论文标题

双面主导的积聚流到种子黑孔中

Biconical-dominated Accretion Flow onto Seed Black Holes in a Hyper-accretion Regime

论文作者

Park, KwangHo, Wise, John H., Bogdanović, Tamara, Ricotti, Massimo

论文摘要

当气体流入速率到黑洞(BH)如此之高以至于辐射反馈无法逆转积聚流动时,就会发生过度接种。这种极端过程是早期宇宙中种子BHS快速生长的有前途的机制,该机制可以解释由十亿太阳能BHS提供支持的高红移类星体。在理论模型中,球形对称性通常用于超伴流流。但是,尚未解决与BH增长相对应的时间尺度上此类结构的可持续性。在这里,我们表明,来自BH的电离辐射与非均匀吸积流之间的随机相互作用会导致BH周围的旋转气盘形成。一旦形成磁盘,BH向BH的供应通过垂直于磁盘的两种主导的积聚流量出现,从而避免了磁盘的离心屏障。双向主导的积聚从相对方向的BH附近碰撞,向BH提供高密度的低角度动量气体,而大多数具有不可忽略的角动量的气体偏向于旋转支持的旋转旋转的溢出的DECORTION磁盘。随着从双色流动转移到磁盘的质量更多的质量,磁盘逐渐得到增强,来自磁盘的某些流出气体通过子午结构将磁盘的某些流出气体重定向到双色调积聚渠道。双轴为主导的积聚流量和法定磁盘的轴对称水动力结构继续为BH提供不间断的高密度气体流动。

Hyperaccretion occurs when the gas inflow rate onto a black hole (BH) is so high that the radiative feedback cannot reverse the accretion flow. This extreme process is a promising mechanism for the rapid growth of seed BHs in the early universe, which can explain high-redshift quasars powered by billion solar mass BHs. In theoretical models, spherical symmetry is commonly adopted for hyperaccretion flows; however, the sustainability of such structures on timescales corresponding to the BH growth has not been addressed yet. Here we show that stochastic interactions between the ionizing radiation from the BH and nonuniform accretion flow can lead to the formation of a rotating gas disk around the BH. Once the disk forms, the supply of gas to the BH preferentially occurs via biconical-dominated accretion flow perpendicular to the disk, avoiding the centrifugal barrier of the disk. Biconical-dominated accretion flows from opposite directions collide in the vicinity of the BH supplying high-density, low angular momentum gas to the BH, whereas most of the gas with nonnegligible angular momentum is deflected to the rotationally supported outflowing decretion disk. The disk becomes reinforced progressively as more mass from the biconical flow transfers to the disk and some of the outflowing gas from the disk is redirected to the biconical accretion funnels through a meridional structure. This axisymmetric hydrodynamic structure of a biconical-dominated accretion flow and decretion disk continues to provide uninterrupted flow of high-density gas to the BH.

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