论文标题

Sloan数字天空调查的高红移极端变异性多上段光谱

High-redshift Extreme Variability Quasars from Sloan Digital Sky Survey Multi-Epoch Spectroscopy

论文作者

Guo, Hengxiao, Peng, Jiacheng, Zhang, Kaiwen, Burke, Colin J., Liu, Xin, Sun, Mouyuan, Wang, Shu, Kong, Minzhi, Sheng, Zhenfeng, Wang, Tinggui, He, Zhicheng, Gu, Minfeng

论文摘要

我们使用Sloan Digital Sky Survey的第十六个数据发布中的重复光谱对高还原($ z> $ 1.5)的高速度($ z> $ 1.5)进行了系统搜索,该光谱在观察到的帧中提供了一个基线,最高为$ \ sim $ 18 yrs。我们编译了348 EVQ的样本,其静止框架1450埃斯特罗姆的最大连续性可变性超过100%(即$δ$ v $ \ equiv $(最大$ - $ - $ - $ - $ - $ min)/平均$> $ 1)。 EVQ显示了一系列排放线的可变性,其中包括23条我们的红移范围中的至少一条线消失在可检测性以下,然后可以将其视为类似于低红移更换外观的类星体(CLQ)。正常的EVQ和CLQ的差异谱和Eddington比率意味着它们是具有类似的固有可变性机制的物理种群,作为正常性能的连续分布的尾巴EVQ中C IV的抗呼吸(即随着发光度的增加,线宽度增加),并发现除$ \ sim $ 0.4 $ 0.4 DEX dex系统不确定性外,单个上流c IV病毒黑洞质量估计值,额外的散布$ \ sim $ 0.3 DEX将通过极端可变性引入。

We perform a systematic search for high-redshift ($z >$ 1.5) extreme variability quasars (EVQs) using repeat spectra from the Sixteenth Data Release of Sloan Digital Sky Survey, which provides a baseline spanning up to $\sim$18 yrs in the observed frame. We compile a sample of 348 EVQs with a maximum continuum variability at rest frame 1450 Angstrom of more than 100% (i.e., $δ$V $\equiv$ (Max$-$Min)/Mean $>$1). The EVQs show a range of emission line variability, including 23 where at least one line in our redshift range disappears below detectability, which can then be seen as analogous to low-redshift changing-look quasars (CLQs)". Importantly, spurious CLQs caused by SDSS problematic spectral flux calibration, e.g., fiber drop issue, have been rejected. The similar properties (e.g., continuum/line, difference-composite spectra and Eddington ratio) of normal EVQs and CLQs, implies that they are basically the same physical population with analogous intrinsic variability mechanisms, as a tail of a continuous distribution of normal quasar properties. In addition, we find no reliable evidence ($\lesssim$ 1$σ$) to support that the CLQs are a subset of EVQs with less efficient accretion. Finally, we also confirm the anti-breathing of C IV (i.e., line width increases as luminosity increases) in EVQs, and find that in addition to $\sim$ 0.4 dex systematic uncertainty in single-epoch C IV virial black hole mass estimates, an extra scatter of $\sim$ 0.3 dex will be introduced by extreme variability.

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