论文标题

硬 - X射线选择活跃的银河核。 I.高频的广播视图

Hard - X-rays selected Active Galactic Nuclei. I. A radio view at high-frequencies

论文作者

Chiaraluce, E., Panessa, F., Bruni, G., Baldi, R. D., Behar, E., Vagnetti, F., Tombesi, F., McHardy, I.

论文摘要

对活性银河核(AGN)中无线电排放的彻底研究对于了解负责发射和弹出过程之间相互作用的物理机制至关重要。高频无线电观察可以针对较小的发射区域的核贡献,并且受吸收影响较小。我们介绍了附近16个16的JVLA 22和45 GHz观测值(0.003 $ \ le $ z $ \ le $ 0.3)硬 - X射线 - X射线选择的AGN在(sub)-KPC秤上,带有ujy beam $^{ - 1} $敏感性。我们检测到15/16的来源,磁通密度从数百个Ujy Beam $^{ - 1} $到Tens Jy(特定的Luminosities($ \ sim $ 10 $ 10 $^{20} $到$ \ sim $ \ sim $ 10 $^{25} \ {25} \,w \,w \,hz^,hz^{ - 1} $ at 22 ghz)。所有检测到的来源都有一个紧凑的核心,其中8个在两个频率下都以核心为主导,其他则表现出扩展的结构。光谱指数范围从陡峭到平坦/倒置。我们将此证据解释为核心+喷气系统(6/15),核心伴随着周围的恒星形成(1/15),以靠近视力线的射流(3/15),以从电晕或喷气机的底部发射(1/15),尽管可能存在不同工艺之间的脱发。四个来源需要更多数据来阐明其性质。我们得出的结论是,在这些频率下,具有延长的,光学薄的组件与平面光谱芯一起存在。大致遵循$ {l_r}/{l_x} \ sim10^{ - 5} $的关系,表明可能对热电晕的无线电发射有可能的贡献。根据吸积 - 注射框架,讨论了无线电芯(22和45 GHz)和X射线照明之间的弱显着相关性。

A thorough study of radio emission in Active Galactic Nuclei (AGN) is of fundamental importance to understand the physical mechanisms responsible for the emission and the interplay between accretion and ejection processes. High frequency radio observations can target the nuclear contribution of smaller emitting regions and are less affected by absorption. We present JVLA 22 and 45 GHz observations of 16 nearby (0.003$\le$z$\le$0.3) hard - X-rays selected AGN at the (sub)-kpc scale with tens uJy beam$^{-1}$ sensitivity. We detected 15/16 sources, with flux densities ranging from hundreds uJy beam$^{-1}$ to tens Jy (specific luminosities from $\sim$10$^{20}$ to $\sim$10$^{25}\,W\,Hz^{-1}$ at 22 GHz). All detected sources host a compact core, with 8 being core-dominated at either frequencies, the others exhibiting also extended structures. Spectral indices range from steep to flat/inverted. We interpret this evidence as either due to a core+jet system (6/15), a core accompanied by surrounding star formation (1/15), to a jet oriented close to the line of sight (3/15), to emission from a corona or the base of a jet (1/15), although there might be degeneracies between different processes. Four sources require more data to shed light on their nature. We conclude that, at these frequencies, extended, optically-thin components are present together with the flat-spectrum core. The ${L_R}/{L_X}\sim10^{-5}$ relation is roughly followed, indicating a possible contribution to radio emission from a hot corona. A weakly significant correlation between radio core (22 and 45 GHz) and X-rays luminosities is discussed in the light of an accretion-ejection framework.

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