论文标题
早期型星系的热环境介质的特性,托有强大的无线电来源
Properties of the Hot Ambient Medium of Early-type Galaxies Hosting Powerful Radio Sources
论文作者
论文摘要
我们介绍了Chandra X射线观察的档案分析,该观察值附近的十二个早期类型的星系托管了无线电电源$> 10^{23} \,\ rm {w}〜\ rm {w}〜\ rm {hz}^{-1}^{ - 1} $在1.4 GHz,类似于NGC 4261的无线电源,类似光光度椭圆星系,Werner等。 2012年,NGC 4261与完整样品相比表现出异常低的中央气体熵。在NGC 4261的中央0.3 kpc中,冷却时间与自由度时间的比率($ t _ {\ rm {cool}}/t _ {\ rm ff} $)小于$ 10 $,这表明寒冷云可能会促成热环境中的燃料中的燃料中的中央区域。 NGC 4261还托管了原始样本中最强大的无线电源。因为NGC 4261可能代表一个重要的阶段,在此期间,中央KPC中的多相凝结为中央活跃的银河系核(AGN)的强大反馈所增强,我们搜索了Chandra档案,以供NGC 4261的Chandra档案。 ff} $。我们发现其中一个IC 4296展示了类似于NGC 4261的属性,包括仅存在$ r \ sim 2 $ kpc之外的单相气体和类似的中央速度分散。我们将NGC 4261和IC 4296的特性与沉淀助力的AGN反馈的流体动力模拟。在这些模拟的过程中,单相星系具有熵梯度,其熵梯度仍然与我们的观察值相似。
We present an archival analysis of Chandra X-ray observations for twelve nearby early-type galaxies hosting radio sources with radio power $>10^{23} \, \rm{W}~\rm{Hz}^{-1}$ at 1.4 GHz, similar to the radio power of the radio source in NGC 4261. Previously, in a similar analysis of eight nearby X-ray and optically-bright elliptical galaxies, Werner et al. 2012, found that NGC 4261 exhibited unusually low central gas entropy compared to the full sample. In the central 0.3 kpc of NGC 4261, the ratio of cooling time to freefall time ($t_{\rm{cool}}/t_{\rm ff}$) is less than $10$, indicating that cold clouds may be precipitating out of the hot ambient medium and providing fuel for accretion in the central region. NGC 4261 also hosts the most powerful radio source in the original sample. Because NGC 4261 may represent an important phase during which powerful feedback from a central active galactic nucleus (AGN) is fueled by multiphase condensation in the central kpc, we searched the Chandra archive for analogs to NGC 4261. We present entropy profiles of those galaxies as well as profiles of $t_{\rm{cool}}/t_{\rm ff}$. We find that one of them, IC 4296, exhibits properties similar to NGC 4261, including the presence of only single phase gas outside of $r \sim 2$ kpc and a similar central velocity dispersion. We compare the properties of NGC 4261 and IC 4296 to hydrodynamic simulations of AGN feedback fueled by precipitation. Over the course of those simulations, the single phase galaxy has an entropy gradient that remains similar to the entropy profiles inferred from our observations.