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首页> 外文期刊>Astronomy and astrophysics >Dual-frequency VLBI study of Centaurus A on sub-parsec scales - The highest-resolution view of an extragalactic jet
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Dual-frequency VLBI study of Centaurus A on sub-parsec scales - The highest-resolution view of an extragalactic jet

机译:亚秒差距尺度上半人马座A的双频VLBI研究-星系外射流的最高分辨率视图

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Context. Centaurus A is the closest active galactic nucleus. High resolution imaging using Very Long Baseline Interferometry (VLBI) enables us to study the spectral and kinematic behavior of the radio jet–counterjet system on sub-parsec scales, providing essential information for jet emission and formation models. Aims. Our aim is to study the structure and spectral shape of the emission from the central-parsec region of Cen?A. Methods. As a target of the Southern Hemisphere VLBI monitoring program TANAMI (Tracking Active Galactic Nuclei with Austral Milliarcsecond Interferometry), VLBI observations of Cen?A are made regularly at 8.4 and 22.3?GHz with the Australian Long Baseline Array (LBA) and associated telescopes in Antarctica, Chile, and South Africa. Results. The first dual-frequency images of this source are presented along with the resulting spectral index map. An angular resolution of 0.4?mas ?×? 0.7?mas is achieved at 8.4?GHz, corresponding to a linear scale of less than 0.013?pc. Hence, we obtain the highest resolution VLBI image of Cen?A, comparable to previous space-VLBI observations. By combining with the 22.3?GHz image, which has been taken without contributing transoceanic baselines at somewhat lower resolution, we present the corresponding dual-frequency spectral index distribution along the sub-parsec scale jet revealing the putative emission regions for recently detected γ-rays from the core region by Fermi/LAT. Conclusions. We resolve the innermost structure of the milliarcsecond scale jet and counterjet system of Cen?A into discrete components. The simultaneous observations at two frequencies provide the highest resolved spectral index map of an AGN jet allowing us to identify multiple possible sites as the origin of the high energy emission.
机译:上下文。半人马座A是最接近的活跃银河核。使用超长基线干涉测量法(VLBI)的高分辨率成像使我们能够研究亚帕斯帕尺度上的射流-反射流系统的光谱和运动学行为,为射流发射和形成模型提供重要信息。目的我们的目的是研究Cen?A中心视差区域发射的结构和光谱形状。方法。作为南半球VLBI监视程序TANAMI(使用南极毫秒级干涉法跟踪有源银河核)的目标,定期使用澳大利亚长基线阵列(LBA)和相关望远镜在8.4和22.3?GHz进行Cen?A的VLBI观测南极洲,智利和南非。结果。此源的第一个双频图像与生成的光谱索引图一起显示。角分辨率为0.4?mas?×?在8.4?GHz时可获得0.7?mas,对应的线性标度小于0.013?pc。因此,我们获得了Cen?A的最高分辨率VLBI图像,与以前的太空VLBI观测结果相当。通过与在较低分辨率下没有贡献越洋基线的情况下拍摄的22.3?GHz图像相结合,我们给出了沿亚秒级尺度射流的相应双频频谱指数分布,揭示了最近探测到的γ射线的假定发射区域来自费米/拉美地区的核心地区。结论。我们将Cen?A的毫秒级刻度射流和反射流系统的最内部结构分解为离散的组件。在两个频率上的同时观测提供了AGN射流的最高分辨光谱指数图,使我们能够识别出多个可能的位置,作为高能发射的起源。

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