Impact of Detector Calibration Accuracy on Black Hole Spectroscopy
arXiv:2506.15979 · doi:10.1103/s9jw-jg6n
Abstract
Systematic errors in detector calibration can bias signal analyses and potentially lead to incorrect interpretations suggesting violations of general relativity. In this study, we investigate how calibration systematics affect black hole (BH) spectroscopy, a technique that uses the quasinormal modes (QNMs) emitted during the ringdown phase of gravitational waves (GWs) to study remnant BHs formed in compact binary coalescences. We simulate a series of physically motivated, tunable calibration errors and use them to intentionally miscalibrate numerical relativity waveforms. We then apply a QNM extraction method -- the rational QNM filter -- to quantify the impact of these calibration errors. We find that current calibration standards (errors within in magnitude and in phase across the most sensitive frequency range of 20--2000 Hz) are adequate for BH ringdown analyses with existing observations, but insufficient for the accuracy goals of future upgraded and next-generation observatories. Specifically, we show that for events with a high ringdown signal-to-noise ratio of , calibration errors must remain in magnitude and in phase to avoid introducing biases. While this analysis focuses on a particular aspect of BH spectroscopy, the results offer quantitative benchmarks for calibration standards crucial to fully realize the potential of precision tests of general relativity in the next-generation detector era.
19 pages, 15 figures
References in corpus (25)
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo During the First Half of the Third Observing Run
- GWTC-3: Compact Binary Coalescences Observed by LIGO and Virgo During the Second Part of the Third Observing Run
- GW190521: A Binary Black Hole Merger with a Total Mass of
- Tests of General Relativity with Binary Black Holes from the second LIGO-Virgo Gravitational-Wave Transient Catalog
- Testing the black hole "no-hair" hypothesis
- Observational Black Hole Spectroscopy: A time-domain multimode analysis of GW150914
- Analysis of Ringdown Overtones in GW150914
- Characterization of systematic error in Advanced LIGO calibration
- Calibration Uncertainty for Advanced LIGO's First and Second Observing Runs
- Constraints on quasi-normal-mode frequencies with LIGO-Virgo binary-black-hole observations
- A multimode quasi-normal spectrum from a perturbed black hole
- Quasinormal-mode filters: a new approach to analyze the gravitational-wave ringdown of binary black-hole mergers
- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- Black hole spectroscopy by mode cleaning
- Using rational filters to uncover the first ringdown overtone in GW150914
- Comment on "Analysis of Ringdown Overtones in GW150914''
- Neural Posterior Estimation with guaranteed exact coverage: the ringdown of GW150914
- Reply to Comment on "Analysis of Ringdown Overtones in GW150914"
- Overtones and Nonlinearities in Binary Black Hole Ringdowns
- Calibration Uncertainty's Impact on Gravitational-Wave Observations
- Reanalyzing the ringdown signal of GW150914 using the F-statistic method
- Impact of calibration uncertainties on Hubble constant measurements from gravitational-wave sources
- Effects of calibration uncertainties on the detection and parameter estimation of isotropic gravitational-wave backgrounds