论文标题

反馈对$ z> 6 $ agn的可观察属性的反馈效果

Feedback effect on the observable properties of $z>6$ AGN

论文作者

Vito, Fabio, Di Mascia, Fabio, Gallerani, Simona, Zana, Tommaso, Ferrara, Andrea, Carniani, Stefano, Gilli, Roberto

论文摘要

主动银河核(AGN)反馈对超级质量黑洞(SMBH)生长,宿主星系的特性及其宇宙进化具有重大影响。我们研究了不同动力学反馈处方对AGN及其宿主星系可观察到的$ z> 6 $的可观察性能的影响,这是一组Zoom-In宇宙学模拟。我们发现,动力学反馈会降低主机星系中星际介质(ISM)的柱密度,最大为$ \ \ \ \ \ \ \ 10 $,尤其是当SMBHS达到高积聚率时($ \ of10-10-30 \,\ mathrm,\ mathrm {m_ \ odot {m_ \ odot \ odot \ \,yr \,yr^,yr^{ - 1} $)。特别是,需要动力学反馈将ISM大小扩展到$> 1 $ kpc,并匹配观察到的$ z> 6 $ agn主机星系中的气体储层尺寸。此外,它产生了无观察的视线,可以在其剩下的紫外线带中检测到AGN,其幅度与观察到的$ z> 6 $ agn一致。假定的流出几何形状在塑造高红移AGN的观察到的特性中起着重要作用。我们发现,两种几何形状比球形的几何形状偏爱复制观察到的特性,但它高估了在X射线观测中可检测到的多个AGN系统的数量。该结果表明,在宇宙学模拟中广泛使用的简单BH播种食谱产生了太多X射线可检测到的X射线$ Z = 6-7 $,从而征求采用更具身体动机的播种处方。

Active galactic nuclei (AGN) feedback has a major impact onto the supermassive black-hole (SMBH) growth, the properties of the host galaxies, and their cosmic evolution. We investigate the effects of different kinetic feedback prescriptions on the observable properties of AGN and their host galaxies at $z>6$ in a suite of zoom-in cosmological simulations. We find that kinetic feedback decreases the column density of the interstellar medium (ISM) in the host galaxy by up to a factor of $\approx10$, especially when the SMBHs reach high accretion rates ($\approx10-30\,\mathrm{M_\odot\,yr^{-1}}$). In particular, kinetic feedback is required to extend the ISM size to $>1$ kpc and match the observed sizes of the gas reservoirs in $z>6$ AGN host galaxies. Moreover, it produces unobscured lines of sight along which the AGN can be detected in the rest-frame UV band with magnitudes consistent with observed values of $z>6$ AGN. The assumed geometry of the outflow plays an important role in shaping the observed properties of high-redshift AGN. We find that a biconical geometry is favored over a spherical one to reproduce the observed properties, but it overestimates the number of multiple AGN systems detectable in X-ray observations. This result suggests that simplistic BH seeding recipes widely employed in cosmological simulations produce too many X-ray detectable multiple AGN at $z=6-7$, thus soliciting the adoption of more physically motivated seeding prescriptions.

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