论文标题

在孤立的星系中与明确的多相ISM中的黑洞加油的模拟

Simulations of black hole fueling in isolated and merging galaxies with an explicit, multiphase ISM

论文作者

Sivasankaran, Aneesh, Blecha, Laura, Torrey, Paul, Kelley, Luke Zoltan, Bhowmick, Aklant, Vogelsberger, Mark, Losacco, Rachel, Weinberger, Rainer, Hernquist, Lars, Marinacci, Federico, Sales, Laura V., Qi, Jia

论文摘要

我们使用具有显式的多相星际培养基(ISM)的分离星系和理想化的星系合并的流体动力学模拟来研究气体流入到超大质量黑洞上。我们的模拟使用了最近开发的ISM和恒星进化模型,称为星系中的恒星和多相气体(走私)。我们实施了一种新型的超拉格朗日改进方案,该方案增加了黑洞(BHS)附近的气体质量分辨率,以准确解决气体积聚。我们在模拟中不包括黑洞反馈。我们发现走私ISM的复杂和动荡的性质会导致高度可变的BH积聚。 bh smuggle的BH增长收敛于气体质量分辨率$ \ lyssim3 \ times10^3 {\ rm m_ \ odot} $。我们表明,低分辨率模拟与超拉格朗日改进方案相结合,能够产生中央气体动力学和BH积聚速率,与均匀的高分辨率模拟非常相似。我们通过模拟星系合并进一步探索BH加油。星系之间的相互作用导致气体流向银河中心,并导致升高和爆发的恒星形成。 BHS附近的峰值密度通过数量级增加,从而增加了积聚。我们的结果支持了星系合并可以触发AGN活性的想法,尽管瞬时积聚率很大程度上取决于局部ISM。我们还表明,与使用有效的ISM状态模型方程进行的模拟相比,通过模拟进行了合并诱导的BH燃料增强水平要小得多。

We study gas inflows onto supermassive black holes using hydrodynamics simulations of isolated galaxies and idealized galaxy mergers with an explicit, multiphase interstellar medium (ISM). Our simulations use the recently developed ISM and stellar evolution model called Stars and MUltiphase Gas in GaLaxiEs (SMUGGLE). We implement a novel super-Lagrangian refinement scheme that increases the gas mass resolution in the immediate neighborhood of the black holes (BHs) to accurately resolve gas accretion. We do not include black hole feedback in our simulations. We find that the complex and turbulent nature of the SMUGGLE ISM leads to highly variable BH accretion. BH growth in SMUGGLE converges at gas mass resolutions $\lesssim3\times10^3{\rm M_\odot}$. We show that the low resolution simulations combined with the super-Lagrangian refinement scheme are able to produce central gas dynamics and BH accretion rates very similar to that of the uniform high resolution simulations. We further explore BH fueling by simulating galaxy mergers. The interaction between the galaxies causes an inflow of gas towards the galactic centres and results in elevated and bursty star formation. The peak gas densities near the BHs increase by orders of magnitude resulting in enhanced accretion. Our results support the idea that galaxy mergers can trigger AGN activity, although the instantaneous accretion rate depends strongly on the local ISM. We also show that the level of merger-induced enhancement of BH fueling predicted by the SMUGGLE model is much smaller compared to the predictions by simulations using an effective equation of state model of the ISM.

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