论文标题
隐藏1型AGN中气体和星星的空间分辨运动学
Spatially Resolved Kinematics of gas and stars in hidden type 1 AGNs
论文作者
论文摘要
我们介绍了十种隐藏的1型AGN样品的空间分辨出气体和恒星运动学,以研究中央源的真实性质以及与宿主星系恒星速度分散的缩放关系。 The sample is selected from a large number of hidden type 1 AGN, which are identified based on the presence of a broad component in the \ha\ line profile (i.e., full-width-at-half-maximum $>$ $\sim$1000 \kms), while they are often mis-classified as type 2 AGN because AGN continuum and broad emission lines are weak or obscured in the optical spectral range.我们在6.5-m MMT(多个镜像望远镜)上使用了蓝色通道光谱仪以获取长期截止数据。我们仅针对两个目标检测到了宽\ hb \,但是,强宽\ ha \的存在表明这些AGN是低亮度1型AGN。我们测量了恒星连续和气体发射线的速度,速度分散和通量(即\ hb \和\ oiii),这是与中心距离的函数,其空间尺度为0.3 Arcsec Pixel $^{ - 1} $。通过\ hb \ \ oiii \追踪的空间分辨气体运动学通常与恒星运动学相似,除了检测到气体流出特征的非常中心。我们比较了亮度加权的有效恒星速度色散与黑洞质量的比较,发现这些具有相对低后孔质量的1型AGN遵循了Reverberation-Mapper-Mapper-type 1型AGN的缩放关系和更大的无活性星系。 }
We present the spatially resolved gas and stellar kinematics of a sample of ten hidden type 1 AGNs in order to investigate the true nature of the central source and the scaling relation with host galaxy stellar velocity dispersion. The sample is selected from a large number of hidden type 1 AGN, which are identified based on the presence of a broad component in the \ha\ line profile (i.e., full-width-at-half-maximum $>$ $\sim$1000 \kms), while they are often mis-classified as type 2 AGN because AGN continuum and broad emission lines are weak or obscured in the optical spectral range. We used the Blue Channel Spectrograph at the 6.5-m MMT (Multiple Mirror Telescope) to obtain long-slit data. We detected a broad \hb\ for only two targets, however, the presence of a strong broad \ha\ indicates that these AGNs are low-luminosity type 1 AGNs. We measured the velocity, velocity dispersion and flux of stellar continuum and gas emission lines (i.e., \hb\ and \oiii) as a function of distance from the center with a spatial scale of 0.3 arcsec pixel$^{-1}$. Spatially resolved gas kinematics traced by \hb\ or \oiii\ are generally similar to stellar kinematics except for the very center, where signatures of gas outflows are detected. We compare the luminosity-weighted effective stellar velocity dispersion with black hole mass, finding that these hidden type 1 AGN with relatively low back hole mass follow the scaling relation of the reverberation-mapped type 1 AGN and more massive inactive galaxies. }