Detection of disk-jet co-precession in a tidal disruption event
arXiv:2511.12477 · doi:10.1126/sciadv.ady9068
Abstract
Theories and simulations predict that intense spacetime curvature near black holes bends the trajectories of light and matter, driving disk and jet precession under relativistic torques. However, direct observational evidence of disk-jet co-precession remains elusive. Here, we report the most compelling case to date: a tidal disruption event (TDE) exhibiting unprecedented 19.6-day quasi-periodic variations in both X-rays and radio, with X-ray amplitudes exceeding an order of magnitude. The nearly synchronized X-ray and radio variations suggest a shared mechanism regulating the emission regions. We demonstrate that a disk-jet Lense-Thirring precession model successfully reproduces these variations while requiring a low-spin black hole. This study uncovers previously uncharted short-term radio variability in TDEs, highlights the transformative potential of high-cadence radio monitoring, and offers profound insights into disk-jet physics.
accepted version. minor corrections
References in corpus (27)
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- HI4PI: A full-sky HI survey based on EBHIS and GASS
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- CASA, the Common Astronomy Software Applications for Radio Astronomy
- The eROSITA X-ray telescope on SRG
- Global General Relativistic MHD Simulation of a Tilted Black-Hole Accretion Disk
- PESSTO : survey description and products from the first data release by the Public ESO Spectroscopic Survey of Transient Objects
- A very luminous jet from the disruption of a star by a massive black hole
- Discovery of oscillations above 200 keV in a black hole X-ray binary with Insight-HXMT
- The Sloan Digital Sky Survey Reverberation Mapping Project: No Evidence for Evolution in the M-sigma Relation to z~1
- Precessing jet nozzle connecting to a spinning black hole in M87
- A new class of flares from accreting supermassive black holes
- Radial-velocity discovery of a second planet in the TOI-1338/BEBOP-1 circumbinary system
- Frame-dragging, disk warping, jet precessing, and dipped X-ray lightcurve of Sw J1644+57
- A Late-Time Radio Flare following a Possible Transition in Accretion State in the Tidal Disruption Event AT 2019azh
- Delayed Appearance and Evolution of Coronal Lines in the TDE AT2019qiz
- Generalized equipartition method from an arbitrary viewing angle
- Long-term radio and X-ray evolution of the tidal disruption event ASASSN-14li
- A shared accretion instability for black holes and neutron stars
- The nuclear transient AT 2017gge: a tidal disruption event in a dusty and gas-rich environment and the awakening of a dormant SMBH
- Lense-Thirring Precession after a Supermassive Black Hole Disrupts a Star
- A Case for a Binary Black Hole System Revealed via Quasi-Periodic Outflows
- Day-timescale variability in the radio light curve of the Tidal Disruption Event AT2022cmc: confirmation of a highly relativistic outflow
- Long-term follow-up observations of extreme coronal line emitting galaxies
- Sub-second periodic radio oscillations in a microquasar
- The radio detection and accretion properties of the peculiar nuclear transient AT 2019avd
- Searches for high-energy neutrino emission in the Galaxy with the combined IceCube-AMANDA detector