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Catalog variance of testing general relativity with gravitational-wave data

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arxiv 2310.03811 v2 pith:MVLJ5BLQ submitted 2023-10-05 gr-qc astro-ph.HEhep-phphysics.data-an

Catalog variance of testing general relativity with gravitational-wave data

classification gr-qc astro-ph.HEhep-phphysics.data-an
keywords cataloggeneralgravitational-wavelargerelativityvarianceallowsarbitrarily
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Combining multiple gravitational-wave observations allows for stringent tests of general relativity, targeting effects that would otherwise be undetectable using single-event analyses. We highlight how the finite size of the observed catalog induces a significant source of variance. If not appropriately accounted for, general relativity can be excluded with arbitrarily large credibility even if it is the underlying theory of gravity. This effect is generic and holds for arbitrarily large catalogs. Moreover, we show that it cannot be suppressed by selecting "golden" observations with large signal-to-noise ratios. We present a mitigation strategy based on bootstrapping (i.e. resampling with repetition) that allows assigning uncertainties to one's credibility on the targeted test. We demonstrate our findings using both toy models and real gravitational-wave data. In particular, we quantify the impact of the catalog variance on the ringdown properties of black holes using the latest LIGO/Virgo catalog.

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Forward citations

Cited by 2 Pith papers

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

  1. Finite signal-to-noise ratio bias in parameter estimation for damped oscillations: cautionary remark about catalog-level black-hole spectroscopy

    gr-qc 2026-07 accept novelty 6.0

    Damping-time estimates for ringdown signals carry unsuppressed O(ρ^{-2}) positive biases from priors and likelihood geometry, risking false Kerr violations after ~100 events at ρ≈10.

  2. Black Hole Spectroscopy and Tests of General Relativity with GW250114

    gr-qc 2025-09 accept novelty 6.0

    GW250114 data confirm the remnant is consistent with a Kerr black hole and bound the dominant quadrupolar mode frequency to within a few percent of the GR prediction, with constraints tighter than prior multi-event catalogs.