论文标题

在无块状星系中发现隐藏的宽线AGN:SDSS的Keck NIR光谱观测J085153.64+392611.76

The Discovery of a Hidden Broad Line AGN in a Bulgeless Galaxy: Keck NIR Spectroscopic Observations of SDSS J085153.64+392611.76

论文作者

Bohn, Thomas, Canalizo, Gabriela, Satyapal, Shobita, Pfeifle, Ryan W.

论文摘要

我们报告发现SDSS J085153.64+392611.76中的一个埋藏活跃的超级黑洞,一个无块状Seyfert 2(SY2)Galaxy。凯克(Keck)近红外的观察结果显示了一个隐藏的宽线区域,从而可以在黑洞质量和凸起组件上都放置强大的限制。使用病毒质量估计器,我们获得了log的黑洞质量($ m _ {\ rm {bh}}/m _ {\ odot} $)= $ 6.78 \ pm 0.50 $。这是唯一在一个无块状星系中托管的SY2 AGN之一,具有病毒黑洞质量估计,可以在黑洞种子种群的地层场景上提供重要的限制。缺乏凸起的成分表明,SMBH可能是由独立于主要合并的世俗过程引起的。在没有可检测到的凸起组件的情况下,我们发现$ m _ {\ rm {bh}} $ - $ m _ {\ rm {stellar}} $的关系比$ m _ {\ rm {bh}} $ - $ m_ _ {此外,我们检测到扩展的狭窄PA $α$排放,使我们能够创建一个旋转曲线,在中央千乘积(KPC)内看到反向旋转的气体。这种反旋转的可能原因包括银河系的银河棒或伴侣银河系的飞行中断。反过来,这可能在当前AGN阶段触发了积聚到中央SMBH。

We report the discovery of a buried, active supermassive black hole in SDSS J085153.64+392611.76, a bulgeless Seyfert 2 (Sy2) galaxy. Keck near-infrared observations reveal a hidden broad line region, allowing for the rare case where strong constraints can be placed on both the black hole mass and bulge component. Using virial mass estimators, we obtain a black hole mass of log($M_{\rm{BH}}/M_{\odot}$) = $6.78 \pm 0.50$. This is one of the only Sy2 AGN hosted in a bulgeless galaxy with a virial black hole mass estimate and could provide important constraints on the formation scenarios of the black hole seed population. The lack of a bulge component suggests that the SMBH has grown quiescently, likely caused by secular processes independent of major mergers. In the absence of a detectable bulge component, we find the $M_{\rm{BH}}$ - $M_{\rm{stellar}}$ relation to be more reliable than the $M_{\rm{BH}}$ - $M_{\rm{bulge}}$ relation. In addition, we detect extended narrow Pa$α$ emission that allows us to create a rotation curve where we see counter-rotating gas within the central kiloparsec (kpc). Possible causes of this counter-rotation include a galactic bar or disruption of the inner gas by a recent fly-by of a companion galaxy. This in turn could have triggered accretion onto the central SMBH in the current AGN phase.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源