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宇宙网尺度上的黑洞喷流。

Black hole jets on the scale of the cosmic web.

机构信息

Leiden Observatory, Leiden University, Leiden, The Netherlands.

Cahill Center for Astronomy and Astrophysics, California Institute of Technology, Pasadena, CA, USA.

出版信息

Nature. 2024 Sep;633(8030):537-541. doi: 10.1038/s41586-024-07879-y. Epub 2024 Sep 18.

Abstract

When sustained for megayears (refs. ), high-power jets from supermassive black holes (SMBHs) become the largest galaxy-made structures in the Universe. By pumping electrons, atomic nuclei and magnetic fields into the intergalactic medium (IGM), these energetic flows affect the distribution of matter and magnetism in the cosmic web and could have a sweeping cosmological influence if they reached far at early epochs. For the past 50 years, the known size range of black hole jet pairs ended at 4.6-5.0 Mpc (refs. ), or 20-30% of a cosmic void radius in the Local Universe. An observational lack of longer jets, as well as theoretical results, thus suggested a growth limit at about 5 Mpc (ref. ). Here we report observations of a radio structure spanning about 7 Mpc, or roughly 66% of a coeval cosmic void radius, apparently generated by a black hole between and 6.3 Gyr after the Big Bang. The structure consists of a northern lobe, a northern jet, a core, a southern jet with an inner hotspot and a southern outer hotspot with a backflow. This system demonstrates that jets can avoid destruction by magnetohydrodynamical instabilities over cosmological distances, even at epochs when the Universe was 7 to times denser than it is today. How jets can retain such long-lived coherence is unknown at present.

摘要

当持续数百万年(参考文献)时,来自超大质量黑洞(SMBH)的高功率喷流成为宇宙中最大的星系结构。通过将电子、原子核和磁场泵入星系际介质(IGM),这些能量流会影响宇宙网中物质和磁场的分布,如果它们在早期传播到很远的地方,可能会对宇宙产生广泛的影响。在过去的 50 年中,已知的黑洞喷流对的大小范围在 4.6-5.0 Mpc(参考文献)之间,或者是局部宇宙中宇宙空洞半径的 20-30%。由于缺乏更长的喷流的观测结果以及理论结果,因此表明在大约 5 Mpc 处存在生长限制(参考文献)。在这里,我们报告了一个大约 7 Mpc 跨度的射电结构的观测结果,大约是大爆炸后 2 到 6.3 亿年间黑洞同期宇宙空洞半径的 66%。该结构由一个北裂片、一个北喷流、一个核心、一个带有内部热点的南喷流和一个带有回流的南外部热点组成。该系统表明,即使在宇宙密度比今天高 7 到 10 倍的时期,喷流也可以避免在宇宙学距离上被磁流体动力学不稳定性破坏。目前尚不清楚喷流如何保持如此长寿命的相干性。

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