Gravitational Collapse of Cylindrical Shells Made of Counter-Rotating Dust Particles
arXiv:gr-qc/0007077 · doi:10.1103/PhysRevD.62.124001 10.1103/PhysRevD.67.129902
Abstract
The general formulas of a non-rotating dynamic thin shell that connects two arbitrary cylindrical regions are given using Israel's method. As an application of them, the dynamics of a thin shell made of counter-rotating dust particles, which emits both gravitational waves and massless particles when it is expanding or collapsing, is studied. It is found that when the models represent a collapsing shell, in some cases the angular momentum of the dust particles is strong enough to halt the collapse, so that a spacetime singularity is prevented from forming, while in other cases it is not, and a line-like spacetime singularity is finally formed on the symmetry axis.
To appear in Phys. Rev. D