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An Overview of Blazar Variability
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Blazars are characterized by rapid variability at virtually all wavelengths from radio through TeV gamma-rays. The challenge since their discovery has been to understand the origin of their luminous, apparently nonthermal, nuclear emission. Considerable progress has been made in recent years thanks to a handful of multiwavelength monitoring campaigns with high enough temporal sampling to resolve the most rapid variations. The best data for a few objects have shown a variety of behaviors, for the most part commensurate with synchrotron and Compton-scattered emission from a relativistic jet, though better data for more blazars are still clearly needed. In particular, the origin of the seed photons that are upscattered to gamma-ray energies remains unclear. The latest multiwavelength light curves for the BL Lac object PKS2155-304 appear to rule out synchrotron emission from a homogeneous source.
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Systematic Search for Long-Term Trends in Fermi-LAT Jetted Active Galactic Nuclei
A systematic search of 12 years of Fermi-LAT data identifies 40 jetted AGN with linear or quadratic long-term gamma-ray flux trends, mostly with multiplicative oscillations.
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