Coherent WaveBurst, a pipeline for unmodeled gravitational-wave data analysis

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Main Authors: Drago, M., Gayathri, V., Klimenko, S., Lazzaro, C., Milotti, E., Mitselmakher, G., Necula, V., O'Brian, B., Prodi, G. A., Salemi, F., Szczepanczyk, M., Tiwari, S., Tiwari, V., Vedovato, G., Yakushin, I.
Format: Preprint
Published: 2020
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author Drago, M.
Gayathri, V.
Klimenko, S.
Lazzaro, C.
Milotti, E.
Mitselmakher, G.
Necula, V.
O'Brian, B.
Prodi, G. A.
Salemi, F.
Szczepanczyk, M.
Tiwari, S.
Tiwari, V.
Vedovato, G.
Yakushin, I.
author_facet Drago, M.
Gayathri, V.
Klimenko, S.
Lazzaro, C.
Milotti, E.
Mitselmakher, G.
Necula, V.
O'Brian, B.
Prodi, G. A.
Salemi, F.
Szczepanczyk, M.
Tiwari, S.
Tiwari, V.
Vedovato, G.
Yakushin, I.
contents coherent WaveBurst (cWB) is a highly configurable pipeline designed to detect a broad range of gravitational-wave (GW) transients in the data of the worldwide network of GW detectors. The algorithmic core of cWB is a time-frequency analysis with the Wilson-Daubechies-Meyer wavelets aimed at the identification of GW events without prior knowledge of the signal waveform. cWB has been in active development since 2003 and it has been used to analyze all scientific data collected by the LIGO-Virgo detectors ever since. On September 14, 2015, the cWB low-latency search detected the first gravitational-wave event, GW150914, a merger of two black holes. In 2019, a public open-source version of cWB has been released with GPLv3 license.
format Preprint
id arxiv_https___arxiv_org_abs_2006_12604
institution arXiv
publishDate 2020
record_format arxiv
spellingShingle Coherent WaveBurst, a pipeline for unmodeled gravitational-wave data analysis
Drago, M.
Gayathri, V.
Klimenko, S.
Lazzaro, C.
Milotti, E.
Mitselmakher, G.
Necula, V.
O'Brian, B.
Prodi, G. A.
Salemi, F.
Szczepanczyk, M.
Tiwari, S.
Tiwari, V.
Vedovato, G.
Yakushin, I.
General Relativity and Quantum Cosmology
coherent WaveBurst (cWB) is a highly configurable pipeline designed to detect a broad range of gravitational-wave (GW) transients in the data of the worldwide network of GW detectors. The algorithmic core of cWB is a time-frequency analysis with the Wilson-Daubechies-Meyer wavelets aimed at the identification of GW events without prior knowledge of the signal waveform. cWB has been in active development since 2003 and it has been used to analyze all scientific data collected by the LIGO-Virgo detectors ever since. On September 14, 2015, the cWB low-latency search detected the first gravitational-wave event, GW150914, a merger of two black holes. In 2019, a public open-source version of cWB has been released with GPLv3 license.
title Coherent WaveBurst, a pipeline for unmodeled gravitational-wave data analysis
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2006.12604