论文标题

从积聚旋转黑洞的非等于的反馈

Non-isotropic feedback from accreting spinning black holes

论文作者

Sala, Luca, Cenci, Elia, Capelo, Pedro R., Lupi, Alessandro, Dotti, Massimo

论文摘要

活跃的银河核(AGN)是在其宿主星系中心积聚气体中捕获的巨大黑洞(BHS)。积分质量的一部分被转化为能量并释放到周围的介质中,以松散称为AGN反馈的过程。大多数数值模拟都将AGN反馈作为子网格模型,其中能量或动量(或两者都)与附近的气体耦合。在这项工作中,我们在流体力学代码Gizmo中实现了一种新的动量驱动模型,其中大尺度的积聚是由子网格积聚盘模型介导的,并且气体颗粒在双态区域上随机踢,以模拟观察到的动力学风。可以将反馈锥的轴平行于BH周围气体的角动量或BH旋转方向平行,该方向是在积聚盘模型中自一逐一演变的。使用周环(CND)作为测试床,我们发现(i)流出的圆锥形形状总是可见的,并且微弱地取决于发射方向和孔径,从而导致可比的质量流入和流出; (ii)我们的测试之间的锥体方向也相似,并且由于与CND的相互作用在塑造流出方面起着至关重要的作用,因此它并不总是与初始值相似。 (iii)流出的速度相反,它的速度有所不同,并且很大程度上取决于与CND的相互作用。

Active galactic nuclei (AGN) are massive black holes (BHs) caught in the act of accreting gas at the centre of their host galaxies. Part of the accreting mass is converted to energy and released into the surrounding medium, in a process loosely referred to as AGN feedback. Most numerical simulations include AGN feedback as a sub-grid model, wherein energy or momentum (or both) is coupled to the nearby gas. In this work, we implement a new momentum-driven model in the hydrodynamics code GIZMO, in which accretion from large scales is mediated by a sub-grid accretion disc model, and gas particles are stochastically kicked over a bi-conical region, to mimic observed kinetic winds. The feedback cone's axis can be set either parallel to the angular momentum of the gas surrounding the BH or to the BH spin direction, which is self-consistently evolved within the accretion-disc model. Using a circumnuclear disc (CND) as a test bed, we find that (i) the conical shape of the outflow is always visible and is weakly dependent on the launching orientation and aperture, resulting in comparable mass inflows and outflows; (ii) the cone's orientation is also similar amongst our tests, and it is not always the same as the initial value, due to the interaction with the CND playing a crucial role in shaping the outflow; and (iii) the velocity of the outflow, instead, differs and strongly depends on the interplay with the CND.

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