论文标题

当代活跃星系中的分子流和无线电反馈的功效

Molecular Flows in Contemporary Active Galaxies and the Efficacy of Radio-Mechanical Feedback

论文作者

Tamhane, Prathamesh D., McNamara, Brian R., Russell, Helen R., Edge, Alastair C., Fabian, Andrew C., Nulsen, Paul E. J., Babyk, Iurii V.

论文摘要

分子气流在以冷却炎热气氛为中心的14个集群星系(BCG)中分析。 bcgs包含$ 10^{9} -10^{11}〜\ rm m_ \ odot $的分子气体,其中大部分是由无线电喷气机和裂片移动的。将分子流量和无线电射流功率与45个活性星系中的分子流出相提并论。我们试图了解无线电,类星体和Starburst反馈在各种活动星系类型上的相对功效。 BCG中由无线电反馈提供动力的分子流量为$ \ sim $ 10--1000倍的范围$ 10--1000倍,与托有类星体核和Starbursts的当代星系相比。与类星体核相比,无线电反馈产生的流速较低,但动量较高,因为BCG中的分子气流通常为$ \ sim $ \ sim $ 10--100倍。分子气体质量和提升高度的乘积除以AGN或Starburst功率(称为举重因子的参数)分别超过了Starbursts和Quasar Nuclei,分别缩短了2至3个数量级。当活动性时,与类星体和星空风相比,无线电反馈通常在提升星系中的气体方面更有效。分子云的动能通量通常位于以下,通常低于驱动能力的百分之几。我们发现,相对于其他活跃星系,恒星形成在BCG中受到抑制,这可能是因为这些系统很少形成分子盘,这些磁盘更不受反馈不渗透,并且能够更好地促进恒星形成。

Molecular gas flows are analyzed in 14 cluster galaxies (BCGs) centered in cooling hot atmospheres. The BCGs contain $10^{9}-10^{11}~\rm M_\odot$ of molecular gas, much of which is being moved by radio jets and lobes. The molecular flows and radio jet powers are compared to molecular outflows in 45 active galaxies within $z<0.2$. We seek to understand the relative efficacy of radio, quasar, and starburst feedback over a range of active galaxy types. Molecular flows powered by radio feedback in BCGs are $\sim$10--1000 times larger in extent compared to contemporary galaxies hosting quasar nuclei and starbursts. Radio feedback yields lower flow velocities but higher momenta compared to quasar nuclei, as the molecular gas flows in BCGs are usually $\sim$10--100 times more massive. The product of the molecular gas mass and lifting altitude divided by the AGN or starburst power -- a parameter referred to as the lifting factor -- exceeds starbursts and quasar nuclei by two to three orders of magnitude, respectively. When active, radio feedback is generally more effective at lifting gas in galaxies compared to quasars and starburst winds. The kinetic energy flux of molecular clouds generally lies below and often substantially below a few percent of the driving power. We find tentatively that star formation is suppressed in BCGs relative to other active galaxies, perhaps because these systems rarely form molecular disks that are more impervious to feedback and are better able to promote star formation.

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