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Enhancing search pipelines for short gravitational wave transients with Gaussian mixture modelling

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arxiv 2407.16414 v2 pith:BPZ5LAHP submitted 2024-07-23 gr-qc astro-ph.IM

classification gr-qcastro-ph.IM
keywords searchgravitationalnoisetransientswaveanalysisapplicationburst
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We present an enhanced method for the application of Gaussian Mixture Modelling (GMM) to the coherent WaveBurst (cWB) algorithm in the search for short-duration gravitational wave (GW) transients. The supervised Machine Learning method of GMM allows for the multi-dimensional distributions of noise and signal to be modelled over a set of representative attributes, which aids in the classification of GW signals against noise transients (glitches) in the data. We demonstrate that updating the approach to model construction eliminates bias previously seen in the GMM analysis, increasing the robustness and sensitivity of the analysis over a wider range of burst source populations. The enhanced methodology is applied to the generic burst all-sky short search in the LIGO-Virgo full third observing run (O3), marking the first application of GMM to the 3 detector Livingston-Hanford-Virgo network. For both 2- and 3- detector networks, we observe comparable sensitivities to an array of generic signal morphologies, with significant sensitivity improvements to waveforms in the low Quality factor parameter space at false alarm rates of 1 per 100 years. This proves that GMM can effectively mitigate blip glitches, which are one of the most problematic sources of noise for un-modelled GW searches. The cWB-GMM search recovers similar numbers of compact binary coalescence (CBC) events as other cWB post-production methods, and concludes on no new gravitational wave detection after known CBC events are removed.

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  1. Search for dynamical black hole captures with Gaussian mixture modelling

    gr-qc 2025-08 unverdicted novelty 5.0 of 10

    A Gaussian mixture model enhanced search in LVK O3 data improves sensitivity to dynamical black hole captures and sets a 90% upper limit of 0.15 Gpc^-3 yr^-1, with no new detections.

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