Hubble Space Telescope observations of an extraordinary flare in the M87 jet
arXiv:0904.3546 · doi:10.1088/0004-6256/137/4/3864
Abstract
HST-1, a knot along the M87 jet located 0.85 arcsec from the nucleus of the galaxy has experienced dramatic and unexpected flaring activity since early 2000. We present analysis of Hubble Space Telescope Near-Ultraviolet (NUV) imaging of the M87 jet from 1999 May to 2006 December that reveals that the NUV intensity of HST-1 has increased 90 times over its quiescent level and outshines the core of the galaxy. The NUV light curve that we derive is synchronous with the light curves derived in other wavebands. The correlation of X-ray and NUV light curves during the HST-1 flare confirms the synchrotron origin of the X-ray emission in the M87 jet. The outburst observed in HST-1 is at odds with the common definition of AGN variability usually linked to blazars and originating in close proximity of the central black hole. In fact, the M87 jet is not aligned with our line of sight and HST-1 is located at one million Schwarzchild radii from the super-massive black hole in the core of the galaxy.
April issue of AJ, 137, 3864 STScI press release http://hubblesite.org/newscenter/archive/releases/2009/16/
References in corpus (4)
- Fast variability of TeV gamma-rays from the radio galaxy M 87
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- Superluminal Radio Features in the M87 Jet and the Site of Flaring TeV Gamma-ray Emission
- New results on particle acceleration in the Centaurus A jet and counterjet from a deep Chandra observation
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- A Magnetohydrodynamic Model of The M87 Jet. II. Self-consistent Quad-shock Jet Model for Optical Relativistic Motions and Particle Acceleration
- M87: a cosmic laboratory for deciphering black hole accretion and jet formation
- Multi-Wavelength Polarimetry and Spectral Study of M87 Jet During 2002-2008
- Multi-wavelength Polarimetry and Variability Study of M87 Jet
- The Study of X-Ray Flux Variability of M87