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GWTC-2: Compact Binary Coalescences Observed by LIGO and Virgo during the First Half of the Third Observing Run

  • (LIGO Scientific Collaboration and Virgo Collaboration)
  • California Institute of Technology
  • Louisiana State University
  • Inter-University Centre for Astronomy and Astrophysics India
  • University of Salerno
  • National Institute for Nuclear Physics
  • Monash University
  • Christopher Newport University
  • National Science Foundation
  • Australian National University
  • Max Planck Institute for Gravitational Physics (Albert Einstein Institute)
  • Leibniz University Hannover
  • University of Cambridge
  • Friedrich Schiller University Jena
  • University of Birmingham
  • Northwestern University
  • Instituto Nacional de Pesquisas Espaciais
  • Gran Sasso Science Institute
  • University of Pisa
  • Tata Institute of Fundamental Research
  • University College Dublin
  • University of Illinois at Urbana-Champaign
  • Universite Claude Bernard Lyon 1
  • University of Wisconsin-Milwaukee
  • University of Strathclyde
  • University of Udine
  • Embry-Riddle Aeronautical University
  • Université Paris Cité
  • California State University Fullerton
  • Université Paris-Saclay
  • European Gravitational Observatory
  • University of Florida
  • SPIC Science Foundation
  • Columbia University
  • Université Grenoble Alpes
  • Montclair State University

Research output: Contribution to journalArticlepeer-review

2131 Scopus citations

Abstract

We report on gravitational-wave discoveries from compact binary coalescences detected by Advanced LIGO and Advanced Virgo in the first half of the third observing run (O3a) between 1 April 2019 15:00 UTC and 1 October 2019 15:00 UTC. By imposing a false-alarm-rate threshold of two per year in each of the four search pipelines that constitute our search, we present 39 candidate gravitational-wave events. At this threshold, we expect a contamination fraction of less than 10%. Of these, 26 candidate events were reported previously in near-real time through gamma-ray coordinates network notices and circulars; 13 are reported here for the first time. The catalog contains events whose sources are black hole binary mergers up to a redshift of approximately 0.8, as well as events whose components cannot be unambiguously identified as black holes or neutron stars. For the latter group, we are unable to determine the nature based on estimates of the component masses and spins from gravitational-wave data alone. The range of candidate event masses which are unambiguously identified as binary black holes (both objects ≥3 Mo˙) is increased compared to GWTC-1, with total masses from approximately 14 Mo˙ for GW190924_021846 to approximately 150 Mo˙ for GW190521. For the first time, this catalog includes binary systems with significantly asymmetric mass ratios, which had not been observed in data taken before April 2019. We also find that 11 of the 39 events detected since April 2019 have positive effective inspiral spins under our default prior (at 90% credibility), while none exhibit negative effective inspiral spin. Given the increased sensitivity of Advanced LIGO and Advanced Virgo, the detection of 39 candidate events in approximately 26 weeks of data (approximately 1.5 per week) is consistent with GWTC-1.

Original languageEnglish
Article number021053
JournalPhysical Review X
Volume11
Issue number2
DOIs
StatePublished - Jun 2021

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