Jets with a Twist: Emergence of FR0 Jets in 3D GRMHD Simulation of Zero Angular Momentum Black Hole Accretion
Aretaios Lalakos, Alexander Tchekhovskoy, Omer Bromberg, Ore Gottlieb,, Jonatan Jacquemin-Ide, Matthew Liska, Haocheng Zhang

TL;DR
This study uses 3D GRMHD simulations to demonstrate how low-angular-momentum accretion onto spinning black holes can produce large-scale jets, providing insights into the origins of FR0 galaxies and jet survival mechanisms.
Contribution
It reveals the formation and evolution of jets from low-angular-momentum accretion in MAD, barely a disk, and rocking disk states, linking these to FR0 galaxy characteristics.
Findings
Jets can propagate beyond the Bondi radius in MAD state.
Disk states (BAD and RAD) disrupt jets and reduce accretion rates.
FR0 galaxies may originate from disrupted jets in low-angular-momentum accretion scenarios.
Abstract
Spinning supermassive black holes (BHs) in active galactic nuclei (AGN) magnetically launch relativistic collimated outflows, or jets. Without angular momentum supply, such jets are thought to perish within orders of magnitude in distance from the BH, well before reaching kpc-scales. We study the survival of such jets at the largest scale separation to date, via 3D general relativistic magnetohydrodynamic simulations of rapidly spinning BHs immersed into uniform zero-angular-momentum gas threaded by weak vertical magnetic field. We place the gas outside the BH sphere of influence, or the Bondi radius, chosen much larger than the BH gravitational radius, . The BH develops dynamically-important large-scale magnetic fields, forms a magnetically-arrested disk (MAD), and launches relativistic jets that propagate well outside and suppress BH…
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Taxonomy
TopicsAstrophysical Phenomena and Observations · Gamma-ray bursts and supernovae · Astrophysics and Cosmic Phenomena
