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Black holes in a box: Toward the numerical evolution of black holes in AdS space-times

机译:盒子中的黑洞:实现AdS时空中黑洞的数值演化

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摘要

The evolution of black holes in “confining boxes” is interesting for a number of reasons, particularly because it mimics the global structure of anti–de Sitter geometries. These are nonglobally hyperbolic space-times and the Cauchy problem may only be well defined if the initial data are supplemented by boundary conditions at the timelike conformal boundary. Here, we explore the active role that boundary conditions play in the evolution of a bulk black hole system, by imprisoning a black hole binary in a box with mirrorlike boundary conditions. We are able to follow the post-merger dynamics for up to two reflections off the boundary of the gravitational radiation produced in the merger. We estimate that about 15% of the radiation energy is absorbed by the black hole per interaction, whereas transfer of angular momentum from the radiation to the black hole is observed only in the first interaction. We discuss the possible role of superradiant scattering for this result. Unlike the studies with outgoing boundary conditions, both of the Newman-Penrose scalars Ψ4 and Ψ0 are nontrivial in our setup, and we show that the numerical data verifies the expected relations between them.
机译:由于许多原因,“限制盒”中黑洞的演变很有趣,特别是因为它模仿了反塞特几何的整体结构。这些是非全局双曲时空,只有在初始数据由类似时间的共形边界处的边界条件补充时,柯西问题才能得到很好的定义。在这里,我们通过将黑洞二进制数囚禁在具有类似镜面边界条件的盒子中,探索边界条件在体黑洞系统演化中的积极作用。我们能够遵循合并后的动态,在合并中产生的重力辐射的边界外最多进行两次反射。我们估计每次相互作用中黑洞吸收约15%的辐射能量,而仅在第一次相互作用中观察到角动量从辐射到黑洞的转移。我们讨论了超辐射散射对于此结果的可能作用。与对边界条件进行研究不同,Newman-Penrose标量Ψ4和Ψ0在我们的设置中都是不平凡的,并且我们证明了数值数据验证了它们之间的预期关系。

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