Constraining the Rate of Relativistic Jets from Tidal Disruptions Using Radio Surveys
arXiv:1103.4328 · doi:10.1088/2041-8205/732/1/L12
Abstract
Tidal disruption of stars by massive black holes produce transient accretion flows that flare at optical, UV, and X-ray wavelengths. At late times, these accretion flows may launch relativistic jets that can be detected through the interaction of the jet with the dense interstellar medium of the galaxy. We present an upper limit for the flux density of a radio counterpart to a tidal disruption event detected by GALEX that is a factor of 6 below theoretical predictions. We also examine existing radio surveys for transients with a time scale of 1 year and use these to set a upper limit on the rate of tidal disruption events producing relativistic jets of ~14 x 10^-7 Mpc^-3 y^-1. This rate is an order of magnitude lower than the highest values from theoretical models and is consistent with detection rates from optical and X-ray surveys.
Accepted for publication in ApJL
References in corpus (5)
- SubmilliJansky Transients in Archival Radio Observations
- AEGIS20: a radio survey of the Extended Groth Strip
- A 22-year Southern Sky Survey for Transient and Variable Radio Sources using the Molonglo Observatory Synthesis Telescope
- A Search for Radio Transients in VLA Archival Images of the 3C 286 Field
- The Allen Telescope Array Pi GHz Sky Survey I. Survey Description and Static Catalog Results for the Bootes Field
Cited by in corpus (19)
- The Birth of a Relativistic Outflow in the Unusual γ-ray Transient Swift J164449.3+573451
- Radio Properties of Tidal Disruption Events
- Swift J1112.2-8238: A Candidate Relativistic Tidal Disruption Flare
- Afterglow Model for the Radio Emission from the Jetted Tidal Disruption Candidate Swift J1644+57
- PTF10iya: A short-lived, luminous flare from the nuclear region of a star-forming galaxy
- A Revised View of the Transient Radio Sky
- Constraints on off-axis jets from stellar tidal disruption flares
- The radio afterglow of Swift J1644+57 reveals a powerful jet with fast core and slow sheath
- Late Time Radio Emission from X-ray Selected Tidal Disruption Events
- Caltech-NRAO Stripe 82 Survey (CNSS). III: The First Radio-discovered Tidal Disruption Event, CNSS J0019+00
- The influence of circumnuclear environment on the radio emission from TDE jets
- Tidal disruption rate of stars by supermassive black holes obtained by direct N-body simulations
- An Ultrasoft X-ray Flare from 3XMM J152130.7+074916: a Tidal Disruption Event Candidate
- Radio constraint on outflows from tidal disruption events
- A model for the multiwavelength radiation from tidal disruption event Swift J1644+57
- The Allen Telescope Array Pi GHz Sky Survey II. Daily and Monthly Monitoring for Transients and Variability in the Bootes Field
- The Allen Telescope Array Pi GHz Sky Survey - III: The ELAIS-N1, Coma, and Lockman Hole Fields
- Radio-X-ray Synergy to discover and Study Jetted Tidal Disruption Events
- Multi-wavelength Observations of the Giant X-ray Flare Galaxy NGC 5905: signatures of tidal disruption