English

Topology Changing Process of Coalescing Black Holes on Eguchi-Hanson Space

General Relativity and Quantum Cosmology 2013-05-29 v1 High Energy Physics - Theory

Abstract

We numerically study the event horizons of two kinds of five-dimensional coalescing black hole solutions with different asymptotic structures: the five-dimensional Kastor-Traschen solution (5DKT) and the coalescing black hole solution on Eguchi-Hanson space (CBEH). Topologies of the spatial infinity are S3{\rm S}^3 and L(2;1)=S3/Z2L(2;1)={\rm S}^3/{\mathbb Z}_2, respectively. We show that the crease sets of event horizons are topologically R1{\rm R}^1 in 5DKT and R1×S1{\rm R}^1\times {\rm S}^1 in CBEH, respectively. If we choose the time slices which respect space-time symmetry, the first contact points of the coalescing process is a point in the 5DKT case but a S1{\rm S}^1 in the CBEH case. We also find that in CBEH, time slices can be chosen so that a black ring with S1×S2{\rm S}^1\times {\rm S}^2 topology can be also formed during a certain intermediate period unlike the 5DKT.

Keywords

Cite

@article{arxiv.0906.4681,
  title  = {Topology Changing Process of Coalescing Black Holes on Eguchi-Hanson Space},
  author = {Masashi Kimura and Hideki Ishihara and Shinya Tomizawa and Chul-Moon Yoo},
  journal= {arXiv preprint arXiv:0906.4681},
  year   = {2013}
}

Comments

13 pages, 17 figures