Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai, People's Republic of China.
Key Laboratory of Radio Astronomy, Chinese Academy of Sciences, Nanjing, People's Republic of China.
Nature. 2023 Apr;616(7958):686-690. doi: 10.1038/s41586-023-05843-w. Epub 2023 Apr 26.
The nearby radio galaxy M87 is a prime target for studying black hole accretion and jet formation. 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. 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 [Formula: see text] 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.
附近的射电星系 M87 是研究黑洞吸积和喷流形成的主要目标。2017 年,在 1.3 毫米波长下,事件视界望远镜对 M87 的观测揭示了一个环形结构,被解释为一个中央黑洞周围的引力透镜发射。在这里,我们报告了 2018 年在 3.5 毫米波长下获得的 M87 图像,显示紧凑的射电核在空间上是可分辨的。高分辨率成像显示出一个直径约为[Formula: see text]施瓦西半径的环形结构,比在 1.3 毫米处看到的大 50%。在 3.5 毫米处的外边缘也比在 1.3 毫米处大。这个更大和更厚的环表明,除了引力透镜发射的环形结构之外,吸积流的贡献很大,具有吸收效应。这些图像表明,边缘变亮的喷流与黑洞的吸积流相连。在黑洞附近,喷流发射区域的发射轮廓比预期的由黑洞驱动的喷流轮廓宽,这表明可能存在与吸积流相关的风。