gravitational wave astronomy

Precision Ringdown Measurements of Binary Black Hole Remnants

arXiv:2607.13275

summary

The paper presents a precise analysis of the ringdown phase of binary black hole mergers using coherent WaveBurst reconstruction, yielding tighter constraints on the dominant quasi‑normal mode frequency and damping time and confirming consistency with general relativity.

Abstract

The ringdown gravitational wave from a binary black hole (BBH) merger is a superposition of quasi-normal modes (QNMs) of the remnant black hole. In general relativity (GR), QNMs are damped harmonic oscillations with frequencies and damping times uniquely determined by the remnant's mass and spin. The measurement of the ringdown modes and performing black hole spectroscopy provides a tool to test the validity of GR. In this work, we present RingCWB, a ringdown analysis method based on coherent WaveBurst (cWB), an unmodeled pipeline for the detection and reconstruction of gravitational-wave signals. This method yields tighter constraints on the QNM frequency and damping time than previous measurements. The improved precision results from the noise reduction achieved by the cWB reconstruction and the enhanced ringdown analysis, which probes the remnant properties at earlier times, closer to the merger. We have analysed publicly available binary black hole (BBH) detections from the third Gravitational-Wave Transient Catalog (GWTC-3). For all events considered, the measured frequency and damping time of the dominant mode are found to be consistent with the predictions of GR. A combined analysis further strengthens these constraints, yielding fractional deviations in frequency and damping time , consistent with zero within the quoted uncertainties.

8 pages, 4 figures

Topics & keywords

#ringdown#black hole spectroscopy#quasi-normal modes#gravitational wave data analysis#tests of general relativitycWB reconstructionGWTC-3dominant (2,2) modefrequency deviationdamping timebinary black hole merger
Precision Ringdown Measurements of Binary Black Hole Remnants · wovepaper