论文标题
用UGMRT探测PG类星体中低频无线电发射的起源-I
Probing the origin of low-frequency radio emission in PG quasars with the uGMRT -- I
论文作者
论文摘要
我们介绍了685 MHz观测值的结果,该观测值是属于Palomar-Green(PG)类星体样品的22种类星体的升级巨型Metrewave射电望远镜(UGMRT)。只有四个来源揭示了$ \ sim $ 10-30 kpc尺度上的扩展无线电结构,而其余的则在很大程度上是无线电核心在UGMRT分辨率$ \ sim $ 3-5 ARCSEC上未解决的组合,在几乎没有kpc to $ \ sim \ sim \ sim $ \ sim $ 10 kpc scales上,$ \ sim $ 3-5 ARCSEC包围。一些来源在其光谱索引图像中揭示了几乎无法解决的喷气机和裂片的签名,这些签名是使用UGMRT 685 MHz数据和类似的分辨率GHz频率数据创建的。根据它们在无线电IR相关性以及光谱指数图像上的位置,我们发现两个无线电大声(RL)类星体中的无线电发射和近三分之一的无线电值(RQ)类星体是活跃的银河核(AGN),而剩余的源代码却占主导地位,而剩余的来源似乎与Stellar-Process一起产生了巨大的贡献。虽然两个RL源在其内核中显示倒频谱指数,但RQ源表现出一系列的光谱指数,从平坦到陡峭($ -0.1 \gtrsimα_{r} \ gtrsim-1.1 $),表明存在未解决的Jets/Lobes或Winds。除了685〜MHz无线电亮度与爱丁顿的比率之间存在显着相关性外,我们在RQ PG源中其他685 MHz无线电特性与黑洞(BH)性能之间没有发现很强的相关性。缺乏相关性可以通过与恒星相关的排放的贡献或先前AGN活性发作的无线电发射的贡献来解释,这可能与当前的BH活性状态无关。
We present the results from 685 MHz observations with the upgraded Giant Metrewave Radio Telescope (uGMRT) of 22 quasars belonging to the Palomar-Green (PG) quasar sample. Only four sources reveal extended radio structures on $\sim$10-30 kpc scales, while the rest are largely a combination of a radio core unresolved at the uGMRT resolution of $\sim$3-5 arcsec, surrounded by diffuse emission on few kpc to $\sim$10 kpc scales. A few sources reveal signatures of barely resolved jets and lobes in their spectral index images that are created using the uGMRT 685 MHz data and similar resolution GHz-frequency data from the Very Large Array. On the basis of their position on the radio-IR correlation as well as the spectral index images, we find that the radio emission in the two radio-loud (RL) quasars and nearly one-third of the radio-quiet (RQ) quasars is active galactic nucleus (AGN) dominated whereas the remaining sources appear to have significant contributions from stellar-related processes along with the AGN. While the two RL sources exhibit inverted spectral index in their cores, the RQ sources exhibit a range of spectral indices varying from flat to steep ($-0.1\gtrsimα_{R}\gtrsim-1.1$) indicating the presence of unresolved jets/lobes or winds. Except for a significant correlation between the 685~MHz radio luminosity and the Eddington ratio, we do not find strong correlations between other 685 MHz radio properties and black hole (BH) properties in the RQ PG sources. This lack of correlations could be explained by the contribution of stellar-related emission, or radio emission from previous AGN activity episodes which may not be related to the current BH activity state.