An inhomogeneous jet model for the rapid variability of TeV blazars
arXiv:0807.4998 · doi:10.1111/j.1745-3933.2008.00539.x
Abstract
We present a new time-dependent inhomogeneous jet model of non-thermal blazar emission, which reproduces the entire spectral energy distribution together with the rapid gamma-ray variability. Ultra-relativistic leptons are injected at the base of a jet and propagate along the jet structure. We assume continuous reacceleration and cooling, producing a relativistic quasi-maxwellian (or "pile-up") particle energy distribution. The synchrotron and Synchrotron-Self Compton jet emissivity are computed at each altitude. Klein-Nishina effects as well as intrinsic gamma-gamma absorption are included in the computation. Due to the pair production optical depth, considerable particle density enhancement can occur, particularly during flaring states. Time-dependent jet emission can be computed by varying the particle injection, but due to the sensitivity of pair production process, only small variations of the injected density are required during the flares. The stratification of the jet emission, together with a pile-up distribution, allows significantly lower bulk Lorentz factors, compared to one-zone models. Applying this model to the case of PKS2155-304 and its big TeV flare observed in 2006, we can reproduce simultaneously the average broad band spectrum of this source as well as the TeV spectra and TeV light curve of the flare with bulk Lorentz factor lower than 15.
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- Variable VHE gamma-ray emission from Markarian 501
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- A multiwavelength view of the flaring state of PKS 2155-304 in 2006
- Synchrotron and inverse-Compton emission from blazar jets - II. An accelerating jet model with a geometry set by observations of M87
- Kinetic turbulence in shining pair plasma: intermittent beaming and thermalization by radiative cooling
- Energetic Constraints on a Rapid Gamma-Ray Flare in PKS 1222+216
- Connecting steady emission and Very High Energy flaring states in blazars: the case of Mrk 421
- Long-term monitoring of PKS 2155304 with ATOM and H.E.S.S.: investigation of optical/-ray correlations in different spectral states
- Particle diffusion and localized acceleration in inhomogeneous AGN jets - Part I: Steady-state spectra
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- Blazars at Very High Energies: Emission Modelling
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- Breaking degeneracy in jet dynamics: multi-epoch joint modelling of the BL Lac PKS 2155-304
- A two-component model for the high-energy variability of blazars. Application to PKS 2155-304
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- A stratified jet model for AGN emission in the two-flow paradigm
- Revisiting the TeV flare of PKS 2155-304 in 2006
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- Optically thick, nonlocal, inhomogeneous, stationary jet model for high-energy radiation from blazars: Application to Mrk 421