Mining the Alerts: A Preliminary Catalog of Compact Binaries from the Fourth Observing Run

Fuente: arXiv
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Main Authors: Akyüz, Aleyna, Correia, Alex, Garofalo, Jada, Kacanja, Keisi, Y, Vikas Jadhav, Roy, Labani, Soni, Kanchan, Tan, Hung, Capano, Collin D., Nitz, Alexander H.
Format: Preprint
Published: 2025
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author Akyüz, Aleyna
Correia, Alex
Garofalo, Jada
Kacanja, Keisi
Y, Vikas Jadhav
Roy, Labani
Soni, Kanchan
Tan, Hung
Capano, Collin D.
Nitz, Alexander H.
author_facet Akyüz, Aleyna
Correia, Alex
Garofalo, Jada
Kacanja, Keisi
Y, Vikas Jadhav
Roy, Labani
Soni, Kanchan
Tan, Hung
Capano, Collin D.
Nitz, Alexander H.
contents We present a preliminary catalog of compact binary merger candidates from the ongoing fourth observing run (O4) of Advanced LIGO, Virgo, and KAGRA, based on an analysis of public alerts distributed through GraceDB as of May 2025. We developed and applied methods to estimate the source-frame chirp mass for each candidate by utilizing information from public data products, including source classification probabilities, sky localizations, and observatory status. Combining our O4 analysis with previous catalogs, we provide updated estimates for the local merger rate density. For sources with chirp mass characteristic of binary neutron stars ($[1, 1.5]\,M_\odot$), we find a rate of $56^{+99}_{-40}$ $\textrm{Gpc}^{-3}\,\textrm{yr}^{-1}$. For systems in the expected neutron star--black hole chirp mass range ($[1.5, 3.5]\,M_\odot$), the rate is $36^{+32}_{-20}$ $\textrm{Gpc}^{-3}\,\textrm{yr}^{-1}$, and for heavier binary black holes ($[3.5, 100]\,M_\odot$), we estimate a rate of $19^{+4}_{-2}$ $\textrm{Gpc}^{-3}\,\textrm{yr}^{-1}$. This work provides an early glimpse into the compact binary population being observed in O4; we identify a number of high-value candidates up to signal-to-noise $\sim 80$, which we expect to enable precision measurements in the future.
format Preprint
id arxiv_https___arxiv_org_abs_2507_08778
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Mining the Alerts: A Preliminary Catalog of Compact Binaries from the Fourth Observing Run
Akyüz, Aleyna
Correia, Alex
Garofalo, Jada
Kacanja, Keisi
Y, Vikas Jadhav
Roy, Labani
Soni, Kanchan
Tan, Hung
Capano, Collin D.
Nitz, Alexander H.
High Energy Astrophysical Phenomena
General Relativity and Quantum Cosmology
We present a preliminary catalog of compact binary merger candidates from the ongoing fourth observing run (O4) of Advanced LIGO, Virgo, and KAGRA, based on an analysis of public alerts distributed through GraceDB as of May 2025. We developed and applied methods to estimate the source-frame chirp mass for each candidate by utilizing information from public data products, including source classification probabilities, sky localizations, and observatory status. Combining our O4 analysis with previous catalogs, we provide updated estimates for the local merger rate density. For sources with chirp mass characteristic of binary neutron stars ($[1, 1.5]\,M_\odot$), we find a rate of $56^{+99}_{-40}$ $\textrm{Gpc}^{-3}\,\textrm{yr}^{-1}$. For systems in the expected neutron star--black hole chirp mass range ($[1.5, 3.5]\,M_\odot$), the rate is $36^{+32}_{-20}$ $\textrm{Gpc}^{-3}\,\textrm{yr}^{-1}$, and for heavier binary black holes ($[3.5, 100]\,M_\odot$), we estimate a rate of $19^{+4}_{-2}$ $\textrm{Gpc}^{-3}\,\textrm{yr}^{-1}$. This work provides an early glimpse into the compact binary population being observed in O4; we identify a number of high-value candidates up to signal-to-noise $\sim 80$, which we expect to enable precision measurements in the future.
title Mining the Alerts: A Preliminary Catalog of Compact Binaries from the Fourth Observing Run
topic High Energy Astrophysical Phenomena
General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2507.08778