Coherent injection of magnetic noise and its impact on gravitational-wave searches

Fuente: arXiv
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Autores principales: Janssens, Kamiel, Lawrence, Jessica, Effler, Anamaria, Schofield, Robert M. S., Lalleman, Max, Betzwieser, Joseph, Christensen, Nelson, Coughlin, Michael W., Driggers, Jennifer C., Helmling-Cornell, Adrian F., O'Hanlon, Timothy J., Quintero, Eric A., Reis, Juliedson A. M., van Remortel, Nick
Formato: Preprint
Publicado: 2025
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author Janssens, Kamiel
Lawrence, Jessica
Effler, Anamaria
Schofield, Robert M. S.
Lalleman, Max
Betzwieser, Joseph
Christensen, Nelson
Coughlin, Michael W.
Driggers, Jennifer C.
Helmling-Cornell, Adrian F.
O'Hanlon, Timothy J.
Quintero, Eric A.
Reis, Juliedson A. M.
van Remortel, Nick
author_facet Janssens, Kamiel
Lawrence, Jessica
Effler, Anamaria
Schofield, Robert M. S.
Lalleman, Max
Betzwieser, Joseph
Christensen, Nelson
Coughlin, Michael W.
Driggers, Jennifer C.
Helmling-Cornell, Adrian F.
O'Hanlon, Timothy J.
Quintero, Eric A.
Reis, Juliedson A. M.
van Remortel, Nick
contents Correlated noise sources, particularly magnetic noise, form a risk to future gravitational-wave searches aimed at detecting the gravitational-wave background. Potential noise contamination is investigated by making noise projections which typically rely on an accurate measurement of the coupling strength of the noise to the detector. To make these projections, we inject, for the first time, broadband, coherent magnetic noise between two gravitational-wave detectors, LIGO Hanford and LIGO Livingston, separated by several thousands of kilometers. We describe the noise injection as well as its impact on the analysis pipelines and investigate the accuracy of noise projection techniques used in the past decade. Finally, we present a proof-of-concept demonstration of noise subtraction using Wiener filtering, while also highlighting potential risks associated with this method. This unique data set with correlated noise caused by magnetic field fluctuations in two gravitational-wave detectors, as well as in an array of witness sensors, provides an excellent testing ground for additional future studies. Ultimately, this study demonstrates that Wiener filtering is effective and can be applied in the eventual detection of the gravitational-wave background by the LIGO-Virgo-KAGRA Collaboration.
format Preprint
id arxiv_https___arxiv_org_abs_2505_11903
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Coherent injection of magnetic noise and its impact on gravitational-wave searches
Janssens, Kamiel
Lawrence, Jessica
Effler, Anamaria
Schofield, Robert M. S.
Lalleman, Max
Betzwieser, Joseph
Christensen, Nelson
Coughlin, Michael W.
Driggers, Jennifer C.
Helmling-Cornell, Adrian F.
O'Hanlon, Timothy J.
Quintero, Eric A.
Reis, Juliedson A. M.
van Remortel, Nick
General Relativity and Quantum Cosmology
Instrumentation and Methods for Astrophysics
Correlated noise sources, particularly magnetic noise, form a risk to future gravitational-wave searches aimed at detecting the gravitational-wave background. Potential noise contamination is investigated by making noise projections which typically rely on an accurate measurement of the coupling strength of the noise to the detector. To make these projections, we inject, for the first time, broadband, coherent magnetic noise between two gravitational-wave detectors, LIGO Hanford and LIGO Livingston, separated by several thousands of kilometers. We describe the noise injection as well as its impact on the analysis pipelines and investigate the accuracy of noise projection techniques used in the past decade. Finally, we present a proof-of-concept demonstration of noise subtraction using Wiener filtering, while also highlighting potential risks associated with this method. This unique data set with correlated noise caused by magnetic field fluctuations in two gravitational-wave detectors, as well as in an array of witness sensors, provides an excellent testing ground for additional future studies. Ultimately, this study demonstrates that Wiener filtering is effective and can be applied in the eventual detection of the gravitational-wave background by the LIGO-Virgo-KAGRA Collaboration.
title Coherent injection of magnetic noise and its impact on gravitational-wave searches
topic General Relativity and Quantum Cosmology
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2505.11903