论文标题
低红移Felobal类星体的物理特性。 I.使用$ SIMBAL $对BAL流出的光谱合成分析
The Physical Properties of Low Redshift FeLoBAL Quasars. I. Spectral Synthesis Analysis of the BAL Outflows using $SimBAL$
论文作者
论文摘要
我们使用$ simbal $提出了第一次对50个低红移($ 0.66 <z <z <1.63 $)的系统研究($ 0.66 <z <z <1.63 $),它使用$ SIMBAL $,代表具有详细的吸收线谱分析的Felobalqs数量增加了5倍以上。我们发现流出量具有广泛的电离参数,$ -4 \ simsim \ log u \ log u \ lyssim 1.2 $ and浓度,$ 2.8 \ logsim \ log n \ log n \ sillsim8 \ rm [cm^{ - 3}] $。我们样本中的对象显示,felobal气体位于范围广泛的$ 0 \ logsim \ log r \ ligssim 4.4 $ [pc],尽管我们在我们的样品中找不到任何磁盘风(带有$ r \ ll0.01 $ pc)的证据。流出强度主要取决于流出速度的流出速度,在明亮或具有平坦或红色光谱能量分布的类星体中发现的流出速度更快。我们发现,样本中Felobalq的$ \ sim18 \%$具有类星体反馈所需的明显强大的外流。八个对象在光谱中显示“重叠的槽”,我们确定了11个“游荡的流出”对象,这是一类新的Felobalqs,其特征是低流量速度和位于中央发动机的$ \ log r \ log r \ log r \ log r \ log r \ log r \ log r \ log r \ simsim1 $ [PC]。游荡的流出物体中的狂热物体不会显示出辐射驱动的风的属性,这些对象可能代表Felobalqs中的不同种群。我们讨论了在类星体不同位置的流出量可能会有所不同。
We present the first systematic study of 50 low redshift ($0.66 < z < 1.63$) iron low-ionization broad absorption-line quasars (FeLoBALQs) using $SimBAL$ which represents a more than five-fold increase in the number of FeLoBALQs with detailed absorption line spectral analyses. We found the outflows have a wide range of ionization parameters, $-4\lesssim\log U\lesssim 1.2$ and densities, $2.8\lesssim\log n\lesssim8\ \rm[cm^{-3}]$. The objects in our sample showed FeLoBAL gas located at a wide range of distances $0\lesssim\log R\lesssim 4.4$ [pc], although we do not find any evidence for disk winds (with $R\ll0.01$ pc) in our sample. The outflow strength primarily depends on the outflow velocity with faster outflows found in quasars that are luminous or that have flat or redder spectral energy distributions. We found that $\sim18\%$ of the FeLoBALQs in the sample have the significantly powerful outflows needed for quasar feedback. Eight objects showed "overlapping troughs" in the spectra and we identified eleven "loitering outflow" objects, a new class of FeLoBALQs that are characterized by low outflow velocities and high column density winds located $\log R\lesssim1$ [pc] from the central engine. The FeLoBALs in loitering outflows objects do not show properties expected for radiatively driven winds and these objects may represent a distinct population among FeLoBALQs. We discuss how the potential acceleration mechanisms and the origins of the FeLoBAL winds may differ for outflows at different locations in quasars.