Probing the structure of the outflow in the tidal disruption flare Sw J1644+57 with long-term radio emission
arXiv:1210.6717 · doi:10.1088/0004-637X/761/2/111
Abstract
The recently discovered high-energy transient Sw J1644+57 is thought to arise from the tidal disruption of a passing star by a dormant massive black hole. The long-term, bright radio emission of Sw J1644+57 is believed to result from the synchrotron emission of the blast wave produced by an outflow expanding into the surrounding medium. Using the detailed multi-epoch radio spectral data, we are able to determine the total number of radiating electrons in the outflow at different times, and further the evolution of the cross section of the outflow with time. We find that the outflow gradually transits from a conical jet to a cylindrical one at later times. The transition may be due to collimation of the outflow by the pressure of the shocked jet cocoon that forms while the outflow is propagating in the ambient medium. Since cylindrical jets usually exist in AGNs and extragalactic jets, this may provide independent evidence that Sw J1644+57 signals the onset of an AGN.
7 pages, 4 figures, accepted by ApJ
Cited by in corpus (10)
- Swift J1644+57 gone MAD: the case for dynamically-important magnetic flux threading the black hole in a jetted tidal disruption event
- Jets from Tidal Disruption Events
- Discovery of a new extragalactic circular radio source with ASKAP: ORC J0102-2450
- Quasi-Periodic Variations in X-ray Emission and Long-Term Radio Observations: Evidence for a Two-Component Jet in Sw J1644+57
- On the origin of the radio emission of Sw 1644+57
- A two-component jet model for the tidal disruption event Swift J164449.3+573451
- Discovery of a circularly symmetric extended diffuse radio emission around an elliptical galaxy with the VLA FIRST survey
- A horseshoe-shaped ring of diffuse emission detected at 1.4 GHz
- Search for high energy gamma-ray emission from tidal disruption events with the Fermi Large Area Telescope
- Circular Mystery: Exploring Diffuse Emission Surrounding a Radio Galaxy with uGMRT and VLA Multiwavelength Observations