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

被引:0
|
作者
Ru-Sen Lu
Keiichi Asada
Thomas P. Krichbaum
Jongho Park
Fumie Tazaki
Hung-Yi Pu
Masanori Nakamura
Andrei Lobanov
Kazuhiro Hada
Kazunori Akiyama
Jae-Young Kim
Ivan Marti-Vidal
José L. Gómez
Tomohisa Kawashima
Feng Yuan
Eduardo Ros
Walter Alef
Silke Britzen
Michael Bremer
Avery E. Broderick
Akihiro Doi
Gabriele Giovannini
Marcello Giroletti
Paul T. P. Ho
Mareki Honma
David H. Hughes
Makoto Inoue
Wu Jiang
Motoki Kino
Shoko Koyama
Michael Lindqvist
Jun Liu
Alan P. Marscher
Satoki Matsushita
Hiroshi Nagai
Helge Rottmann
Tuomas Savolainen
Karl-Friedrich Schuster
Zhi-Qiang Shen
Pablo de Vicente
R. Craig Walker
Hai Yang
J. Anton Zensus
Juan Carlos Algaba
Alexander Allardi
Uwe Bach
Ryan Berthold
Dan Bintley
Do-Young Byun
Carolina Casadio
机构
[1] Chinese Academy of Sciences,Shanghai Astronomical Observatory
[2] Chinese Academy of Sciences,Key Laboratory of Radio Astronomy
[3] Max-Planck-Institut für Radioastronomie,Institute of Astronomy and Astrophysics
[4] Academia Sinica,Simulation Technology Development Department
[5] Korea Astronomy and Space Science Institute,Mizusawa VLBI Observatory
[6] Tokyo Electron Technology Solutions,Department of Physics
[7] National Astronomical Observatory of Japan,Center of Astronomy and Gravitation
[8] National Taiwan Normal University,Department of General Science and Education, National Institute of Technology
[9] National Taiwan Normal University,Department of Astronomical Science
[10] Hachinohe College,Black Hole Initiative
[11] The Graduate University for Advanced Studies,Department of Astronomy and Atmospheric Sciences
[12] SOKENDAI,Departament d’Astronomia i Astrofísica
[13] Harvard University,Observatori Astronòmic
[14] Massachusetts Institute of Technology Haystack Observatory,Institute for Cosmic Ray Research
[15] National Astronomical Observatory of Japan,Key Laboratory for Research in Galaxies and Cosmology
[16] Kyungpook National University,School of Astronomy and Space Sciences
[17] Universitat de València,Department of Physics and Astronomy
[18] Universitat de València,Waterloo Centre for Astrophysics
[19] Instituto de Astrofísica de Andalucía–CSIC,Institute of Space and Astronautical Science
[20] The University of Tokyo,Department of Space and Astronautical Science
[21] Chinese Academy of Sciences,Dipartimento di Fisica e Astronomia
[22] University of Chinese Academy of Sciences,Istituto di Radio Astronomia
[23] Institut de Radioastronomie Millimétrique,Department of Astronomy, Graduate School of Science
[24] University of Waterloo,Academic Support Center
[25] University of Waterloo,Graduate School of Science and Technology
[26] Perimeter Institute for Theoretical Physics,Department of Space, Earth and Environment
[27] Japan Aerospace Exploration Agency,Institute for Astrophysical Research
[28] The Graduate University for Advanced Studies,Department of Electronics and Nanoengineering
[29] SOKENDAI,Metsähovi Radio Observatory
[30] Università di Bologna,Department of Physics, Faculty of Science
[31] INAF,Institute of Astrophysics
[32] The University of Tokyo,Department of Physics
[33] Instituto Nacional de Astrofísica,System Development Center
[34] Óptica y Electrónica,Graduate School of Science
[35] Kogakuin University of Technology and Engineering,Leiden Observatory
[36] Niigata University,Electronic Systems Research Division
[37] Chalmers University of Technology,Department of Physics
[38] Onsala Space Observatory,Department of Physics
[39] Boston University,Department of Physics
[40] Aalto University,Astronomy Department
[41] Aalto University,Argelander
[42] Observatorio de Yebes,Institut für Astronomie
[43] IGN,undefined
[44] National Radio Astronomy Observatory,undefined
[45] Universiti Malaya,undefined
[46] University of Vermont,undefined
[47] East Asian Observatory,undefined
[48] University of Science and Technology,undefined
[49] Foundation for Research and Technology,undefined
[50] University of Crete,undefined
来源
Nature | 2023年 / 616卷
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摘要
The nearby radio galaxy M87 is a prime target for studying black hole accretion and jet formation1,2. 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 hole3. 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\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$${8.4}_{-1.1}^{+0.5}$$\end{document} 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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页码:686 / 690
页数:4
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