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Directional limits on persistent gravitational waves using data from Advanced LIGO's first two observing runs

  • (The LIGO Scientific Collaboration and the 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
  • National Science Foundation
  • Max Planck Institute for Gravitational Physics (Albert Einstein Institute)
  • Leibniz University Hannover
  • University of Cambridge
  • University of Birmingham
  • Massachusetts Institute of Technology
  • Instituto Nacional de Pesquisas Espaciais
  • Gran Sasso Science Institute
  • Tata Institute of Fundamental Research
  • University of Illinois at Urbana-Champaign
  • University of Pisa
  • University of Valencia
  • Australian National University
  • Institut de Physique des 2 Infinis de Lyon
  • University of Wisconsin-Milwaukee
  • University of Strathclyde
  • IN2P3/CNRS
  • California State University Fullerton
  • Université Paris Cité
  • European Gravitational Observatory
  • University of Rome Tor Vergata
  • Université Grenoble Alpes
  • Embry-Riddle Aeronautical University
  • Montclair State University
  • National Institute for Subatomic Physics
  • Korea Institute of Science and Technology Information
  • West Virginia University

Research output: Contribution to journalArticlepeer-review

70 Scopus citations

Abstract

We perform an unmodeled search for persistent, directional gravitational wave (GW) sources using data from the first and second observing runs of Advanced LIGO. We do not find evidence for any GW signals. We place limits on the broadband GW flux emitted at 25 Hz from point sources with a power law spectrum at Fα,Θ<(0.05-25)×10-8 erg cm-2 s-1 Hz-1 and the (normalized) energy density spectrum in GWs at 25 Hz from extended sources at ωα(Θ)<(0.19-2.89)×10-8 sr-1 where α is the spectral index of the energy density spectrum. These represent improvements of 2.5-3× over previous limits. We also consider point sources emitting GWs at a single frequency, targeting the directions of Sco X-1, SN 1987A, and the Galactic center. The best upper limits on the strain amplitude of a potential source in these three directions range from h0<(3.6-4.7)×10-25, 1.5× better than previous limits set with the same analysis method. We also report on a marginally significant outlier at 36.06 Hz. This outlier is not consistent with a persistent gravitational-wave source as its significance diminishes when combining all of the available data.

Original languageEnglish
Article number062001
JournalPhysical Review D
Volume100
Issue number6
DOIs
StatePublished - Sep 4 2019

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