论文标题

将微弱的活跃银河核(AGN)带到光线:大规模宇宙模拟的视图

Bringing faint active galactic nuclei (AGNs) to light: a view from large-scale cosmological simulations

论文作者

Schirra, Adrian P., Habouzit, Melanie, Klessen, Ralf S., Fornasini, Francesca, Nelson, Dylan, Pillepich, Annalisa, Anglés-Alcázar, Daniel, Davé, Romeel, Civano, Francesca

论文摘要

X射线设施的敏感性以及我们检测到未来的Athena任务以及轴心和Lynx概念任务的轻率主动银河核(AGN)的能力将提高,从而提高了我们对可以由X射线Binaries占主导地位的超级质量黑洞(BHS)的理解。我们分析了Illustris,TNG100,Eagle和Simba宇宙学模拟中微弱的AGN(L_X(2-10 KeV)<10^42 ERG/s)的种群,并发现其宿主星系的性质从一个模拟到另一个模拟而异。在Illustris和Eagle中,微弱的AGN由位于低质量星形星系中的低质量BHS提供动力。在TNG100和Simba中,它们主要与猝灭大型星系中更大的BHS相关。我们对模拟星系的X射线二元种群(XRB)进行建模,发现AGN通常在z> 2处主导了Galaxy AGN+XRB硬X射线光度,而XRBS则在z <2的某些模拟中占主导地位。 AGN还是XRB发射在星形和淬火星系中占主导地位取决于模拟。模拟中的这些差异可用于区分具有未来高分辨率X射线观测值的星系形成模型。我们将模拟微弱的AGN宿主星系的光度与观察到钱德拉的堆叠星系的观察。我们的比较表明,使用X射线建模后处理的模拟往往高估AGN+XRB X射线光度。亮度可能会受到AGN晦涩的强烈影响。一些模拟揭示了明显的AGN趋势随着恒星质量的函数(例如,大量星系中的星系光度下降),这在观察结果中尚不明显。

The sensitivity of X-ray facilities and our ability to detect fainter active galactic nuclei (AGNs) will increase with the upcoming Athena mission and the AXIS and Lynx concept missions, thus improving our understanding of supermassive black holes (BHs) in a luminosity regime that can be dominated by X-ray binaries. We analyze the population of faint AGN (L_x (2-10 keV) < 10^42 erg/s) in the Illustris, TNG100, EAGLE, and SIMBA cosmological simulations, and find that the properties of their host galaxies vary from one simulation to another. In Illustris and EAGLE, faint AGN are powered by low-mass BHs located in low-mass star-forming galaxies. In TNG100 and SIMBA, they are mostly associated with more massive BHs in quenched massive galaxies. We model the X-ray binary populations (XRB) of the simulated galaxies, and find that AGN often dominate the galaxy AGN+XRB hard X-ray luminosity at z>2, while XRBs dominate in some simulations at z<2. Whether the AGN or XRB emission dominates in star-forming and quenched galaxies depends on the simulations. These differences in simulations can be used to discriminate between galaxy formation models with future high-resolution X-ray observations. We compare the luminosity of simulated faint AGN host galaxies to observations of stacked galaxies from Chandra. Our comparison indicates that the simulations post-processed with our X-ray modeling tend to overestimate the AGN+XRB X-ray luminosity; luminosity that can be strongly affected by AGN obscuration. Some simulations reveal clear AGN trends as a function of stellar mass (e.g., galaxy luminosity drop in massive galaxies), which are not apparent in the observations.

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