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A Method for Locating High Energy Dissipation Region in Blazar

Published 16 Nov 2017 in astro-ph.HE | (1711.05939v2)

Abstract: The production site of gamma-rays in blazar jet is an unresolved problem. We present a method to locate gamma-ray emission region in the framework of one-zone emission model. From measurements of core-shift effect, the relation between the magnetic field strengths ($B&#39;$) in the radio cores of jet and the distances (RR) of these radio cores from central supermassive black hole (SMBH) can be inferred. Therefore once the magnetic field strength in gamma-ray emission region ($B&#39;<em>{\rm diss}$) is obtained, one can use the relation of $B&#39;$-RR to derive the distance (R</em>dissR</em>{\rm diss}) of gamma-ray emission region from SMBH. Here we evaluate the lower limit of $B&#39;<em>{\rm diss}$ by using the criteria that the optical variability timescale t</em>vart</em>{\rm var} should be longer or equal to the synchrotron radiation cooling timescale of the electrons that emit optical photons. We test the method with the observations of PSK 1510-089 and BL Lacertae, and derive $R_{\rm diss}&lt;0.15\delta_{\rm D}<sup>{1/3}(1+A)<sup>{2/3}\</sup></sup> $pc for PSK 1510-089 with tvar∼t_{\rm var}\sim a few hours, and $R_{\rm diss}&lt;0.003\delta_{\rm D}<sup>{1/3}(1+A)<sup>{2/3}\</sup></sup> $pc for BL Lacertae with tvar∼t_{\rm var}\sim a few minutes. Here δD\delta_{\rm D} is the Doppler factor and AA is the Compton dominance (i.e., the ratio of the Compton to the synchrotron peak luminosities).

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