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Parameter estimation of binary black holes in the endpoint of the up-down instability

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abstract

Black-hole binary spin precession admits equilibrium solutions corresponding to systems with (anti-) aligned spins. Among these, binaries in the up-down configuration, where the spin of the heavier (lighter) black hole is co- (counter-) aligned with the orbital angular momentum, might be unstable to small perturbations of the spin directions. The occurrence of the up-down instability leads to gravitational-wave sources that formed with aligned spins but are detected with precessing spins. We present a Bayesian procedure based on the Savage-Dickey density ratio to test the up-down origin of gravitational-wave events. This is applied to both simulated signals, which indicate that achieving strong evidence is within the reach of current experiments, and the LIGO/Virgo events released to date, which indicate that current data are not informative enough.

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gr-qc 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Coincident morphological transitions in precessing black-hole binaries

gr-qc · 2025-08-27 · conditional · novelty 6.0

Every coincident double or triple spin-morphology transition in post-Newtonian black-hole binaries is derived analytically, giving closed-form radii (rwide, rUD±) and parameter conditions for five allowed cases and one forbidden case.

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  • Coincident morphological transitions in precessing black-hole binaries gr-qc · 2025-08-27 · conditional · none · ref 38 · internal anchor

    Every coincident double or triple spin-morphology transition in post-Newtonian black-hole binaries is derived analytically, giving closed-form radii (rwide, rUD±) and parameter conditions for five allowed cases and one forbidden case.