论文标题

对距Centaurus A Galaxy的活性核远距离的软X射线结构的分析

An Analysis of Soft X-ray Structures at Kiloparsec Distances from the Active Nucleus of Centaurus A Galaxy

论文作者

Król, Dominika Ł., Marchenko, Volodymyr, Ostrowski, Michał, Stawarz, Łukasz

论文摘要

在这里,我们重新分析了Centairus \中心部分的档案{\ it Chandra}数据,该数据是一个射电星系,旨在系统地研究与系统中的内部无线电裂片相关的X射线发射及其周围环境。特别是,我们专注于四个不同的特征,这些特征是相对于相邻磁场的软过量。其中包括位于KPC距离向西和东部的KPC距离的两个区域,向南的延伸弓震结构,以及从中心向北的细弧的碎片。选定的北部,西和南部的特点与无线电裂片的边缘一致,而东部结构似乎从放射发射的等离子体中流离失所。我们的X射线光谱分析显示(i)北部,东部和南部地区具有光子指数$γ\ sim 2 $的幂律发射组件,以及(ii)密集(数量密度$ \ sim 0.3 $ \,cm $^,cm $^{ - 3} $)和相对冷(温度$ \ sim 0.2 $ \ sim 0.2 $ \,kev,kev)和西部。幂律发射与无线电结构边缘上产生的同步加速器连续体一致,这意味着在末端弓箭上电子加速度的效率不会在内叶扩展上发生巨大变化。另一方面,可以从银河系中央区域的大量流出来理解气态冷凝水的存在。

Here we re-analyze the archival {\it Chandra} data for the central parts of the Centaurus\,A radio galaxy, aiming for a systematic investigation of the X-ray emission associated with the inner radio lobes in the system, and their immediate surroundings. In particular, we focus on four distinct features characterized by the soft excess with respect to the adjacent fields. Those include the two regions located at kpc distances from the nucleus to the West and East, the extended bow-shock structure to the South, and a fragment of a thin arc North from the center. The selected North, West, and South features coincide with the edges of the radio lobes, while the East structure is seemingly displaced from the radio-emitting plasma. Our X-ray spectral analysis reveals (i) a power-law emission component with photon index $Γ\sim 2$ in the North, East, and South regions, and (ii) a dense (number density $\sim 0.3$\,cm$^{-3}$) and relatively cold (temperature $\sim 0.2$\,keV) gas in the East and West regions. The power-law emission is consistent with the synchrotron continuum generated at the edges of the radio structure, and implies that the efficiency of the electron acceleration at the terminal bow-shock does not vary dramatically over the inner lobes' extension. The presence of gaseous condensations, on the other hand, could possibly be understood in terms of a massive outflow from the central regions of the galaxy.

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