Discovery of Radio Outbursts in the Active Nucleus of M81
arXiv:astro-ph/9905077 · doi:10.1086/300950
Abstract
The low-luminosity active galactic nucleus of M81 has been monitored at centimeter wavelengths since early 1993 as a by-product of radio programs to study the radio emission from Supernova 1993J. The extensive data sets reveal that the nucleus experienced several radio outbursts during the monitoring period. At 2 and 3.6 cm, the main outburst occurred roughly in the beginning of 1993 September and lasted for approximately three months; at longer wavelengths, the maximum flux density decreases, and the onset of the burst is delayed. These characteristics qualitatively resemble the standard model for adiabatically expanding radio sources, although certain discrepancies between the observations and the theoretical predictions suggest that the model is too simplistic. In addition to the large-amplitude, prolonged variations, we also detected milder changes in the flux density at 3.6 cm and possibly at 6 cm on short (less than 1 day) timescales. We discuss a possible association between the radio activity and an optical flare observed during the period that the nucleus was monitored at radio wavelengths.
To appear in The Astronomical Journal. Latex, 18 pages including embedded figures and tables
Cited by in corpus (29)
- Nuclear Activity in Nearby Galaxies
- Radio Continuum Survey of an Optically-Selected Sample of Nearby Seyfert Galaxies
- Nuclear Luminosities and Radio Loudness of Seyfert Nuclei
- Radio Sources in Low-Luminosity Active Galactic Nuclei. III. "AGNs" in a Distance-Limited Sample of "LLAGNs"
- Possible Evidence for Truncated Thin Disks in the Low-Luminosity Active Galactic Nuclei M81 and NGC 4579
- Radio Variability of Radio Quiet and Radio Loud Quasars
- Evidence for Jet Domination of the Nuclear Radio Emission in Low-luminosity Active Galactic Nuclei
- Results from an extensive simultaneous broadband campaign on the underluminous active nucleus M81*: further evidence for mass-scaling accretion in black holes
- Cosmographic Constraints and Cosmic Fluids
- A Stationary Core with a One-sided Jet in the Center of M81
- The Nuclear Near-Infrared Spectral Properties of Nearby Galaxies
- Detection of jet precession in the active nucleus of M81
- The Nature of Composite LINER/HII Galaxies, As Revealed from High-Resolution VLA Observations
- The Size of the Radio-Emitting Region in Low-luminosity Active Galactic Nuclei
- A high-frequency radio survey of low-luminosity active galactic nuclei
- Millimeter Radio Continuum Emissions as the Activity of Super Massive Black Holes in Nearby Early-Type Galaxies and Low-Luminosity Active Galactic Nuclei
- ROSAT X-Ray Observations of the Spiral Galaxy M81
- As above, so below: exploiting mass scaling in black hole accretion to break degeneracies in spectral interpretation
- Discrete Knot Ejection from the Jet in a Nearby Low Luminosity Active Galactic Nucleus, M81*
- Radio jet precession in M81*
- The millimetre variability of M81* -- Multi-epoch dual frequency mm-observations of the nucleus of M81
- Radio Continuum Imaging of the Spiral Galaxy NGC 4258
- Millimetric Observations of the Center of M81 : A Starved Nucleus with Intraday Variability
- A Black Hole Mass-Variability Time Scale Correlation at Submillimeter Wavelengths
- Bhjet: a public multi-zone, steady state jet + thermal corona spectral model
- Nuclear Radio Jet from a Low-Luminosity Active Galactic Nucleus in NGC 4258
- VLBI imaging of M81* at 43GHz
- High Resolution Mid-IR Images of the Nucleus of M81
- Relativistic scaling laws for the light curve in supernovae