论文标题

黑洞旋转设置的AGN各向异性辐射反馈

AGN anisotropic radiative feedback set by black hole spin

论文作者

Ishibashi, W.

论文摘要

我们考虑各向异性辐射对活性银河核(AGN)辐射灰尘反馈的影响。源自积聚盘的辐射图由中央黑洞(BH)旋转确定。在这里,我们分析了这种BH自旋诱导的角度依赖性如何影响辐射压力驱动流出的动力学和能量学,以及AGN的晦涩和BH积聚。此外,我们探讨了空间变化的尘埃气比对流出传播的影响。我们获得了高自旋和低自旋物体的两个不同趋势,从而在各向异性反馈和BH旋转之间提供了直接的连接。在最大旋转的情况下,强大的准球面流出可以在大尺度上传播,在所有倾斜角度,具有相当均匀的能量。相反,在零自旋的情况下,只能沿极性方向驱动较弱的双极外流。结果,高BH旋转可以从大多数方向有效清除遮盖的气体,而低BH旋转只能从极性区域中除去尘土飞扬的气体,因此还决定了整体AGN遮盖的几何形状。由于这种各向异性反馈,高BH旋转可以防止大多数方向的气体积聚(在赤道平面除外),而低BH旋转使流入可以从更广泛的方向进行流入。这可能对早期宇宙的BH增长具有重要意义。因此,由BH旋转统治的各向异性辐射尘埃反馈可能在塑造宇宙时间的AGN进化中起主要作用。

We consider the impact of anisotropic radiation on the active galactic nucleus (AGN) radiative dusty feedback. The radiation pattern originating from the accretion disc is determined by the central black hole (BH) spin. Here we analyse how such BH spin-induced angular dependence affects the dynamics and energetics of the radiation pressure-driven outflows, as well as AGN obscuration and BH accretion. In addition, we explore the effect of a spatially varying dust-to-gas ratio on the outflow propagation. We obtain two distinct trends for high-spin and low-spin objects, providing a direct connection between anisotropic feedback and BH spin. In the case of maximum spin, powerful quasi-spherical outflows can propagate on large scales, at all inclination angles with fairly uniform energetics. In contrast, in the case of zero spin, only weaker bipolar outflows can be driven in the polar directions. As a result, high BH spins can efficiently clear out the obscuring gas from most directions, whereas low BH spins can only remove dusty gas from the polar regions, hence also determining the overall AGN obscuration geometry. Due to such anisotropic feedback, high BH spins can prevent accretion of gas from most directions (except in the equatorial plane), while low BH spins allow inflows to proceed from a wider range of directions. This may have important implications for the BH growth in the early Universe. Anisotropic radiative dusty feedback, ruled by the BH spin, may thus play a major role in shaping AGN evolution over cosmic time.

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