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First Sagittarius A* Event Horizon Telescope Results. III. Imaging of the Galactic Center Supermassive Black Hole

  • The Event Horizon Telescope Collaboration
  • Harvard University
  • University of Arizona
  • CSIC - Institute of Astrophysics of Andalusia
  • Max Planck Institute for Radio Astronomy
  • University of Malaya
  • Harvard-Smithsonian Center for Astrophysics
  • University of Texas at San Antonio
  • Academia Sinica - Institute of Astronomy and Astrophysics
  • University of Valencia
  • Yale University
  • Massachusetts Institute of Technology
  • University of Illinois at Urbana-Champaign
  • Fermi National Accelerator Laboratory
  • The University of Chicago
  • East Asian Observatory
  • James Clerk Maxwell Telescope (JCMT)
  • California Institute of Technology
  • University of Hawai'i at Mānoa
  • McGill University
  • Institut de radioastronomie millimétrique
  • Radboud University Nijmegen
  • Perimeter Institute for Theoretical Physics
  • University of Waterloo
  • University of Massachusetts
  • Korea Astronomy and Space Science Institute
  • University of Science and Technology UST
  • Chalmers University of Technology
  • Princeton University
  • NASA Hubble Fellowship Program
  • Cornell University
  • CAS - Shanghai Astronomical Observatory
  • Chinese Academy of Sciences
  • Fairfield University
  • Goethe University Frankfurt
  • Shanghai Jiao Tong University
  • National Institutes of Natural Sciences - National Astronomical Observatory of Japan
  • The Graduate University for Advanced Studies
  • Columbia University
  • Simons Foundation
  • University of Naples Federico II
  • National Institute for Nuclear Physics

Research output: Contribution to journalArticlepeer-review

376 Scopus citations

Abstract

We present the first event-horizon-scale images and spatiotemporal analysis of Sgr A* taken with the Event Horizon Telescope in 2017 April at a wavelength of 1.3 mm. Imaging of Sgr A* has been conducted through surveys over a wide range of imaging assumptions using the classical CLEAN algorithm, regularized maximum likelihood methods, and a Bayesian posterior sampling method. Different prescriptions have been used to account for scattering effects by the interstellar medium toward the Galactic center. Mitigation of the rapid intraday variability that characterizes Sgr A* has been carried out through the addition of a “variability noise budget” in the observed visibilities, facilitating the reconstruction of static full-track images. Our static reconstructions of Sgr A* can be clustered into four representative morphologies that correspond to ring images with three different azimuthal brightness distributions and a small cluster that contains diverse nonring morphologies. Based on our extensive analysis of the effects of sparse (u, v)-coverage, source variability, and interstellar scattering, as well as studies of simulated visibility data, we conclude that the Event Horizon Telescope Sgr A* data show compelling evidence for an image that is dominated by a bright ring of emission with a ring diameter of ∼50 μas, consistent with the expected “shadow” of a 4 × 106 M black hole in the Galactic center located at a distance of 8 kpc.

Original languageEnglish
Article numberL14
JournalAstrophysical Journal Letters
Volume930
Issue number2
DOIs
StatePublished - 1 May 2022

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