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Probing Blazar Structure Through Multiwavelength VariabilityThis was a project to understand the multiwavelength variability of blazars, via monitoring with the XTE satellite and many other space- and ground-based observatories. Blazars are dominated by strong nonthermal emission, we now know, due to relativistic beaming in an aligned jet. Thus they are ideal laboratories for studying jet physics. The physical scales of the inner, energetically dominant jets are generally too small to resolve with current or next-generation instruments, so we used variability to probe the balance between acceleration/injection of energetic particles and radiative/other losses, and to infer jet structure. Our work has shown that the radio through UV-X-ray emission is produced via synchrotron radiation, and that at the peak frequency and above, the emission region is approximately homogeneous. A separate gamma-ray component, which is often energetically dominant, varies in a correlated way but with larger amplitude, suggesting it is produced when the synchrotron-emitting electrons Compton scatter soft photons (though other possibilities remain viable). With RXTE we carried out two intensive monitoring campaigns on the blazar PKS2155-304, in May 1996 and November 1996. Analysis and interpretation of these data constituted the main activities under this grant. The results have been presented at several meetings, and a number of publications have resulted from this work. In addition, a final paper for a refereed publication is in final draft form, as are companion papers based on simultaneous Rosat and EUVE results.
Document ID
20000021094
Acquisition Source
Goddard Space Flight Center
Document Type
Contractor or Grantee Report
Authors
Urry, C. Megan
(Space Telescope Science Inst. Baltimore, MD United States)
Date Acquired
August 19, 2013
Publication Date
December 29, 1999
Subject Category
Astronomy
Funding Number(s)
CONTRACT_GRANT: NAG5-3313
PROJECT: STScI Proj. J0489
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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