Black hole jets on the scale of the Cosmic Web
arXiv:2411.08630 · doi:10.1038/s41586-024-07879-y
Abstract
Jets launched by supermassive black holes transport relativistic leptons, magnetic fields, and atomic nuclei from the centres of galaxies to their outskirts and beyond. These outflows embody the most energetic pathway by which galaxies respond to their Cosmic Web environment. Studying black hole feedback is an astrophysical frontier, providing insights on star formation, galaxy cluster stability, and the origin of cosmic rays, magnetism, and heavy elements throughout the Universe. This feedback's cosmological importance is ultimately bounded by the reach of black hole jets, and could be sweeping if jets travel far at early epochs. Here we present the joint LOFAR-uGMRT-Keck discovery of a black hole jet pair extending over megaparsecs -- the largest galaxy-made structure ever found. The outflow, seen gigayears into the past, spans two-thirds of a typical cosmic void radius, thus penetrating voids at probability. This system demonstrates that jets can avoid destruction by magnetohydrodynamical instabilities over cosmological distances, even at epochs when the Universe was 15 to 7 times denser than it is today. Whereas previous record-breaking outflows were powered by radiatively inefficient active galactic nuclei, this outflow is powered by a radiatively efficient active galactic nucleus, a type common at early epochs. If, as implied, a population of early void-penetrating outflows existed, then black hole jets could have overwritten the fields from primordial magnetogenesis. This outflow shows that energy transport from supermassive black holes operates on scales of the Cosmic Web and raises the possibility that cosmic rays and magnetism in the intergalactic medium have a non-local, cross-void origin.
30 pages, 10 figures, 1 table, published in Nature. This arXiv version pre-dates the peer review process
References in corpus (23)
- The Co-Evolution of Galaxies and Supermassive Black Holes: Insights from Surveys of the Contemporary Universe
- WSClean: an implementation of a fast, generic wide-field imager for radio astronomy
- The LOFAR Two-metre Sky Survey - I. Survey Description and Preliminary Data Release
- The LOFAR Two-metre Sky Survey -- V. Second data release
- The Last of FIRST: The Final Catalog and Source Identifications
- Scaling Properties of a Complete X-ray Selected Galaxy Group Sample
- A Quick Look at the GHz Radio Sky I. Source Statistics from the Very Large Array Sky Survey
- Simulations of extragalactic magnetic fields and of their observables
- All-purpose, all-sky photometric redshifts for the Legacy Imaging Surveys Data Release 8
- Sub-arcsecond imaging with the International LOFAR Telescope I. Foundational calibration strategy and pipeline
- Feedback reshapes the baryon distribution within haloes, in halo outskirts, and beyond: the closure radius from dwarfs to massive clusters
- LBCS: the LOFAR Long-Baseline Calibrator Survey
- An EAGLE view of the missing baryons
- The LOFAR Two-Metre Sky Survey (LoTSS): VI. Optical identifications for the second data release
- LOFAR-Boötes: Properties of high- and low-excitation radio galaxies at
- Measuring the giant radio galaxy length distribution with the LoTSS
- The discovery of a radio galaxy of at least 5 Mpc
- Sub-arcsecond imaging with the International LOFAR Telescope: II. Completion of the LOFAR Long-Baseline Calibrator Survey
- Constraining the giant radio galaxy population with machine learning and Bayesian inference
- Decoding the giant extragalactic radio sources
- Radio galaxies in galaxy groups: kinematics, scaling relations and AGN feedback
- A catalog of quasar properties from the Baryon Oscillation Spectroscopic Survey
- Luminous giants populate the dense Cosmic Web: The radio luminosity-environmental density relation for radio galaxies in action
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- Constraining the giant radio galaxy population with machine learning and Bayesian inference
- Ubiquitous radio emission in quasars: predominant AGN origin and a connection to jets, dust and winds
- SAGAN-VI: When Jets Meet Filaments -- Environmental Imprints on the Growth of Giant Radio Galaxies
- Formation of giant radio sources in galaxy clusters
- Can galactic magnetic fields diffuse into the voids?
- Mapping luminous and dark matter in the Universe
- AGN hosting jets. I: A semi-analytical model for the evolution of radio galaxies
- Reduced Gas Accretion onto Galaxies due to Effects of External Giant Radio Lobes
- COMAP Pathfinder -- Season 2 results IV. A stack on eBOSS/DESI quasars
- LOFAR 58 MHz Legacy Survey of the 3CRR Catalog
- On the consistency of jet feedback modelling across different astrophysics hydrodynamical codes
- J-HERTz: J-PLUS Heritage Exploration of Radio Targets at z 5
- Exact Regions of Superradiant Instability of Kerr-Newman Black Holes and Massive Scalar Fields
- Comparison of Cross-Correlation Methods for Line Intensity Mapping