External inverse-Compton emission from jetted tidal disruption events
arXiv:1602.01468 · doi:10.1093/mnras/stv2324
Abstract
The recent discoveries of Swift J1644+57 and J2058+05 show that tidal disruption events (TDEs) can launch relativistic jets. Super-Eddington accretion produces a strong radiation field of order Eddington luminosity. In a jetted TDE, electrons in the jet will inverse-Compton scatter the external radiation field from the accretion disk and wind. Motivated by observations of thermal optical-UV spectra in Swift J2058+05 and several other TDEs, we assume the spectrum of the external radiation field intercepted by the relativistic jet to be blackbody. Hot electrons in the jet scatter this thermal radiation and produce luminosities 10^45-10^48 erg/s in the X/gamma-ray band. This model of thermal plus inverse-Compton radiation is applied to Swift J2058+05. First, we show that the blackbody component in the optical-UV spectrum most likely has its origin in the super-Eddington wind from the disk. Then, using the observed blackbody component as the external radiation field, we show that the X-ray luminosity and spectrum are consistent with the inverse-Compton emission, under the following conditions: (1) the jet Lorentz factor is ~5-10; (2) electrons in the jet have a powerlaw distribution with minimum Lorentz factor ~1 and powerlaw index p = 2.4; (3) the wind is mildly relativistic (Lorentz factor >~1.5) and has isotropic-equivalent mass-loss rate ~5 M_sun/yr. We describe the implications for jet composition and the radius where jet energy is converted to radiation.
13 pages, 6 figures, 1 table; MNRAS accepted
References in corpus (12)
- Super-critically accreting stellar-mass black holes as ultraluminous X-ray sources
- An ultraviolet-optical flare from the tidal disruption of a helium-rich stellar core
- A Continuum of H- to He-Rich Tidal Disruption Candidates With a Preference for E+A Galaxies
- A Global Three Dimensional Radiation Magneto-hydrodynamic Simulation of Super-Eddington Accretion Disks
- eROSITA Science Book: Mapping the Structure of the Energetic Universe
- Measurement of the rate of stellar tidal disruption flares
- A Multiwavelength Study of the Relativistic Tidal Disruption Candidate Sw J2058+05 at Late Times
- The radio afterglow of Swift J1644+57 reveals a powerful jet with fast core and slow sheath
- Quasi-Periodic Variations in X-ray Emission and Long-Term Radio Observations: Evidence for a Two-Component Jet in Sw J1644+57
- The Nature of ULX Source M101 X-1: Optically Thick Outflow from A Stellar Mass Black Hole
- Radiation from a Relativistic Poynting Jet: some general considerations
- Radio-X-ray Synergy to discover and Study Jetted Tidal Disruption Events
Cited by in corpus (4)
- The Birth of a Relativistic Jet Following the Disruption of a Star by a Cosmological Black Hole
- Swift J1644+57: an Ideal Test Bed of Radiation Mechanisms in a Relativistic Super-Eddington Jet
- Radiative interaction between the relativistic jet and optically thick envelope in tidal disruption events
- Simulated optical light curves of super-Eddington tidal disruption events with ZEBRA flows