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Jet Tilt Instability from Stream-Disk Interactions in MAD Disks

High Energy Astrophysical Phenomena 2025-05-21 v2 Astrophysics of Galaxies

Abstract

Magnetically arrested accretion disks (MADs) around a rapidly rotating black hole (BH) have been proposed as a model for jetted tidal disruption events (TDEs). However, the stream and disk interact strongly at times, and this will lead to different dynamics than expected in the standard MAD model. Here we employ global GRMHD simulations of a MAD disk interacting with an injected stream with a penetrating pericenter Rp10rgR_p\sim 10 r_g and a range of density contrasts fρρd/ρsf_\rho\equiv \rho_d/\rho_s, or how dense the disk is relative to the stream. We demonstrate for the first time that a MAD or semi-MAD state can be sustained and jets powered by the BH spin can be produced even when the stream is much denser than the disk, i.e. in the first month(s) of a jetted TDE. We also demonstrate that the strength of the self-intersection shock decreases as fρf_\rho, and time, increases. The jet or funnel can become significantly tilted (by 103010-30^\circ) due to the self-intersection outflow when fρ0.1f_\rho \leq 0.1. In models with a powerful jet and fρ0.01f_\rho\leq 0.01, the tilted jet interacts with and ultimately tilts the disk by as much as 23 degrees from the incoming stream and this tilted state is stable for the duration of the simulation. As fρf_\rho increases, the tilt of the jet and disk is expected to realign with the BH spin once fρ0.1f_\rho \geq 0.1. The jet tilt could rapidly realign due to outer disk collapse or the self-intersection radius increasing. Our results provide an alternative explanation for the observed X-ray jet shut-off in days-weeks in jetted TDEs.

Keywords

Cite

@article{arxiv.2310.20592,
  title  = {Jet Tilt Instability from Stream-Disk Interactions in MAD Disks},
  author = {Brandon Curd and Richard Anantua and Hayley West and Joaquin Duran},
  journal= {arXiv preprint arXiv:2310.20592},
  year   = {2025}
}

Comments

21 pages, 22 figures, videos available at https://www.youtube.com/playlist?list=PL6Na55ZD3RmoJl7Rjhn6gCeAE0HWYCI0b

R2 v1 2026-06-28T13:07:36.422Z