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Model systematics in time domain tests of binary black hole evolution

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arxiv 2111.13664 v1 pith:25RD6YIW submitted 2021-11-26 gr-qc astro-ph.HE

classification gr-qcastro-ph.HE
keywords areablackholefinalfindchangeconfidencedifferent
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We perform several consistency tests between different phases of binary black hole dynamics; the inspiral, the merger, and the ringdown on the gravitational wave events GW150914 and GW170814. These tests are performed explicitly in the time domain, without any spectral leakage between the different phases. We compute posterior distributions on the mass and spin of the initial black holes and the final black hole. We also compute the initial areas of the two individual black holes and the final area from the parameters describing the remnant black hole. This facilitates a test of Hawking's black hole area theorem. We use different waveform models to quantify systematic waveform uncertainties for the area increase law with the two events. We find that these errors may lead to overstating the confidence with which the area theorem is confirmed. For example, we find $>99\%$ agreement with the area theorem for GW150914 if a damped sinusoid consisting of a single-mode is used at merger to estimate the final area. This is because this model overestimates the final mass. Including an overtone of the dominant mode decreases the confidence to $\sim94\%$; using a full merger-ringdown model further decreases the confidence to $\sim 85-90\%$. We find that comparing the measured change in the area to the expected change in area yields a more robust test, as it also captures over estimates in the change of area. We find good agreement with GR when applying this test to GW150914 and GW170814.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Potential science with GW250114 -- the loudest binary black hole merger detected to date

    gr-qc 2025-07 conditional novelty 5.0 of 10

    This simulation study forecasts that GW250114 can reveal measurable orbital eccentricity, decisive ringdown overtones, and tight black hole area theorem constraints.

  2. Gravitational wave constraints on corrections to Bekenstein-Hawking Area Formula in classical F(R) gravity and quantum GR : implications for theory parameters

    gr-qc 2026-07 conditional novelty 2.0 of 10

    Assuming an extra 'absolute consistency' rule, gravitational-wave validation of the area theorem forces negative entropy corrections, which restricts F(R) gravity and would rule out two axions or an axion plus a graviton.

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