论文标题

红移上方的无线电大型类星体4:扩展样品的VLBI成像

Radio-loud Quasars above Redshift 4: VLBI Imaging of an Extended Sample

论文作者

Krezinger, M., Perger, K., Gabányi, K. É., Frey, S., Gurvits, L. I, Paragi, Zs., An, T., Zhang, Y., Cao, H., Sbarrato, T.

论文摘要

高红移无线电来源为研究早期星系和超大质量黑洞的形成和演变提供了充足的机会。然而,红移4上方的已知无线电大通活性银河核(AGN)的数量相当有限。在高红移时,与观察者相比,相对射击的喷气式飞机的射击似乎大部分是大多数的,与相对于视线未对准的无线电大声源相比。为了找到更多这些未对准的AGN,需要使用非常长的基线干涉法(VLBI)进行的Milliarcsec尺度成像研究,因为它们使我们能够区分紧凑的核心 - JET Radio Souncon和那些具有更扩展发射的芯片。先前的高分辨率VLBI研究表明,在Milliarcsecond尺度上,Blazar候选者中的一些无线电来源实际上显示出未打开的无线电发射。用GAIA天文空间任务确定的最准确的光学坐标也对分类过程也很有用。在这里,我们在欧洲VLBI网络上报告了1.7和5 GHz的13个高红移(4 <z <4.5)类星体的双频成像观测值。该样本增加了VLBI观测值的Z> 4个无线电源数量。我们使用结构和物理性能,例如无线电形态,光谱指数,可变性,亮度温度以及光学坐标,我们确定了六个Blazars和6个未对准的无线电AGN,其余的暂时鉴定为Blazar。

High-redshift radio sources provide plentiful opportunities for studying the formation and evolution of early galaxies and supermassive black holes. However, the number of known radio-loud active galactic nuclei (AGN) above redshift 4 is rather limited. At high redshifts, it appears that blazars, with relativistically beamed jets pointing towards the observer, are in majority compared to radio-loud sources with jets misaligned with respect to the line of sight. To find more of these misaligned AGN, milliarcsec-scale imaging studies carried out with very long baseline interferometry (VLBI) are needed, as they allow us to distinguish between compact core--jet radio sources and those with more extended emission. Previous high-resolution VLBI studies revealed that some of the radio sources among blazar candidates in fact show unbeamed radio emission on milliarcsecond scales. The most accurate optical coordinates determined with the Gaia astrometric space mission are also useful in the classification process. Here, we report on dual-frequency imaging observations of 13 high-redshift (4 < z < 4.5) quasars at 1.7 and 5 GHz with the European VLBI Network. This sample increases the number of z>4 radio sources for which VLBI observations are available by about a quarter. Using structural and physical properties, such as radio morphology, spectral index, variability, brightness temperature, as well as optical coordinates, we identified six blazars and six misaligned radio AGNs, with the remaining one tentatively identified as blazar.

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