论文标题

X射线明亮Z = 5.5 Quasar SRGE J170245.3+130104 A BLAZAR吗?

Is the X-ray bright z = 5.5 quasar SRGE J170245.3+130104 a blazar?

论文作者

An, Tao, Wang, Ailing, Liu, Yuanqi, Sotnikova, Yulia, Zhang, Yingkang, Aditya, J. N. H. S., Jaiswal, Sumit, Khorunzhev, George, Lao, Baoqiang, Lin, Ruqiu, Mikhailov, Alexander, Mingaliev, Marat, Mufakharov, Timur, Sazonov, Sergey

论文摘要

喷气式飞机可能有助于促进早期宇宙中种子黑洞的生长,因此对无线电高红色高速公A的观察对于理解早期超级质量黑洞的生长和演变至关重要。在这里,我们报告X射线明亮$ Z = 5.5 $ Quasar的无线电属性,SRGE J170245.3+130104(J1702+1301)。我们的高分辨率无线电图像在J1702+1301的光学位置显示了无线电图像,而另一个无线电组件也以$ \ sim $ 23.5 \ arcsec \在西南部检测到。我们的分析表明,该西南组件与$ z \约0.677 $的前景星系相关联,该星系与低频低分辨率无线电图像中的J1702+1301混合在一起。从这个前景来源删除了污染后,我们将J1702+1301的无线电响度重新计算为$ r> $ 1100,与Blazars一致。 J1702+1301在0.15和5 GHz之间表现出平坦的无线电光谱($α= -0.17 \ pm 0.05 $,$ s \ proptoν^α$);在5 GHz上方,它显示了频谱的上升形状,光谱索引$α^{8.2} _ {4.7} $似乎与通量密度的变化相关:在突发状态,$α^{8.2} _ {4.7} _ {4.7} $变得更大。 J1702+1301在源的休息框中显示了从几周到几年的时间尺度上显示不同的无线电变异性。这些无线电特性,包括高无线电响度,频谱的上升和快速变化,倾向于将其作为大型。

Jets may have contributed to promoting the growth of seed black holes in the early Universe, and thus observations of radio-loud high-redshift quasars are crucial to understanding the growth and evolution of the early supermassive black holes. Here we report the radio properties of an X-ray bright $z=5.5$ quasar, SRGE J170245.3+130104 (J1702+1301). Our high-resolution radio images reveal the radio counterpart at the optical position of J1702+1301, while another radio component is also detected at $\sim$23.5\arcsec\ to the southwest. Our analysis suggests that this southwest component is associated with a foreground galaxy at $z\approx 0.677$, which is mixed with J1702+1301 in low-frequency low-resolution radio images. After removing the contamination from this foreground source, we recalculated the radio loudness of J1702+1301 to be $R>$1100, consistent with those of blazars. J1702+1301 exhibits a flat radio spectrum ($α= -0.17 \pm 0.05$, $S \propto ν^α$) between 0.15 and 5 GHz; above 5 GHz, it shows a rising spectrum shape, and the spectral index $α^{8.2}_{4.7}$ appears to be correlated with the variation of the flux density: in burst states, $α^{8.2}_{4.7}$ becomes larger. J1702+1301 displays distinct radio variability on timescales from weeks to years in the source's rest frame. These radio properties, including high radio loudness, rising spectrum, and rapid variability, tend to support it as a blazar.

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