论文标题

追踪银河系散射的散射

Tracing Milky Way scattering by compact extragalactic radio sources

论文作者

Koryukova, T. A., Pushkarev, A. B., Plavin, A. V., Kovalev, Y. Y.

论文摘要

我们使用了从1.4 GHz到86 GHz观察到的活性银河核(AGN)的非常长的基线干涉法(VLBI)数据来测量8959 AGN中VLBI无线电核的角度大小。我们分析了它们的天空分布,频率依赖性,并创建了我们银河系中星际介质的大规模散射特性的最密集的采样和完整的分布图。对于通过银河面看到的来源检测到了测得的AGN核心大小的显着角度扩展,在低频(例如,在2 GHz时),这种效应尤其强。热等离子体中包含电子密度波动的散射屏幕主要集中在银河面中,并表现出块状分布。最强散射的区域是银河系中心,银河棒和紧凑的无线电源射手座A*位于其中。我们还发现,Cygnus星座,超新星残留物Taurus A,Vela,W78和Cassiopeia A和Orion星云的散射强度的增强。使用AGN核心尺寸的多频观测数据,我们将固有和散射大小的贡献分离为1411来源的测得的角直径。对于通过银河平面观察到的源,散射尺寸成分的贡献在系统上比在银河面外看到的源更大。发现衍生的幂律散射指数与热等离子体中的衍射为主导的散射是很好的一致,该预测是在热等离子体中散布的,其密度不均匀性分布。

We used archival very long baseline interferometry (VLBI) data of active galactic nuclei (AGN) observed from 1.4 GHz to 86 GHz to measure the angular size of VLBI radio cores in 8959 AGNs. We analysed their sky distributions, frequency dependencies and created the most densely sampled and complete to date distribution map of large-scale scattering properties of the interstellar medium in our Galaxy. Significant angular broadening of the measured AGN core sizes is detected for the sources seen through the Galactic plane, and this effect is especially strong at low frequencies (e.g., at 2 GHz). The scattering screens containing electron density fluctuations of hot plasma are mainly concentrated in the Galactic plane and manifest clumpy distribution. The region of the strongest scattering is the Galactic centre, where the Galactic bar and the compact radio source Sagittarius A* are located. We have also found the enhancement of scattering strength in regions of the Cygnus constellation, supernova remnants Taurus A, Vela, W78 and Cassiopeia A, and the Orion Nebula. Using multi-frequency observational data of AGN core sizes, we separated the contribution of the intrinsic and scattered sizes to the measured angular diameter for 1411 sources. For the sources observed through the Galactic plane, the contribution of the scattered size component is systematically larger than for those seen outside the Galactic plane. The derived power-law scattering indices are found to be in good agreement with theoretical predictions for the diffractive-dominated scattering of radio emission in a hot plasma with Gaussian distribution of density inhomogeneities.

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