String black hole: Can it be a particle accelerator ?
arXiv:1311.1455 · doi:10.1007/s10714-013-1634-6
Abstract
In this paper we have studied the possibility of the center-of-mass energy of two particles colliding near the horizon of a static charged black hole in string theory. Various cases corresponding to the electric charge and the angular momentum of the particles were considered. The studies were done for the general black hole as well as for the extreme black hole. There were two scenarios where the center-of-mass energy reach very large values if the appropriate properties of the particles are chosen.
17 pages and 10 figures, journal reference added
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- Spinning dilaton black hole in 2+1 dimensions as a particle accelerator
- Motion and collision of particles in rotating linear dilaton black hole
- Black hole with a scalar field as a particle accelerator
- Particle collisions near a three-dimensional warped AdS black hole
- Collision of particles near a three-dimensional rotating Hořava AdS black hole
- Charged dilaton black hole in 2+1 dimensions as a particle accelerator
- Motion and collision of particles near DST Black holes
- Several solutions of the Klein-Gordon equation in Kerr-Newman spacetime and the BSW effect
- High energy particle collisions and geometry of horizon
- Neutral particle collisions near Gibbons-Maeda-Garfinkle-Horowitz-Strominger black holes after shadow observations