论文标题

主动银河核反馈对中央星系耗竭和淬火的影响

Effects of Active Galactic Nucleus Feedback on Cold Gas Depletion and Quenching of Central Galaxies

论文作者

Ma, Wenlin, Liu, Kexin, Guo, Hong, Cui, Weiguang, Jones, Michael G., Wang, Jing, Zhang, Le, Dave, Romeel

论文摘要

我们研究了活跃的银河核(AGN)反馈对星系冷气含量的影响,并在三个Illustris,Illustristng和Simba的三个流体动力学模拟中与星系淬灭的联系。通过与观察到的中央星系中观察到的原子和分子中性氢测量值进行比较,我们发现插图过度预测了恒星形成星系中的冷气质量,并显着将其用于淬火星系的预测不足。 Illustristng在此比较中的表现要比Illustris表现更好,但是与观测值相比,淬火星系保留了过多的冷气。 Simba通过耗尽全球冷气储存量来表现出与观测的良好一致性。我们发现,Illustristng中的差异是由于其微弱的动力学反馈引起的,该反馈只能将冷气从内盘重新分配到外部区域并降低内部冷气密度。当只有恒星磁盘中的冷气被认为推断恒星形成率时,它与观察结果一致。从冷气管对黑洞质量和爱丁顿比率的依赖性,我们发现黑洞生长过程中的累积能量释放是冷气耗尽的主要原因,因此是银河系淬灭的原因。我们进一步测量了Illustristng高分辨率运行的1 kpc($σ_1$)之内的中央恒星表面密度,并找到$σ_1$和黑洞质量之间的紧密相关性。这表明,观察到的以$σ_1$为$σ_1$的冷气质量的趋势也反映了黑洞的生长。

We investigate the influence of active galactic nucleus (AGN) feedback on the galaxy cold gas content and its connection to galaxy quenching in three hydrodynamical simulations of Illustris, IllustrisTNG and SIMBA. By comparing to the observed atomic and molecular neutral hydrogen measurements for central galaxies, we find that Illustris over-predicts the cold gas masses in star-forming galaxies and significantly under-predicts them for quenched galaxies. IllustrisTNG performs better in this comparison than Illustris, but quenched galaxies retain too much cold gas compared with observations. SIMBA shows good agreement with observations, by depleting the global cold gas reservoir for quenched galaxies. We find that the discrepancies in IllustrisTNG are caused by its weak kinetic AGN feedback that only redistributes the cold gas from the inner disks to the outer regions and reduces the inner cold gas densities. It agrees with observations much better when only the cold gas within the stellar disk is considered to infer the star formation rates. From dependences of cold gas reservoir on the black hole mass and Eddington ratio, we find that the cumulative energy release during the black hole growth is the dominant reason for the cold gas depletion and thus the galaxy quenching. We further measure the central stellar surface density within 1 kpc ($Σ_1$) for the high-resolution run of IllustrisTNG and find a tight correlation between $Σ_1$ and black hole mass. It suggests that the observed decreasing trend of cold gas mass with $Σ_1$ is also a reflection of the black hole growth.

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