Measuring the rate of glitches in interferometric gravitational wave detectors with a hierarchical Bayesian model

Fuente: arXiv
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Main Authors: Ashton, Gregory, Talbot, Colm, Lundgren, Andrew, Malz, Ann-Kristin, Areeda, Joseph
Format: Preprint
Published: 2026
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author Ashton, Gregory
Talbot, Colm
Lundgren, Andrew
Malz, Ann-Kristin
Areeda, Joseph
author_facet Ashton, Gregory
Talbot, Colm
Lundgren, Andrew
Malz, Ann-Kristin
Areeda, Joseph
contents Ground-based gravitational wave detectors are now routinely surveying the dark Universe, finding hundreds of collisions between compact objects such as black holes and neutron stars. However, terrestrial non-Gaussian noise artefacts, commonly known as glitches, reduce the sensitivity to signals and can overlap signals, producing biased astrophysical inferences. We introduce a hierarchical Bayesian model to measure the glitch rate, which improves upon existing trigger-counting methods in its capacity to measure the rate down into the low signal-to-noise regime without contamination from the Gaussian noise background, provided the population is accurately modelled. The methodology builds on standard hierarchical inference, but includes several novel features, including hierarchical inference with quantile compression (HIQC), a generic approximation method for the hierarchical recycled likelihood, and a time-domain rate estimated by fitting basis functions. We validate the methodology using simulated data with injected glitches and then apply it to data from the fourth LIGO-Virgo-KAGRA observing run, demonstrating time-resolved inferences of the glitch rate over a 24 h period. The inferred glitch rate is consistent with estimates from trigger counts, but does not require an arbitrary threshold and provides a more fine-grained view of the temporal behaviour. Finally, we demonstrate how our individual-detector rate estimates can be transformed into a coincident glitch probability and utilise this to validate that the retracted gravitational-wave candidate GW230630_070659 is likely a pair of coincident glitches.
format Preprint
id arxiv_https___arxiv_org_abs_2604_16039
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Measuring the rate of glitches in interferometric gravitational wave detectors with a hierarchical Bayesian model
Ashton, Gregory
Talbot, Colm
Lundgren, Andrew
Malz, Ann-Kristin
Areeda, Joseph
General Relativity and Quantum Cosmology
Instrumentation and Methods for Astrophysics
Ground-based gravitational wave detectors are now routinely surveying the dark Universe, finding hundreds of collisions between compact objects such as black holes and neutron stars. However, terrestrial non-Gaussian noise artefacts, commonly known as glitches, reduce the sensitivity to signals and can overlap signals, producing biased astrophysical inferences. We introduce a hierarchical Bayesian model to measure the glitch rate, which improves upon existing trigger-counting methods in its capacity to measure the rate down into the low signal-to-noise regime without contamination from the Gaussian noise background, provided the population is accurately modelled. The methodology builds on standard hierarchical inference, but includes several novel features, including hierarchical inference with quantile compression (HIQC), a generic approximation method for the hierarchical recycled likelihood, and a time-domain rate estimated by fitting basis functions. We validate the methodology using simulated data with injected glitches and then apply it to data from the fourth LIGO-Virgo-KAGRA observing run, demonstrating time-resolved inferences of the glitch rate over a 24 h period. The inferred glitch rate is consistent with estimates from trigger counts, but does not require an arbitrary threshold and provides a more fine-grained view of the temporal behaviour. Finally, we demonstrate how our individual-detector rate estimates can be transformed into a coincident glitch probability and utilise this to validate that the retracted gravitational-wave candidate GW230630_070659 is likely a pair of coincident glitches.
title Measuring the rate of glitches in interferometric gravitational wave detectors with a hierarchical Bayesian model
topic General Relativity and Quantum Cosmology
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2604.16039