Formation of dynamically transversely trapping surfaces and the stretched hoop conjecture

Author:

Yoshino Hirotaka1,Izumi Keisuke23,Shiromizu Tetsuya32,Tomikawa Yoshimune4

Affiliation:

1. Advanced Mathematical Institute, Osaka City University, Osaka 558-8585, Japan

2. Kobayashi-Maskawa Institute, Nagoya University, Nagoya 464-8602, Japan

3. Department of Mathematics, Nagoya University, Nagoya 464-8602, Japan

4. Faculty of Economics, Matsuyama University, Matsuyama 790-8578, Japan

Abstract

Abstract A dynamically transversely trapping surface (DTTS) is a new concept for an extension of a photon sphere that appropriately represents a strong gravity region and has close analogy with a trapped surface. We study formation of a marginally DTTS in time-symmetric, conformally flat initial data with two black holes, with a spindle-shaped source, and with a ring-shaped source, and clarify that $\mathcal{C}\lesssim 6\pi GM$ describes the condition for the DTTS formation well, where $\mathcal{C}$ is the circumference and $M$ is the mass of the system. This indicates that an understanding analogous to the hoop conjecture for the horizon formation is possible. Exploring the ring system further, we find configurations where a marginally DTTS with the torus topology forms inside a marginally DTTS with the spherical topology, without being hidden by an apparent horizon. There also exist configurations where a marginally trapped surface with the torus topology forms inside a marginally trapped surface with the spherical topology, showing a further similarity between DTTSs and trapped surfaces.

Publisher

Oxford University Press (OUP)

Subject

General Physics and Astronomy

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