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Destruction of the central black hole gas reservoir through head-on galaxy collisions

机译:通过头戴式碰撞摧毁中央黑洞气体储层

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摘要

A massive black hole exists in almost every galaxy. Black holes occasionally radiate a vast amount of light by releasing gravitational energy of accreting gas with a cumulative active period of only a few 10(8) yr, the so-called duty cycle of the active galactic nuclei. Many galaxies today host a starving massive black hole. Although galaxy collisions have been thought to enhance nucleus activity(1,2), the origin of the duty cycle, especially the shutdown process, is still a critical issue(3). Here, we show that galaxy collisions are also capable of suppressing black hole fuelling, by using an analytic model and three-dimensional hydrodynamic simulations and by applying the well-determined parameter sets for the galactic collision in the Andromeda galaxy(4,5). Our models demonstrate that a central collision of galaxies can strip the torus-shaped gas surrounding the massive black hole, the putative fuelling source. The derived condition for switching off the black hole fuelling indicates that a notable fraction of currently bright nuclei can become inactive, which is reminiscent of the fading or dying active nucleus phenomena(6-9) that are associated with galaxy merging events. Galaxy collisions may therefore be responsible for both switching off and turning on the nucleus activity, depending on the collision orbit (head-on or far-off-centre).
机译:几乎每个星系都存在巨大的黑洞。黑洞偶尔通过仅累积的气体的引力能量释放大量的光,其累积活性期仅为几(8)年,所谓的活性银核的占空比。许多星系今天主持了一个饥饿的巨大黑洞。虽然已经被认为是增强核心活动(1,2),但占空比,尤其是关闭过程的起源仍然是一个关键问题(3)。在这里,我们表明星系碰撞还能够通过使用分析模型和三维流体动力模拟来抑制黑洞燃料,并通过应用于Andromeda Galaxy(4,5)中的银河碰撞的富定参数集。我们的模型表明,星系的中央碰撞可以围绕围绕大规模黑洞的圆环形气体,推定的燃料源。用于切断黑洞燃料的衍生条件表明当前亮核的显着分数可以变为不活性,这使得与星系合并事件相关联的衰落或染色活性核现象(6-9)。因此,基于碰撞轨道(头部或远离中心),Galaxy碰撞可能负责接通和接通核活动。

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  • 来源
    《Nature Astronomy》 |2021年第5期|478-484a1-a6|共13页
  • 作者单位

    Univ Tokyo Informat Technol Ctr Kashiwa Chiba Japan;

    Univ Tsukuba Ctr Computat Sci Tsukuba Ibaraki Japan;

    Onomichi City Univ Fac Econ Management & Informat Sci Onomichi Japan|Natl Astron Observ Japan Mitaka Tokyo Japan;

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