PINCH: Pipeline-Informed Noise Characterization of Gravitational Wave Candidates
PINCH: Pipeline-Informed Noise Characterization of Gravitational Wave Candidates
We present a method to identify and categorize gravitational wave candidate triggers identified by matched filtering gravitational wave searches (pipelines) caused by transient noise (glitches) in gravitational wave detectors using Support Vector Machine (SVM) classifiers. Our approach involves training SVM models on pipeline triggers which occur outside periods of excess noise to distinguish between triggers caused by random noise and those induced by glitches. This method is applied independently to the triggers produced by the GstLAL search pipeline on data from the LIGO Hanford and Livingston observatories during the second half of the O3 observing run. The trained SVM models assign scores to ambiguous triggers, quantifying their similarity to triggers caused by random fluctuations, with triggers with scores above a defined threshold being classified as glitch-induced. Analysis of these triggers reveals the distinct impact of different glitch classes on the search pipeline, including their distribution in relevant parameter spaces. We use metrics such as the Bhattacharyya coefficient and an over-representation ratio to quantify the consistency and prevalence of glitch impacts over time and across parameter spaces. Our findings demonstrate that certain glitch types disproportionately affect specific regions of the parameter space, and that certain glitch types manifest themselves in the eyes of the pipeline in consistent ways while other types vary significantly. This method provides a framework for understanding and mitigating the influence of non-Gaussian transients on gravitational wave search pipelines, with implications for improving detection sensitivity and better understanding noise populations.
Zach Yarbrough、Andre Guimaraes、Prathamesh Joshi、Gabriela González、Andrew Valentini、Urja Shah
天文学物理学
Zach Yarbrough,Andre Guimaraes,Prathamesh Joshi,Gabriela González,Andrew Valentini,Urja Shah.PINCH: Pipeline-Informed Noise Characterization of Gravitational Wave Candidates[EB/OL].(2025-05-20)[2025-06-12].https://arxiv.org/abs/2505.14949.点此复制
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