The Optical Variability of the Quasar 3C~279: The Signature of a Decelerating Jet?
arXiv:0811.0003 · doi:10.1088/0004-637X/692/2/1374
Abstract
A recent optical monitoring campaign on the prominent quasar 3C279 revealed a period of a remarkably clean exponential decay of BVRI fluxes with time, with a time constant of 12.8 d, over about 14 days. This is clearly too long to be associated with radiative cooling. Here we propose that this may be the signature of deceleration of the synchrotron emitting jet component. We develop a model analogous to the relativistic blast wave model for GRBs, including radiative energy losses and radiation drag, to simulate the deceleration of a relativistically moving plasmoid in the moderately dense AGN environment. Synchrotron, SSC and external Compton emission are evaluated self-consistently. We show that the observed optical light curve decay can be successfully reproduced with this model. The decelerating plasmoid model predicts a delayed X-ray flare, about 2 - 3 weeks after the onset of the quasi-exponential light curve decay in the optical. A robust prediction of this model, which can be tested with Fermi and simultaneous optical monitoring, is that the peak in the gamma-ray light curve at ~ 100 MeV is expected to be delayed by a few days with respect to the onset of the optical decay, while the VHE gamma-rays are expected to track the optical light curve closely with a delay of at most a few hours.
Accepted for Publication in The Astrophysical Journal
References in corpus (7)
- Synchrotron Self-Compton Analysis of TeV X-ray Selected BL Lacertae Objects
- Implications of very rapid TeV variability in blazars
- Rapid variability in TeV blazars: the case of PKS 2155-304
- Results of WEBT, VLBA and RXTE monitoring of 3C 279 during 2006-2007
- The WEBT Campaign on the Blazar 3C279 in 2006
- The redshift-dependence of gamma-ray absorption in the environments of strong-line AGN
- Modification of the gamma-ray spectra by internal absorption in OVV blazars: The example cases of 3C 273 and 3C 279
Cited by in corpus (16)
- Multi-wavelength observations of 3C 279 during the extremely bright gamma-ray flare in 2014 March-April
- Synchrotron and inverse-Compton emission from blazar jets - II. An accelerating jet model with a geometry set by observations of M87
- Short Term Flux and Colour Variations in Low-Energy Peaked Blazars
- Multi-band optical-NIR variability of blazars on diverse timescales
- Study on Temporal and Spectral behavior of 3C 279 during 2018 January flare
- The nature of the intra-night optical variability in blazars
- Multiwavelength Photometric and Spectropolarimetric Analysis of the FSRQ 3C 279
- The Multifrequency Campaign on 3C 279 in January 2006
- Gamma-ray Flare of PKS 1222+216 in 2010: Effect of Jet Dynamics at the Recollimation Zone
- The High Redshift Blazar S5 0836+71: A Broadband Study
- A time dependent approach to model X-ray and --ray light curves of Mrk 421 observed during the flare in February 2010
- Optical flux behaviour of a sample of Fermi blazars
- Unveiling the broadband spectral and temporal properties of PKS\,0903-57 during its brightest flare
- The supercritical pile gamma-ray burst model: The GRB afterglow steep-decline-and-plateau phase
- The Supercritical Pile GRB Model: The Prompt to Afterglow Evolution
- The statistics of BAT-to-XRT flux ratio in GRB: Evidence for a characteristic value and its implications