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Gwadaptive_scattering: an automated pipeline for scattered light noise characterization

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arxiv 2107.07565 v1 pith:QOO7JOSY submitted 2021-07-15 astro-ph.IM physics.data-an

Gwadaptive_scattering: an automated pipeline for scattered light noise characterization

classification astro-ph.IM physics.data-an
keywords noisescatteringlightpipelinescatteredalgorithmautomatedcharacterization
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Scattered light noise affects the sensitivity of gravitational waves detectors. The characterization of such noise is needed to mitigate it. The time-varying filter empirical mode decomposition algorithm is suitable for identifying signals with time-dependent frequency such as scattered light noise (or scattering). We present a fully automated pipeline based on the pytvfemd library, a python implementation of the tvf-EMD algorithm, to identify objects inducing scattering in the gravitational-wave channel with their motion. The pipeline application to LIGO Livingston O3 data shows that most scattering noise is due to the penultimate mass at the end of the X-arm of the detector (EXPUM) and with a motion in the micro-seismic frequency range.

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    Scattered-light noise coupling to strain readout is derived as full optomechanical transfer factors, recovering legacy models only in phase-dominated regimes and substantially revising Einstein Telescope low-frequency...