论文标题
量化无线电AGN中的酷ISM:银河合并和相互作用的延迟重新触发的证据
Quantifying the cool ISM in radio AGNs: evidence for late-time re-triggering by galaxy mergers and interactions
论文作者
论文摘要
我们使用当地宇宙中强大无线电AGN的完整2JY样品(0.05 <z <0.7)的深度HERSCHEL观察来探测其凉爽的星际介质(ISM)含量(ISM)内容和星形形成特性,并将其与附近发光Agn和Quiescent Galaxies的其他样品进行比较。这使我们能够研究触发和反馈机制。我们发现,样品中强射线星系(SLRG)的尘埃量与无线电定价类星体相似,并且它们的中位数灰尘质量(mdust = 2 x 10^7 msun)增强了一个因子〜200,而与非静态的非椭圆形相比,相比之下,但相对于当地的超级lum虫(Ulrgs Ulilrared Galaxies)(〜16)较低。除了在光学图像中的合并特征的令人信服的证据外,我们样本中的SLRG还显示出相对较高的星形形成效率,尽管事实上许多人都低于星形形成星系的主序列。总之,这些结果表明,我们的大多数SLRG是由相对较小的气体含量重新触发的。与SLRG相比,具有弱光学发射线(WLRG)和边缘漆黑的无线电飞机(Fris)的无线电AGN既具有较低的冷却ISM质量和恒星形成速率(以> 30的倍数),这与由不同机制(例如,直接吸收热气体)所增强。
We use deep Herschel observations of the complete 2Jy sample of powerful radio AGNs in the local universe (0.05 < z < 0.7) to probe their cool interstellar medium (ISM) contents and star-forming properties, comparing them against other samples of nearby luminous AGNs and quiescent galaxies. This allows us to investigate triggering and feedback mechanisms. We find that the dust masses of the strong-line radio galaxies (SLRGs) in our sample are similar to those of radio-quiet quasars, and that their median dust mass (Mdust = 2 x 10^7 Msun) is enhanced by a factor ~200 compared to that of non-AGN ellipticals, but lower by a factor ~16 relative to that of local ultra-luminous infrared galaxies (UILRGs). Along with compelling evidence for merger signatures in optical images, the SLRGs in our sample also show relatively high star-formation efficiencies, despite the fact that many of them fall below the main sequence for star forming galaxies. Together, these results suggest that most of our SLRGs have been re-triggered by late-time mergers that are relatively minor in terms of their gas contents. In comparison with the SLRGs, the radio AGNs with weak optical emission lines (WLRGs) and edge-darkened radio jets (FRIs) have both lower cool ISM masses and star-formation rates (by a factor of >30), consistent with being fuelled by a different mechanism (e.g. the direct accretion of hot gas).