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Mrk 421 after the Giant X-Ray Outburst in 2013
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Abstract
We present the results of the Swift observations of the nearby BL Lac object Mrk 421 during 2013 November–2015 June. The source exhibited a strong long-term variability in the 0.3–10 keV band, with a maximum-to-minimum flux ratio of 13, and underwent X-ray flares by a factor of 1.8–5.2 on timescales of a few weeks or shorter. The source showed 48 instances of intraday flux variability in this period, which sometimes was observed within the 1 ks observational run. It was characterized by fractional amplitudes of 1.5(0.3)%–38.6(0.4)% and flux doubling/halving times of 2.6–20.1 hr. The X-ray flux showed a lack of correlation with the TeV flux on some occasions (strong TeV flares were not accompanied by comparable X-ray activity and vice versa), indicating that the high-energy emission in Mrk 421 was generated from an emission region more complex than a single zone. The best fits of the 0.3–10 keV spectra were mainly obtained using the log-parabola model, showing a strong spectral variability that generally followed a “harder-when-brighter” trend. The position of the synchrotron spectral energy distribution peak showed an extreme range from a few eV to ∼10 keV that happens rarely in blazars.
American Astronomical Society
Title: Mrk 421 after the Giant X-Ray Outburst in 2013
Description:
Abstract
We present the results of the Swift observations of the nearby BL Lac object Mrk 421 during 2013 November–2015 June.
The source exhibited a strong long-term variability in the 0.
3–10 keV band, with a maximum-to-minimum flux ratio of 13, and underwent X-ray flares by a factor of 1.
8–5.
2 on timescales of a few weeks or shorter.
The source showed 48 instances of intraday flux variability in this period, which sometimes was observed within the 1 ks observational run.
It was characterized by fractional amplitudes of 1.
5(0.
3)%–38.
6(0.
4)% and flux doubling/halving times of 2.
6–20.
1 hr.
The X-ray flux showed a lack of correlation with the TeV flux on some occasions (strong TeV flares were not accompanied by comparable X-ray activity and vice versa), indicating that the high-energy emission in Mrk 421 was generated from an emission region more complex than a single zone.
The best fits of the 0.
3–10 keV spectra were mainly obtained using the log-parabola model, showing a strong spectral variability that generally followed a “harder-when-brighter” trend.
The position of the synchrotron spectral energy distribution peak showed an extreme range from a few eV to ∼10 keV that happens rarely in blazars.
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