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Parameter constraints in a near-equipartition model with multifrequencyNuSTAR,Swift, andFermi-LAT data from 3C 279

机译:具有MultifrequencyNustar,Swift,Swift,3C 279的近级值,Swift,Andfermi-Lat数据的参数约束

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摘要

Precise spectra of 3C 279 in the 0.5–70 keV range, obtained during two epochs of Swift and NuSTAR observations, are analysed using a near-equipartition model. We apply a one-zone leptonic model with a three-parameter log-parabola electron energy distribution to fit the Swift and NuSTAR X-ray data, as well as simultaneous optical and Fermi-LAT gamma-ray data. The Markov chain Monte Carlo technique is used to search the high-dimensional parameter space and evaluate the uncertainties on model parameters. We show that the two spectra can be successfully fitted in near-equipartition conditions, defined by the ratio of the energy density of relativistic electrons to magnetic field ζe being close to unity. In both spectra, the observed X-rays are dominated by synchrotron self-Compton photons, and the observed gamma-rays are dominated by Compton scattering of external infrared photons from a surrounding dusty torus. Model parameters are well constrained. From the low state to the high state, both the curvature of the log-parabola width parameter and the synchrotron peak frequency significantly increase. The derived magnetic fields in the two states are nearly identical (∼1 G), but the Doppler factor in the high state is larger than that in the low state (∼28 versus ∼18). We derive that the gamma-ray emission site takes place outside the broad-line region, at ≳0.1 pc from the black hole, but within the dusty torus. Implications for 3C 279 as a source of high-energy cosmic rays are discussed.
机译:在Swift和NuSTAR观测的两个时期内获得的0.5-70 keV范围内的3C 279的精确光谱,使用近等距模型进行了分析。我们应用具有三参数对数抛物线电子能量分布的单区轻子模型,以拟合Swift和NuSTAR X射线数据以及同时的光学和Fermi-LATγ射线数据。马尔可夫链蒙特卡罗技术用于搜索高维参数空间并评估模型参数的不确定性。我们表明,这两个光谱可以在近似均分的条件下成功拟合,这是由相对论电子与磁场ζe的能量密度之比接近于1定义的。在两个光谱中,观察到的X射线由同步加速器自康普顿光子控制,观察到的伽马射线由来自周围尘土圆环的外部红外光子的康普顿散射控制。模型参数受到严格约束。从低状态到高状态,对数抛物线宽度参数的曲率和同步加速器峰值频率都显着增加。两种状态下的导出磁场几乎相同(〜1 G),但是高状态下的多普勒因子大于低状态下的多普勒因子(〜28对〜18)。我们推论出,伽马射线的发射地点发生在宽线区域之外,距黑洞pc0.1 pc,但位于尘土飞扬的圆环内。讨论了3C 279作为高能宇宙射线源的含义。

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