论文标题

由活性银河核驱动的流出对星系内和周围金属的影响

The Impact of Outflows driven by Active Galactic Nuclei on Metals in and around Galaxies

论文作者

Choi, Ena, Brennan, Ryan, Somerville, Rachel S., Ostriker, Jeremiah P., Hirschmann, Michaela, Naab, Thorsten

论文摘要

星系热气候中的金属编码恒星形成的历史以及从星系中弹出金属的反馈过程。 X射线观测表明,大量星系在其气体光环中扩展了金属的分布。我们介绍了对最近高分辨率缩放模拟的大规模星系的金属性能及其气体光环的预测,其中包括活性银河核(AGN)的机械和辐射驱动的反馈。在这些模拟中,AGN发射高速流出,模仿观察到的广泛吸收线风。通过比较有和没有AGN反馈的两组仿真,我们表明我们的AGN反馈处方能够通过将集中富集的金属扩散到星系郊区,进入光晕及其他地区,从而驱动风和富集光环气体“内而外”。用AGN反馈模拟的光环的金属(铁)曲线比没有AGN反馈的斜率具有平淡的斜率,这与最近的X射线观测一致。用AGN反馈模拟的集体比例星系的预测气铁丰度为$ z {\ rm fe} = 0.23 $ $ $ $ z _ {\ rm fe,\ odot} $,$ 0.5 r_ {500} $,是没有AGN反馈的模拟中的2.5倍。在这些模拟中,AGN风对于金属层间培养基的金属富集也很重要,因为AGN驱动的风从星系中弹出的绝大多数金属最终都超出了Halo病毒半径。

Metals in the hot gaseous halos of galaxies encode the history of star formation as well as the feedback processes that eject metals from the galaxies. X-ray observations suggest that massive galaxies have extended distributions of metals in their gas halos. We present predictions for the metal properties of massive galaxies and their gaseous halos from recent high resolution zoom-in simulations that include mechanical and radiation driven feedback from Active Galactic Nuclei (AGN). In these simulations, AGN launch high-velocity outflows, mimicking observed broad absorption line winds. By comparing two sets of simulations with and without AGN feedback, we show that our prescription for AGN feedback is capable of driving winds and enriching halo gas `inside-out' by spreading centrally enriched metals to the outskirts of galaxies, into the halo and beyond. The metal (iron) profiles of halos simulated with AGN feedback have a flatter slope than those without AGN feedback, consistent with recent X-ray observations. The predicted gas iron abundance of group scale galaxies simulated with AGN feedback is $Z_{\rm Fe} = 0.23$ $Z_{\rm Fe,\odot}$ at $0.5 r_{500}$, which is 2.5 times higher than that in simulations without AGN feedback. In these simulations, AGN winds are also important for the metal enrichment of the intergalactic medium, as the vast majority of metals ejected from the galaxy by AGN-driven winds end up beyond the halo virial radius.

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