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Cosmological black holes: A black hole in the Einstein-de Sitter universe

机译:宇宙学黑洞:爱因斯坦·德·西特宇宙中的黑洞

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As an example of a dynamical cosmological black hole, a spacetime that describes an expanding black hole in the asymptotic background of the Einstein-de Sitter universe is constructed. The black hole is primordial in the sense that it forms ab initio with the big bang singularity and its expanding event horizon is represented by a conformal Killing horizon. The metric representing the black hole spacetime is obtained by applying a time dependent conformal transformation on the Schwarzschild metric, such that the result is an exact solution with a matter content described by a two-fluid source. Physical quantities such as the surface gravity and other effects like perihelion precession, light bending and circular orbits are studied in this spacetime and compared to their counterparts in the gravitational field of the isolated Schwarzschild black hole. No changes in the structure of null geodesics are recorded, but significant differences are obtained for timelike geodesics, particularly an increase in the perihelion precession and the non-existence of circular timelike orbits. The solution is expressed in the Newman-Penrose formalism.
机译:作为动态宇宙学黑洞的一个示例,构造了一个时空,该时空描述了爱因斯坦·德·西特宇宙的渐近背景中膨胀的黑洞。黑洞是原始的,从某种意义上说,它是从头开始具有大爆炸奇点,并且其扩展的事件范围由保形的Killing范围表示。表示黑洞时空的度量是通过对Schwarzschild度量应用随时间变化的保形变换而获得的,因此结果是具有双流体源描述的物质含量的精确解。在此时空中研究了物理量(例如表面重力)和其他影响(如近日点进动,轻微弯曲和圆形轨道),并与孤立的Schwarzschild黑洞的重力场中的物理量进行了比较。没有记录到零距离大地测量结构的变化,但是对于类似时间的大地测量得到了显着的差异,特别是近日点进动的增加和不存在圆形的类似时间的轨道。解决方案以纽曼·彭罗斯(Newman-Penrose)形式主义表达。

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