论文标题
附近类星体的电离流出与宿主星系的耦合很差
Ionized Outflows in Nearby Quasars are Poorly Coupled to their Host Galaxies
论文作者
论文摘要
我们分析了九个低红移(z <0.1)palomar-green quasar宿主星系的多单位光谱探索者观察,以研究温暖,电离星际介质的空间分布和运动学,目的是搜索和限制活跃的银河系核(Agn)的效率(AGN)进给。将明亮的AGN与星光和阳离子发射分开后,我们使用像素,KPC尺度诊断来确定线发射的基本激发机制,并测量窄线区域(NLR)的运动学来估计电离量产的物理性质。 NLR的径向尺寸与AGN光度相关,达到$ \ sim 5 \,$ kpc及以后的尺度。 NLR的几何形状由投影的双子结构很好地代表,这表明AGN辐射最好通过电离锥体逃脱。我们发现增强的速度分散剂($ \ sim 100 \,$ km $ \,$ s $^{ - 1} $)由H $α$发射线在电离锥中的本地化区域中所追踪。将这些运动学特征解释为AGN驱动的离子气体流出与主机星系星际培养基之间相互作用的签名,我们得出$ \ sim 0.008-1.6 \,m_ \ odot \,$ yr $^,$ yr $^{ - 1} $ and Kinetic Intion率的质量流出速率\,$ erg $ \,$ s $^{ - 1} $,其产生极低的耦合效率$ \ lyseSim 10^{ - 3} $。这些发现增加了最近观察性的证据,表明AGN反馈在附近AGN的宿主星系中高度无效。
We analyze Multi Unit Spectroscopic Explorer observations of nine low-redshift (z < 0.1) Palomar-Green quasar host galaxies to investigate the spatial distribution and kinematics of the warm, ionized interstellar medium, with the goal of searching for and constraining the efficiency of active galactic nucleus (AGN) feedback. After separating the bright AGN from the starlight and nebular emission, we use pixel-wise, kpc-scale diagnostics to determine the underlying excitation mechanism of the line emission, and we measure the kinematics of the narrow-line region (NLR) to estimate the physical properties of the ionized outflows. The radial size of the NLR correlates with the AGN luminosity, reaching scales of $\sim 5\,$kpc and beyond. The geometry of the NLR is well-represented by a projected biconical structure, suggesting that the AGN radiation preferably escapes through the ionization cone. We find enhanced velocity dispersions ($\sim 100\,$km$\,$s$^{-1}$) traced by the H$α$ emission line in localized zones within the ionization cones. Interpreting these kinematic features as signatures of interaction between an AGN-driven ionized gas outflow and the host galaxy interstellar medium, we derive mass outflow rates of $\sim 0.008-1.6\, M_\odot \,$yr$^{-1}$ and kinetic injection rates of $\sim 10^{39}-10^{42} \,$erg$\,$s$^{-1}$, which yield extremely low coupling efficiencies of $\lesssim 10^{-3}$. These findings add to the growing body of recent observational evidence that AGN feedback is highly ineffective in the host galaxies of nearby AGNs.