Gravitational Waves Detected by a Burst Search in LIGO/Virgo's Third Observing Run

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Main Authors: Mishra, Tanmaya, Bhaumik, Shubhagata, Gayathri, V., Szczepańczyk, Marek J., Bartos, Imre, Klimenko, Sergey
Format: Preprint
Published: 2024
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author Mishra, Tanmaya
Bhaumik, Shubhagata
Gayathri, V.
Szczepańczyk, Marek J.
Bartos, Imre
Klimenko, Sergey
author_facet Mishra, Tanmaya
Bhaumik, Shubhagata
Gayathri, V.
Szczepańczyk, Marek J.
Bartos, Imre
Klimenko, Sergey
contents Burst searches identify gravitational-wave (GW) signals in the detector data without use of a specific signal model, unlike the matched-filter searches that correlate data with simulated signal waveforms (templates). While matched filters are optimal for detection of known signals in the Gaussian noise, the burst searches can be more efficient in finding unusual events not covered by templates or those affected by non-Gaussian noise artifacts. Here, we report the detection of 3 gravitational wave signals that are uncovered by a burst search Coherent WaveBurst (cWB) optimized for the detection of binary black hole (BBH) mergers. They were found in the data from the LIGO/Virgo's third observing run (O3) with a combined significance of 3.6 $σ$. Each event appears to be a BBH merger not previously reported by the LIGO/Virgo's matched-filter searches. The most significant event has a reconstructed primary component in the upper mass gap ($m_1 = 70^{+36}_{-18}\,$M$_\odot$), and unusually low mass ratio ($m_2/m_1\sim0.3$), implying a dynamical or AGN origin. The 3 new events are consistent with the expected number of cWB-only detections in the O3 run ($4.8 \pm 2.1$), and belong to the stellar-mass binary population with the total masses in the $70-100$ M$_\odot$ range.
format Preprint
id arxiv_https___arxiv_org_abs_2410_15191
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Gravitational Waves Detected by a Burst Search in LIGO/Virgo's Third Observing Run
Mishra, Tanmaya
Bhaumik, Shubhagata
Gayathri, V.
Szczepańczyk, Marek J.
Bartos, Imre
Klimenko, Sergey
High Energy Astrophysical Phenomena
General Relativity and Quantum Cosmology
Burst searches identify gravitational-wave (GW) signals in the detector data without use of a specific signal model, unlike the matched-filter searches that correlate data with simulated signal waveforms (templates). While matched filters are optimal for detection of known signals in the Gaussian noise, the burst searches can be more efficient in finding unusual events not covered by templates or those affected by non-Gaussian noise artifacts. Here, we report the detection of 3 gravitational wave signals that are uncovered by a burst search Coherent WaveBurst (cWB) optimized for the detection of binary black hole (BBH) mergers. They were found in the data from the LIGO/Virgo's third observing run (O3) with a combined significance of 3.6 $σ$. Each event appears to be a BBH merger not previously reported by the LIGO/Virgo's matched-filter searches. The most significant event has a reconstructed primary component in the upper mass gap ($m_1 = 70^{+36}_{-18}\,$M$_\odot$), and unusually low mass ratio ($m_2/m_1\sim0.3$), implying a dynamical or AGN origin. The 3 new events are consistent with the expected number of cWB-only detections in the O3 run ($4.8 \pm 2.1$), and belong to the stellar-mass binary population with the total masses in the $70-100$ M$_\odot$ range.
title Gravitational Waves Detected by a Burst Search in LIGO/Virgo's Third Observing Run
topic High Energy Astrophysical Phenomena
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2410.15191