Testing of inverse Compton models for active galactic nuclei with gamma-ray and radio observations

被引:84
作者
Lähteenmäki, A
Valtaoja, E
机构
[1] Helsinki Univ Technol, Metsahovi Radio Observ, FIN-02540 Kylmala, Finland
[2] Turku Univ, Vaisala Inst Space Phys & Astron, Tuorla Observ, FIN-21500 Piikkio, Finland
[3] Turku Univ, Dept Phys Sci, FIN-20100 Turku, Finland
关键词
galaxies : active; gamma rays : observations; quasars : general radiation; mechanisms : nonthermal; radio continuum : galaxies;
D O I
10.1086/374883
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
We compare the Metsahovi 22 and 37 GHz total flux density variation data of active galactic nuclei with EGRET (on board the Compton Gamma Ray Observatory) gamma-ray observations from Cycles 1-4. Statistical analysis reveals that there is a genuine connection between the high-frequency radio properties of the sources, e. g., the type of the source, the phase of the radio. are, the associated radio variability brightness temperature, and the gamma-ray emission. Typically the most likely gamma-ray emitter is a high optical polarization quasar with a large Doppler boosting factor. The highest levels of gamma-ray emission are observed during the initial (or peak) stages of high-frequency radio flares. BL Lac objects are much weaker gamma-ray emitters, with no clear correlation between radio and gamma variations. We calculate the distance of the gamma-ray-emitting region from the core in quasars and obtain an average value of 4.9 pc, well downstream from the accretion disk or the broad-line region. This indicates that the strongest time-dependent gamma-ray emission of quasars originates in the relativistic jet, within the same shocks that produce the synchrotron flares at radio frequencies induced by the synchrotron self-Compton mechanism. Weaker gamma-ray emission does not seem to be associated with shocks and may be caused by other mechanisms, such as external Compton processes.
引用
收藏
页码:95 / 108
页数:14
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