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Nuclear Spiral Shocks and Induced Gas Inflows in Weak Oval Potentials

机译:核螺旋冲击和弱椭圆潜力中的气流

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摘要

Nuclear spirals are ubiquitous in galaxy centers. They exist not only in strong barred galaxies but also in galaxies without noticeable bars. We use high-resolution hydrodynamic simulations to study the properties of nuclear gas spirals driven by weak bar-like and oval potentials. The amplitude of the spirals increases toward the center by a geometric effect, readily developing into shocks at small radii even for very weak potentials. The shape of the spirals and shocks depends rather sensitively on the background shear. When shear is low, the nuclear spirals are loosely wound and the shocks are almost straight, resulting in large mass inflows toward the center. When shear is high, on the other hand, the spirals are tightly wound and the shocks are oblique, forming a circumnuclear disk through which gas flows inward at a relatively lower rate. The induced mass inflow rates are enough to power black hole accretion in various types of Seyfert galaxies as well as to drive supersonic turbulence at small radii.
机译:核螺旋在星系中心普遍存在。它们不仅存在于强禁止的星系中,也存在于没有明显的棒的星系中。我们使用高分辨率的流体动力模拟来研究由弱杆状和椭圆形电位驱动的核气体螺旋的性质。螺旋的幅度通过几何效果朝向中心增加,即使对于非常弱的电位,即使对于非常弱的电位,也可以在小半径下易于发展冲击。螺旋和冲击的形状相当敏感地剪切。当剪切低时,核螺旋松散地缠绕,震动几乎是直的,导致中心的大量流入。另一方面,当剪切很高时,螺旋紧紧缠绕并且冲击是倾斜的,形成一个环形核盘,气体以相对较低的速率向内流动。诱导的质量流入速率足以在各种类型的SEYFERT星系中发出黑洞吸收,以及在小半径下驱动超音速湍流。

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