Gamma-ray Flare of PKS 1222+216 in 2010: Effect of Jet Dynamics at the Recollimation Zone
arXiv:1404.6398 · doi:10.1093/mnras/stu836
Abstract
The -ray flare of PKS 1222+216, observed in June 2010, is interpreted as an outcome of jet dynamics at recollimation zone. We obtained the -ray light-curves in three different energy bands, namely, 100--300 MeV, 300 MeV--1 GeV and 1--3 GeV from observations by the \emph{Fermi} Large Area Telescope (LAT). We also use the \emph{Swift}--XRT flux from 0.3--10 keV obtained from archival data. We supplement these with the 0.07--0.4 TeV observations with MAGIC telescope, available in the literature. The detection of source at very high energy (VHE, GeV) with a differential photon spectral index of and the rapid variability associated with it suggests that the emission arises from a compact region located beyond the broad line emitting region. The plausible -ray emission mechanism can then be inverse Compton scattering of IR photons from obscuring torus. Further, the decay time of LAT flare cannot be explained by considering simple radiative loss mechanisms. Hence, to interpret the LAT light curves, we develop a model where the broadband emission originates from a compact region, arising plausibly from the compression of jet matter at the recollimation zone. The flare is then expressed as an outcome of jet deceleration probably associated with this focusing effect. The parameters of the model are further constrained by reproducing the broadband spectral energy distribution of the source obtained during the flare episode. Our study suggests that the particle energy density exceeds magnetic energy density by a large factor which in turn may cause rapid expansion of the emission region. However, near equipartition can be achieved towards the end of LAT flare during which the compact emission region would have expanded to the size of jet cross-section.
16 pages, 2 figures, accepted for publication in MNRAS
References in corpus (6)
- Very-High-Energy Gamma Rays from a Distant Quasar: How Transparent Is the Universe?
- MAGIC discovery of VHE Emission from the FSRQ PKS 1222+21
- The blazar sequence: a new perspective
- A numerical simulation of the evolution and fate of a FRI jet. The case of 3C 31
- Recollimation and Radiative Focusing of Relativistic Jets: Applications to Blazars and M87
- A Two Zone Synchrotron Model for the Knots in the M87 Jet
Cited by in corpus (15)
- Multi-wavelength observations of 3C 279 during the extremely bright gamma-ray flare in 2014 March-April
- Clues on High Energy Emission Mechanism from Blazar 3C 454.3 during 2015 August Flare
- On the spectral curvature of VHE blazar 1ES\,1011+496: Effect of spatial particle diffusion
- Brightest Fermi-LAT Flares of PKS 1222+216: Implications on Emission and Acceleration Processes
- Multi-wavelength Temporal Variability of the Blazar 3C 454.3 during 2014 Activity Phase
- The High Redshift Blazar S5 0836+71: A Broadband Study
- Jet Kinematics of the Quasar 4C +21.35 from Observations with the KaVA Very Long Baseline Interferometry Array
- The detection of possible transient Quasi-Periodic Oscillations in the -ray light curve of PKS 0244-470 and 4C+38.41
- Unveiling the broadband spectral and temporal properties of PKS\,0903-57 during its brightest flare
- Probing photon-ALP oscillations from the flat spectrum radio quasar 4C+21.35
- Effects of Spatial Fluctuations in the Extra Galactic Background Light on Hard Gamma Ray Spectra
- Location of gamma-ray flaring region in quasar 4C +21.35
- Long-term optical and ray variability of the blazar PKS~1222+216
- Temporal and Spectral Study of PKS B1222+216 Flares in 2014
- Blazar flares from plasma blobs crossing the broad-line region