论文标题

NGC〜5548中的超级质量黑洞和宽线区域:五季混响映射的结果

Supermassive Black Hole and Broad-line Region in NGC~5548: Results from Five-season Reverberation Mapping

论文作者

Lu, Kai-Xing, Bai, Jin-Ming, Wang, Jian-Min, Hu, Chen, Li, Yan-Rong, Du, Pu, Xiao, Ming, Feng, Hai-Cheng, Li, Sha-Sha, Wang, Jian-Guo, Zhang, Zhi-Xiang, Huang, Ying-Ke

论文摘要

NGC 5548是使用Lijiang 2.4〜M望远镜选择进行长期光谱监测的活性银河核(AGN)之一,旨在研究宽线区域(BLR)的起源和演变,准确地测量了超级武装黑色孔(SMBHS)的质量,并了解AGN和AGN和AGN的质量。我们已经对NGC〜5548进行了五个季节的观察,中位抽样间隔范围为1.25至3天。减去宿主星系星光污染后,测量5100〜连续元素和宽发射线的光曲线。在每个季节获得相对于5100〜的连续性,在宽度{\ sc ii},he〜 {\ sc i},h $γ$和H $β$线的时间滞后,在五个季节中获得了5100〜连续的时间,并且它们在五个季节中的平均时间滞后分别为0.69,4.66,4.66,4.60,8.43天,8.43天。 H $γ$和H $β$速度分辨的滞后档案在2015、2018、2019和2021季节是构造的,2015年在2015年发现了``M形''结构,但在2018年后消失。我们的五个季节的回荡映射(RM)产生了一个平均的Viral Smbh smbh Mass, $ m_ \ bullet/10^7m_ \ odot = 14.22 $,小标准偏差为$ 1.89 $。通过结合前18个RM运动和我们针对NGC〜5548的五个赛季运动,我们发现BLR规模的变化与光学发光度之间存在时间滞后3.5〜。此外,我们还构建了NGC〜5548的BLR半径$ - $ luminusity关系和病毒关系。

NGC 5548 is one of the active galactic nuclei (AGN) selected for our long-term spectroscopic monitoring with the Lijiang 2.4~m telescope, aiming at investigating the origin and evolution of the broad-line regions (BLRs), accurately measuring the mass of the supermassive black holes (SMBHs), and understanding structure and evolution of the AGN. We have performed five-season observations for NGC~5548 with the median sampling interval ranging from 1.25 to 3 days. The light curves of the 5100~Å continuum and broad emission lines are measured after subtracting contamination of the host galaxy starlight. The time lags of the broad He~{\sc ii}, He~{\sc i}, H$γ$, and H$β$ lines with respect to the 5100~Å continuum are obtained for each season and their mean time lags over the five seasons are 0.69, 4.66, 4.60, 8.43 days, respectively. The H$γ$ and H$β$ velocity-resolved lag profiles in the seasons of 2015, 2018, 2019, and 2021 are constructed, from which an ``M-shaped'' structure is found in 2015 but disappears after 2018. Our five-season reverberation mapping (RM) yields an averaged virial SMBH mass of $M_\bullet/10^7M_\odot=14.22$, with a small standard deviation of $1.89$. By combining the previous 18 RM campaigns and our five-season campaign for NGC~5548, we find that there exists a time lag of 3.5~years between the changes in the BLR size and optical luminosity. In addition, we also construct the BLR radius$-$luminosity relation and the virial relation for NGC~5548.

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