periodic line-of-sight velocity-driven modulations to gravitational waves emitted by compact binaries in Keplerian outer orbits

    gr-qc 2026-07 conditional novelty 7.0 of 10

    Periodic non-relativistic line-of-sight velocity of a compact binary’s centre of mass produces 4PN phase and amplitude modulations that improve Fisher forecasts of tertiary mass and outer-orbit size for A+, ET, DECIGO...

  2. Dissecting environmental effects with eccentric gravitational wave sources

    astro-ph.HE 2025-06 conditional novelty 7.0 of 10

    Resonances between oscillating environmental forces and the epicyclic motion of eccentric binaries can dominate gravitational wave dephasing over orbit-averaged drag for eccentricities above about 0.05.

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