arXiv · 1609.03022
Escape probability of the super-Penrose process
Abstract
We consider a head-on collision of two massive particles that move in the equatorial plane of an extremal Kerr black hole, which results in the production of two massless particles. Focusing on a typical case, where both of the colliding particles have zero angular momenta, we show that a massless particle produced in such a collision can escape to infinity with arbitrarily large energy in the near-horizon limit of the collision point. Furthermore, if we assume that the emission of the produced massless particles is isotropic in the center-of-mass frame but confined to the equatorial plane, the escape probability of the produced massless particle approaches $5/12$ and almost all escaping massless particles have arbitrarily large energy at infinity and an impact parameter approaching $2GM/c^2$, where $M$ is the mass of the black hole.
Explore related subjects
Keep this discovery
Kota Ogasawara, Tomohiro Harada, Umpei Miyamoto, Takahisa Igata. 2016-09-10. Escape probability of the super-Penrose process. https://doi.org/10.1103/physrevd.95.124019
Cite the original work for its findings. Save a collection to share your selection of sources.