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Constraints on the Location of γ-Ray Sample of Blazars with Radio Core-shift Measurements

机译:无线电堆芯位移测量对酒渣γ射线样品位置的限制

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We model simultaneous or quasi-simultaneous multi-band spectral energy distributions (SEDs) for a sample of 25 blazars that have radio core-shift measurements, where a one-zone leptonic model and Markov chain Monte Carlo technique are adopted. In the SED fitting for 23 low-synchrotron-peaked (LSP) blazars, the seed photons from the broad-line (BLR) and molecular torus are considered respectively in the external Compton process. We find that the SED fitting with the seed photons from the torus are better than those utilizing BLR photons, which suggest that the γ-ray emitting region may be located outside the BLR. Assuming the magnetic field strength in the γ-ray emitting region as constrained from the SED fitting follows the magnetic field distribution as derived from the radio core-shift measurements (i.e., , where R is the distance from the central engine and is the magnetic field strength at 1 pc), we further calculate the location of the γ-ray emitting region, , for these blazars. We find that ( is the Schwarzschild radius and is the BLR size), where is estimated from the broad-line luminosities using the empirical correlations obtained using the reverberation mapping methods.
机译:我们对具有无线电核心频移测量的25个blazar样本的同时或准同时多频带频谱能量分布(SED)进行建模,其中采用了一个区域的轻子模型和Markov链蒙特卡洛技术。在用于23种低同步加速器峰(LSP)的blazar的SED拟合中,在外部Compton过程中分别考虑了来自宽谱线(BLR)和分子圆环的种子光子。我们发现,SED与来自圆环的种子光子的拟合要好于利用BLR光子的种子,这表明γ射线发射区域可能位于BLR之外。假设受SED拟合约束的γ射线发射区域中的磁场强度遵循从无线电芯偏移测量得出的磁场分布(即,其中R是距中央引擎的距离,并且是磁场强度(1 pc)时,我们进一步计算了这些blazar的γ射线发射区域的位置。我们发现(是Schwarzschild半径,是BLR大小),其中使用混响映射方法获得的经验相关性从宽线亮度估算得出。

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