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Tick-Tock: The Imminent Merger of a Supermassive Black Hole Binary

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arxiv 2201.11633 v1 pith:JYRLAWYN submitted 2022-01-27 astro-ph.HE gr-qc

classification astro-ph.HEgr-qc
keywords binarygravitationalwaveblackeventevolutionfirsthole
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Supermassive black hole binaries (SMBHs) are a fascinating byproduct of galaxy mergers in the hierarchical universe. In the last stage of their orbital evolution, gravitational wave radiation drives the binary inspiral and produces the loudest siren awaiting to be detected by gravitational wave observatories. Periodically varying emission from active galactic nuclei has been proposed as a powerful approach to probe such systems, although none of the identified candidates are close to their final coalescence such that the observed periods stay constant in time. In this work, we report on the first system with rapid decaying periods revealed by its optical and X-ray light curves, which has decreased from about one year to one month in three years. Together with its optical hydrogen line spectroscopy, we propose that the system is an uneven mass-ratio, highly eccentric SMBH binary which will merge within three years, as predicted by the trajectory evolution model. If the interpretation is true, coordinated, multi-band electromagnetic campaign should be planned for this first binary SMBH merger event observed in human history, together with possible neutrino measurements. Gravitational wave memory from this event may also be detectable by Pulsar Timing Array with additional five-to-ten year observation.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 9 citations worldwide. Full citation record

  1. Modes in Transitional Millisecond Pulsars: Evidence of Pulsar Wind-Induced Disk Heating from GRMHD and Radiative Transfer

    astro-ph.HE 2026-07 conditional novelty 6.0 of 10

    Pulsar-wind-induced disk heating in GRMHD simulations reproduces the high and low X-ray modes of transitional millisecond pulsars.

  2. Identifying Compact Chirping SMBHBs in LSST using Bayesian Analysis

    astro-ph.HE 2025-06 conditional novelty 6.0 of 10

    A Bayesian 'frequency comb' sampler can recover the chirping periodicity of compact supermassive black hole binaries from simulated 10-year LSST lightcurves with 3-5 sigma confidence for amplitudes as low as 0.1 mag.

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