English

Frequency dependent core shifts and parameter estimation for the blazar 3C 454.3

High Energy Astrophysical Phenomena 2015-07-23 v1

Abstract

We study the core shift effect in the parsec scale jet of the blazar 3C 454.3 using the 4.8 GHz - 36.8 GHz radio light curves obtained from three decades of continuous monitoring. From a piecewise Gaussian fit to each flare, time lags Δt\Delta t between the observation frequencies ν\nu and spectral indices α\alpha based on peak amplitudes AA are determined. From the fit Δtν1/kr\Delta t \propto \nu^{1/k_r}, kr=1.10±0.18k_r = 1.10 \pm 0.18 indicating equipartition between the magnetic field energy density and the particle energy density. From the fit AναA \propto \nu^\alpha, α\alpha is in the range 0.24-0.24 to 1.521.52. A mean magnetic field strength at 1 pc, B1=0.5±0.2B_1 = 0.5 \pm 0.2 G, and at the core, Bcore=46±16B_{\rm core} = 46 \pm 16 mG, are inferred, consistent with previous estimates. The measure of core position offset is Ωrν=6.4±2.8\Omega_{r\nu} = 6.4 \pm 2.8 pc GHz1/kr^{1/k_r} when averaged over all frequency pairs. Based on the statistical trend shown by the measured core radius rcorer_{\rm core} as a function of ν\nu, we infer that the synchrotron opacity model may not be valid for all cases. A Fourier periodogram analysis yields power law slopes in the range 1.6-1.6 to 3.5-3.5 describing the power spectral density shape and gives bend timescales in the range 0.520.66 0.52 - 0.66~yr. This result, and both positive and negative α\alpha, indicate that the flares originate from multiple shocks in a small region. Important objectives met in our study include: the demonstration of the computational efficiency and statistical basis of the piecewise Gaussian fit; consistency with previously reported results; evidence for the core shift dependence on observation frequency and its utility in jet diagnostics in the region close to the resolving limit of very long baseline interferometry observations.

Keywords

Cite

@article{arxiv.1506.07137,
  title  = {Frequency dependent core shifts and parameter estimation for the blazar 3C 454.3},
  author = {P. Mohan and A. Agarwal and A. Mangalam and Alok C. Gupta and Paul J. Wiita and A. E. Volvach and M. F. Aller and H. D. Aller and M. F. Gu and A. Lahteenmaki and M. Tornikoski and L. N. Volvach},
  journal= {arXiv preprint arXiv:1506.07137},
  year   = {2015}
}

Comments

12 pages, 11 figures (23 sub-figures), 5 tables. Accepted for publication in MNRAS

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