论文标题

在最后的黑洞内:穿刺和被困的表面动力学

Inside the Final Black Hole: Puncture and Trapped Surface Dynamics

论文作者

Evans, Christopher, Ferguson, Deborah, Khamesra, Bhavesh, Laguna, Pablo, Shoemaker, Deirdre

论文摘要

黑洞二进制文件的数值模拟中一种流行的方法是将黑洞建模为时空结构中的穿刺。黑洞穿刺的位置和特性是用明显的视野跟踪的,即最外面的外部捕获表面(MOTS)。当孔彼此接近时,突然出现了一个明显的视野,吞没了两个黑洞并发出合并的信号。共同的明显范围的演变及其与重力波发射的联系已通过动态范围的框架进行了详细研究。我们介绍了最终黑洞内部MOTS及其穿刺动力的研究。该研究的重点是针对各种初始分离和质量比的正面合并。我们发现MOTS在大多数参数空间中相交。我们表明,对于那些不这样做的情况,这是由于研究中使用的移动穿刺仪条件的奇异性避免性能。尽管我们无法执行持续时间足够长以显示穿刺的最终命运的演变,但我们的结果表明MOTS总是相交的,并且在后期,它们的重叠仅是部分的。结果,MOTS内部的穿刺虽然彼此足够近以有效地作为单一穿刺,但不要合并。

A popular approach in numerical simulations of black hole binaries is to model black holes as punctures in the fabric of spacetime. The location and the properties of the black hole punctures are tracked with apparent horizons, namely outermost marginally outer trapped surfaces (MOTSs). As the holes approach each other, a common apparent horizon suddenly appears, engulfing the two black holes and signaling the merger. The evolution of common apparent horizons and their connection with gravitational wave emission have been studied in detail with the framework of dynamical horizons. We present a study of the dynamics of the MOTSs and their punctures in the interior of the final black hole. The study focuses on head-on mergers for various initial separations and mass ratios. We find that MOTSs intersect for most of the parameter space. We show that for those situations in which they do not, it is because of the singularity avoidance property of the moving puncture gauge condition used in the study. Although we are unable to carry out evolutions that last long enough to show the ultimate fate of the punctures, our results suggest that MOTSs always intersect and that at late times their overlap is only partial. As a consequence, the punctures inside the MOTSs, although close enough to each other to act effectively as a single puncture, do not merge.

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