Broadband Spectral Fitting of Blazars using XSPEC
arXiv:1801.00685 · doi:10.1088/1674-4527/18/3/35
Abstract
The broadband spectral energy distribution(SED) of blazars is generally interpreted as radiation arising from synchrotron and inverse Compton mechanisms.Traditionally, the underlying source parameters responsible for these emission processes,like particle energy density, magnetic field, etc., are obtained through simple visual reproduction of the observed fluxes. However, this procedure is incapable of providing the confidence range on the estimated parameters. In this work, we propose an efficient algorithm to perform a statistical fit of the observed broadband spectrum of blazars using different emission models. Moreover, in this work we use the the observable quantities as the fit parameters, rather than the direct source parameters which govern the resultant SED. This significantly improves the convergence time and eliminates the uncertainty regarding the initial guess parameters. This approach also has an added advantage of identifying the degenerate parameters, which can be removed by including more observable information and/or additional constraints. A computer code developed based on this algorithm is implemented as an user-defined routine in the standard X-ray spectral fitting package, XSPEC. Further, we demonstrate the efficacy of the algorithm by fitting the well sampled SED of the blazar, 3C 279, during its gamma ray flare in 2014.
Accepted for publication in Research in Astronomy and Astrophysics (20 pages)
References in corpus (11)
- Multi-wavelength observations of 3C 279 during the extremely bright gamma-ray flare in 2014 March-April
- Constraints on minimum electron Lorentz factor and matter content of jets for a sample of bright Fermi blazars
- Multiwavelength observations of Mrk 501 in 2008
- Synchrotron and inverse-Compton emission from blazar jets I: a uniform conical jet model
- Long-term study of Mkn 421 with the HAGAR Array of Telescopes
- Multiwavelength behaviour of the blazar OJ 248 from radio to γ-rays
- Clues on High Energy Emission Mechanism from Blazar 3C 454.3 during 2015 August Flare
- Gamma-ray Flare of PKS 1222+216 in 2010: Effect of Jet Dynamics at the Recollimation Zone
- Study of underlying particle spectrum during huge X-ray flare of Mkn 421 in April 2013
- Modelling the multi-wavelength emission of flat spectrum radio quasar 3C 279
- Dynamic changes of emitting electron distribution in the jet of 3C 279: signatures of acceleration and cooling
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- Convex X-ray Spectra of PKS 2155-304 and Constraints on the Minimum Electron Energy
- Estimating the Jet Power from Broadband SED modeling of Mkn 501 for different particle distributions
- Probing IC/CMB Interpretation for the X-ray knots of AGN through VHE observations
- Understanding the Broadband Emission Process of 3C 279 through Longterm Spectral Analysis
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