论文标题

局部发光AGN中的电离流出:实际密度和流出速率是多少?

Ionized outflows in local luminous AGN: what are the real densities and outflow rates?

论文作者

Davies, R., Baron, D., Shimizu, T., Netzer, H., Burtscher, L., de Zeeuw, P. T., Genzel, R., Hicks, E. K. S., Koss, M., Lin, M. -Y., Lutz, D., Maciejewski, W., Müller-Sánchez, F., de Xivry, G. Orban, Ricci, C., Riffel, R., Riffel, R. A., Rosario, D., Schartmann, M., Schnorr-Müller, A., Shangguan, J., Sternberg, A., Sturm, E., Storchi-Bergmann, T., Tacconi, L., Veilleux, S.

论文摘要

我们报告了电子密度的确定及其对流出质量和速率的影响,在中央几百个parsec中测量了11个局部发光星系。我们表明,AGN中综合线发射的峰值与全身速度显着抵消,因为恒星吸收特征所追踪,表明该轮廓由流出主导。相比之下,匹配的无活跃星系的特征是全身峰和较弱的流出翼。我们提出了这些AGN中电子密度的三个独立估计,讨论了不同方法的优点。源自[SII]双线的电子密度明显低于在过去十年中使用Auroral和transaroral线开发的方法,以及基于电离参数的最近引入的方法。原因是,对于由AGN进行的气体,大部分[SII]发射出现在一个延伸的部分离子化区域中,其中隐式假设电子密度追踪氢密度无效。我们提出了处理这种情况的方法,并得出了离子化气体的相关流量,该离子气体在0.001---0.5 m $ _ {\ odot} $ yr $^{ - 1} $的范围内。我们将这些流出速率与文献中的$ \ dot {m} _ {out} $与$ l_ {agn} $之间的关系进行比较,并认为可能需要修改并朝着较低的质量流出率进行修改。

We report on the determination of electron densities, and their impact on the outflow masses and rates, measured in the central few hundred parsecs of 11 local luminous active galaxies. We show that the peak of the integrated line emission in the AGN is significantly offset from the systemic velocity as traced by the stellar absorption features, indicating that the profiles are dominated by outflow. In contrast, matched inactive galaxies are characterised by a systemic peak and weaker outflow wing. We present three independent estimates of the electron density in these AGN, discussing the merits of the different methods. The electron density derived from the [SII] doublet is significantly lower than than that found with a method developed in the last decade using auroral and transauroral lines, as well as a recently introduced method based on the ionization parameter. The reason is that, for gas photoionized by an AGN, much of the [SII] emission arises in an extended partially ionized zone where the implicit assumption that the electron density traces the hydrogen density is invalid. We propose ways to deal with this situation and we derive the associated outflow rates for ionized gas, which are in the range 0.001--0.5 M$_{\odot}$yr$^{-1}$ for our AGN sample. We compare these outflow rates to the relation between $\dot{M}_{out}$ and $L_{AGN}$ in the literature, and argue that it may need to be modified and rescaled towards lower mass outflow rates.

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