High energy variability of synchrotron-self compton emitting sources: Why one zone models do not work and how we can fix it

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Abstract

With the anticipated launch of GLAST, the existing X-ray telescopes, and the enhanced capabilities of the new generation of TeV telescopes, developing tools for modeling the variability of high energy sources such as blazars is becoming a high priority. We point out the serious, innate problems one zone synchrotron-self Compton models have in simulating high energy variability. We then present the first steps toward a multi zone model where non-local, time delayed Synchrotron-self Compton electron energy losses are taken into account. By introducing only one additional parameter, the length of the system, our code can simulate variability properly at Compton dominated stages, a situation typical of flaring systems. As a first application, we were able to reproduce variability similar to that observed in the case of the puzzling 'orphan' TeV flares that are not accompanied by a corresponding X-ray flare. © 2007 American Institute of Physics.

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Graff, P. B., Georganopoulos, M., Perlman, E. S., & Kazanas, D. (2007). High energy variability of synchrotron-self compton emitting sources: Why one zone models do not work and how we can fix it. In AIP Conference Proceedings (Vol. 921, pp. 333–334). https://doi.org/10.1063/1.2757338

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