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首页> 外文期刊>International journal of modern physics, D. Gravitation, astrophysics, cosmology >DYNAMICAL EVOLUTION OF ROTATING ACCRETION USING DIFFERENT BOUNDARY CONDITIONS: STATE AFTER STABLE ACCRETION DISK CREATED
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DYNAMICAL EVOLUTION OF ROTATING ACCRETION USING DIFFERENT BOUNDARY CONDITIONS: STATE AFTER STABLE ACCRETION DISK CREATED

机译:使用不同边界条件的旋转累积的动态演化:稳定累积盘生成后的状态

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摘要

The 2D time-dependent solution of the thin and stable accretion disk with two-armed spiral shock waves in a closed binary system have been presented on the equatorial plane around the Schwarzschild black hole in Donmez (2004).2 The subject of this paper is to study the influence of two different boundary conditions, far away from a black hole called the outer boundary, on an accretion disk around the black hole during the time evolution. We have started with a stable accretion disk after the point where two-armed spiral shock waves were created (Donmez, 2004).2 The initial data which is also called the freezing boundary is used as a first boundary condition. As a second one, we use the outflow boundary condition. In both cases, the accretion disk is created and gases on the disk made closed trajectories. As a stable tori close to the black hole is created by using the first boundary, freezing condition, which has a ~10M radius where M is the mass of black hole, and the otherboundary, outflow, creates stable two-armed spiral shock waves. The last stable circular orbit around the Schwarzschild black hole for this type of accretion disk is located around 11M in the case of the freezing boundary condition. The results of these simulations show that the tori and spiral shock waves are created in each case using freezing and the outflow boundary, respectively, and it also suggests that spiral waves are a robust feature of accretion disks in binary systems, and that these spiral shocks can indeed transfer the gravitational energy to the radiation energy observed by different X-ray satellites.
机译:在Donmez(2004)的Schwarzschild黑洞周围的赤道平面上,提出了在封闭的二元系统中带有双臂螺旋激波的薄而稳定的吸积盘的二维时变解决方案.2本文的主题是研究在时间演化过程中远离黑洞(称为外边界)的两个不同边界条件对黑洞周围的吸积盘的影响。在产生两臂式螺旋冲击波之后,我们就从一个稳定的吸积盘开始(Donmez,2004)。2将初始数据(也称为冻结边界)用作第一边界条件。第二,我们使用流出边界条件。在这两种情况下,都会生成吸积盘,并且盘上的气体会形成闭合轨迹。通过使用第一个边界在接近黑洞的位置创建稳定的托里,冻结条件的半径约为10M,其中M是黑洞的质量,而另一个边界流出则产生稳定的双臂螺旋激波。在冻结边界条件下,这种吸积盘在Schwarzschild黑洞周围的最后一个稳定圆形轨道位于11M附近。这些模拟的结果表明,分别在两种情况下分别使用冻结边界和流出边界来创建托里波和螺旋激波,并且还表明螺旋波是二元系统中吸积盘的强大特征,并且这些螺旋激波确实可以将引力能量转换为不同X射线卫星观测到的辐射能量。

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