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Dynamics of a Massive Black Hole at the Center of a Dense Stellar System

机译:密集恒星系统中心的大质量黑洞的动力学

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摘要

We develop a simple physical model to describe the dynamics of a massive pointlike object, such as a black hole, near the center of a dense stellar system. It is shown that the total force on this body can be separated into two independent parts, one of which is the slowly varying influence of the aggregate stellar system, and the other being the rapidly fluctuating stochastic force due to discrete encounters with individual stars. For the particular example of a stellar system distributed according to a Plummer model, it is shown that the motion of the black hole is then similar to that of a Brownian particle in a harmonic potential, and we analyze its dynamics using an approach akin to Langevin's solution of the Brownian motion problem. The equations are solved to obtain the average values, time autocorrelation functions, and probability distributions of the black hole's position and velocity. By comparing these results with N-body simulations, we demonstrate that this model provides a very good statistical description of the actual black hole dynamics. As an application of our model, we use our results to derive a lower limit on the mass of the black hole Sgr A* in the Galactic center.
机译:我们开发了一个简单的物理模型来描述密集的恒星系统中心附近的大型点状物体(例如黑洞)的动力学。结果表明,该物体上的总力可以分为两个独立的部分,其中一个是聚集星系系统的缓慢变化的影响,另一个是由于与单个恒星的离散相遇而引起的快速波动的随机力。对于根据Plummer模型分布的恒星系统的特定示例,表明黑洞的运动类似于谐波势中的布朗粒子的运动,并且我们使用类似于Langevin的方法来分析其动力学。解决布朗运动问题。对方程进行求解,以获得平均值,时间自相关函数以及黑洞位置和速度的概率分布。通过将这些结果与N体仿真进行比较,我们证明了该模型为实际黑洞动力学提供了非常好的统计描述。作为模型的应用,我们使用我们的结果得出银河系中心黑洞Sgr A *的质量的下限。

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