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      A ring-like accretion structure in M87 connecting its black hole and jet

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          Abstract

          The nearby radio galaxy M87 is a prime target for studying black hole accretion and jet formation^{1,2}. Event Horizon Telescope observations of M87 in 2017, at a wavelength of 1.3 mm, revealed a ring-like structure, which was interpreted as gravitationally lensed emission around a central black hole^3. Here we report images of M87 obtained in 2018, at a wavelength of 3.5 mm, showing that the compact radio core is spatially resolved. High-resolution imaging shows a ring-like structure of 8.4_{-1.1}^{+0.5} Schwarzschild radii in diameter, approximately 50% larger than that seen at 1.3 mm. The outer edge at 3.5 mm is also larger than that at 1.3 mm. This larger and thicker ring indicates a substantial contribution from the accretion flow with absorption effects in addition to the gravitationally lensed ring-like emission. The images show that the edge-brightened jet connects to the accretion flow of the black hole. Close to the black hole, the emission profile of the jet-launching region is wider than the expected profile of a black-hole-driven jet, suggesting the possible presence of a wind associated with the accretion flow.

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          Author and article information

          Journal
          25 April 2023
          Article
          10.1038/s41586-023-05843-w
          2304.13252
          2ed8c847-a197-42b8-b0de-2c2ba06ac001

          http://creativecommons.org/licenses/by/4.0/

          History
          Custom metadata
          50 pages, 18 figures, 3 tables, author's version of the paper published in Nature
          astro-ph.HE astro-ph.GA gr-qc

          General relativity & Quantum cosmology,Galaxy astrophysics,High energy astrophysical phenomena

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